Showing posts sorted by relevance for query water scarce. Sort by date Show all posts
Showing posts sorted by relevance for query water scarce. Sort by date Show all posts

Saturday, March 21, 2009

World Water Day: Water Scarce Pakistan?


More than a billion people in the world do not have access to safe drinking water, a basic necessity, on World Water Day today. In Pakistan alone, 38.5 million people lack access to safe drinking water and 50.7 million people lack access to improved sanitation, according to published data. Pakistanis are facing unprecedented shortage of clean drinking water and electricity due to the lowest recorded levels of water in the country's dams, according to Pakistani Meteorological Department. The mortality rate for children under-five in Pakistan is 99 deaths per 1000 children, according to Global Health Council. About half of under-five deaths occur in six countries with large populations: India, Nigeria, Democratic Republic of Congo, Ethiopia, Pakistan and China. Water and sanitation related diseases are responsible for 60% of the total number of child mortality cases in Pakistan, with diarrheal diseases causing deaths of 200,000 under-five years’ children, every year. Unsafe drinking water is shown to lead to poverty through time spent by women and girls to fetch ‘drinkable’ water from long distances. The combination of unsafe water consumption and poor hygiene practices require treatments for water borne illnesses, decreased working days, and also contribute to lowering of educational achievement due to reduced school attendance by children.

It is sad to see the growing water crisis in Pakistan whose Indus Valley has been the center of some of the world’s greatest civilizations: Harappa and Mohenjo Daro (2600 to 1900 BC) and Gandhara, (1st-5th Centuries AD); their social, agricultural and economic systems were based on their interactions with rivers (Indus and its tributaries, including the Indus, Jhelum, Chenab, Ravi, Beas and Sutlej and Kabul rivers, etc.) which provided irrigation and created fertile land for farming. Archaeologists believe that people of Mohenjo-Daro and Harappa lived in sturdy brick houses that had as many as three floors. The houses had bathrooms that were connected to sewers. Their elaborate drainage system was centuries ahead of their time. A well established history, tradition and system of water management and entitlements has existed, from the Indus Valley Civilization to the 1960 Indus Water Treaty and the 1991 Water Accord which establish clear entitlements for each province and for each canal command to surface waters.

Pakistan is facing a severe water shortage this year. According to a 2006 World Bank report, the country is fast moving from being a “water stressed country to a water scarce country”, mainly due to its high population growth, and water is becoming the key development issue. The groundwater is over-exploited and polluted in many areas; most of the water infrastructure (even some of the major barrages) is in poor repair; the entire system of water management is not financially sustainable. However, large parts of Pakistan have good soils, sunshine and excellent farmers; it can get much more value from the existing flows.

Among the 25 most populous countries in 2009, South Africa, Egypt and Pakistan are the most water-limited nations. India and China, however, are not far behind with per capita renewable water resources of only 1600 and 2100 cubic meters per person per year. Major European countries have up to twice as much renewable water resources per capita, ranging from 2300 (Germany) to 3000 (France) cubic meters per person per year. The United States of America, on the other hand, has far greater renewable water resources than China, India or major European countries: 9800 cubic meters per person per year. By far the largest renewable water resources are reported from Brazil and the Russian Federation - with 31900 and 42500 cubic meters per person per year.

According to the United Nations' World Water Development Report, the total actual renewable water resources in Pakistan decreased from 2,961 cubic meters per capita in 2000 to 1,420 cubic meters in 2005. A more recent study indicates an available supply of water of little more than 1,000 cubic meters per person, which puts Pakistan in the category of a high stress country. Using data from the Pakistan's federal government's Planning and Development Division, the overall water availability has decreased from 1,299 cubic meters per capita in 1996-97 to 1,101 cubic meters in 2004-05. In view of growing population, urbanization and increased industrialization, the situation is likely to get worse. If the current trends continue, it could go as lows as 550-cubic meters by 2025. Nevertheless, excessive mining of groundwater goes on. Despite a lowering water table, the annual growth rate of electric tubewells has been indicated to 6.7% and for diesel tubewells to about 7.4%. In addition, increasing pollution and saltwater intrusion threaten the country's water resources. About 36% of the groundwater is classified as highly saline.

In urban areas, most water is supplied from groundwater except for the cities of Karachi, Hyderabad and a part of Islamabad, where mainly surface water is used. In most rural areas, groundwater is used. In rural areas with saline groundwater, irrigation canals serve as the main source of domestic water.

Out of the 169,384 billion cubic meters of water which were withdrawn since 2000, 96% were used for agricultural purposes, leaving 2% for domestic and another 2% for industrial use. By far most water is used for irrigated agriculture. With the world's largest contiguous irrigation system, Pakistan has harnessed the Indus River to transform 35.7 million acres for cultivation in otherwise arid conditions. Yet,the sector contributes less than 20% of the Pakistan's GDP and Pakistan remains a food-deficit nation.

In sharp contrast to the peaks of the Hindu Kush and the Himalayas at the headwaters of the Indus River, the Indus valley plain flattens out dramatically as it runs to the sea.

The very low rainfall, poor drainage, ancient marine deposits, saline groundwater, and evaporation and transpiration combine to create a vast salt sink.
The steady expansion of irrigation and agriculture added greatly to this process of accumulating salt that over time waterlogging and soil salinity have emerged to threaten the sustainability of Pakistan’s agricultural system.

Pakistan is currently experiencing water stress and will soon face outright water scarcity. High population growth is causing ‘water stress.’ Pakistan is using almost all its water resources today and no more are available. If something goes drastically wrong with the salt/sediment/water balance of the Indus system, there is no other river system in the region to draw on.

A World Bank report recommends that Pakistan needs to set up new water reservoirs on an urgent basis, citing scarcity of water to get worse in the near future.

The aging and inadequate irrigation and water infrastructure deficit alone is estimated at US $70 billion. Pakistan needs to invest almost US $1 billion per year in new large dams and related infrastructure over the next five years.

According to the World Bank data, Pakistan only stores 30 days of river water, India stores 120 days, while the Colorado River System in the US has storage capacity of up to 900 days of water usage. The report says that new water reservoirs will push Pakistan’s economy forward. It says that a new dam can potentially add four to five percent to Pakistan’s GDP.

Water is also essential for power generation in Pakistan, but only about 20% is generated by hydroelectric power plants. The current power shortage of approximately 2,000 megawatts will increase to 6,000 megawatts by the year 2010 and 30,700 megawatts by the year 2020. Pakistan has the potential to generate as much as 50,000 MW of hydroelectric power, more than twice its total current generating capacity of 20,000 MW from all sources, which is far short of the nation's needs, limiting Pakistan's social and economic growth prospects.

In addition to the development of new water reservoirs, serious conservation steps need to be taken to improve the efficiency of water use in Pakistani agriculture which claims almost all of the available fresh water resources. A California study recently found that water use efficiency ranged from 60%-85% for surface irrigation to 70%-90% for sprinkler irrigation and 88%-90% for drip irrigation. Potential savings would be even higher if the technology switch were combined with more precise irrigation scheduling and a partial shift from lower-value, water-intensive crops to higher-value, more water-efficient crops. Rather than flood irrigation used in Pakistani agriculture, there is a need to explore the use of drip or spray irrigation to make better use of nation's scarce water resources before it is too late. As a first step toward improving efficiency, Pakistan government has launched a 1.3 billion U.S. dollar drip irrigation program that could help reduce water waste over the next five years. Early results are encouraging. "We installed a model drip irrigation system here that was used to irrigate cotton and the experiment was highly successful. The cotton yield with drip irrigation ranged 1,520 kg to 1,680 kg per acre compared to 960 kg from the traditional flood irrigation method," according to Wajid Ishaq, a junior scientist at the Nuclear Institute for Agriculture and Biology (NIAB).

Beyond the urgent need for improving farm water use efficiency, Pakistan must address the safety of drinking water to improve the health of its people. It must take steps to protect its water streams from industrial pollution and sewage discharge. Along with various international institutions and NGOs, the leadership should undertake projects that will help in providing hygiene and sanitation promotion and community mobilization along with extensive capacity building in order to complement Pakistan's substantial investments in hardware for safe drinking water. A big part of it is education, followed by practical assistance to communities in setting up better sewage treatment and waste disposal systems that are locally supported by cities and towns.

The Medium Term Development Framework 2005-2010 provides for about US$404 million per year government spending for water supply and sanitation projects and is accompanied by several policy documents with the objective to notably improve water and sanitation coverage and quality. Availability of clean water in reasonable abundance is essential for sustaining life and improving the future of the people of Pakistan. The challenges are great and the stakes are very high. Failure is not an option.

But the challenges of poor sanitation are too big and complex to expect Pakistani government alone to deal with them. The nation's private sector and NGOs must rise to the occasion. There are successful examples of private citizens addressing sanitation issues on a local, community level. For instance, Dr. Akhtar Hamid Khan is the force behind Orangi Pilot Project to help residents of Orangi Town, a katchi abadi (shanty town) in Karachi to help themselves. It has assisted in a number of projects to build better low-cost housing, improve sanitation and establish schools with the participation of the community. “Give a man a fish and you feed him for a day. Teach a man to fish and you feed him for a lifetime.” Acclaimed social scientist Dr. Akhtar Hameed Khan used to reference this well-known proverb (according to his son, Akbar Khan), as it quite fittingly represents his philosophy on community development.

While the problems faced by Pakistan are huge, I believe that a serious and organized initiative by a tiny percentage of Pakistan's large middle class of at least 40-50m people can begin to make a difference. Pakistanis owe it to themselves and their poor brethren to step up and take responsibility for improving the situation of the most vulnerable citizens of their country. The journey of a thousand miles begins with a single step. But we must persevere by taking one step after another until we see results.

Here's a video clip on safe drinking water:



Sources/Related Links:

United Nations World Water Development Report

Water Resource Management in Pakistan

Water Supply and Sanitation in Pakistan

Light a Candle, Do Not Curse Darkness

China Profile

Safe Drinking water and Hygiene Promotion in Pakistan

UN Millennium Development Goals in Pakistani Village

Orangi Pilot Project

Three Cups of Tea

Volunteerism in America

Dr. Akhtar Hamid Khan's Vision

Thursday, June 28, 2018

Pakistan Water Crisis: Facts and Myths

Pakistan is believed to be in the midst of a water crisis that is said to pose an existential threat to the country. These assertions raise a whole series of questions on the source of the crisis and possible solutions to deal with it. The New Water Policy adopted in April 2018 is a good start but it needs a lot more focus and continuing investments.

Indus Water System. Courtesy: The Friday Times
Questions on Water Crisis: 

How severe is Pakistan's water crisis? Is India contributing to this crisis? How many million acre feet (MAF) of water flows in Pakistan? What are its sources? Glaciers? Rain? Groundwater? How much of it is stored in dams and other reservoirs? What is the trend of per capita water availability in Pakistan? What sectors are the biggest consumers of water in Pakistan? Why does agriculture consume over 95% of all available water? How can Pakistan produce "more crop per drop"? What are Pakistan's options in dealing with the water crisis? Build more dams? Recharge groundwater? Use improved irrigation techniques like sprinklers and drip irrigation? Would metering water at the consumers and charging based on actual use create incentives to be more efficient in water use?

Water Availability: 

Pakistan receives an average of 145 million acre feet (MAF) of water a year, according to the Indus River System Authority (IRSA) report. Water availability at various canal headworks is about 95 million acre feet (MAF).  About 50%-90% comes from the glacial melt while the rest comes from monsoon rains.  Additional 50 MAF of groundwater is extracted annually via tube wells.

Pakistan Water Availability. Source: Water Conference Presentation

The total per capita water availability is about 900 cubic meters per person, putting Pakistan in the water-stressed category.

India Factor: 

What is the impact of India's actions on water flow in Pakistan? Under the Indus Basin Water Treaty, India has the exclusive use of the water from two eastern rivers: Ravi and Sutlej. Pakistan has the right to use all of the water from the three western rivers: Chenab, Jhelum and Indus. However, India can build run of the river hydroelectric power plants with minimal water storage to generate electricity.

Currently, India is not using all of the water from the two eastern rivers. About 4.6 million acre feet (MAF) of water flows into Pakistan via Ravi and Sutlej. Water flow in Pakistan will be reduced if India decides to divert more water from Ravi and Sutlej for its own use.

Secondly, India can store water needed for run-of-the-river hydroelectric plants on the western rivers. When new hydroelectric projects are built on these rivers in India, Pakistan suffers from reduced water flows during the periods when these reservoirs are filled by India. This happened when Baglihar dam was filled by India as reported by Harvard Professor John Briscoe who was assigned by the World Bank to work on IWT compliance by both India and Pakistan.

Pakistan is also likely to suffer when India ensures its hydroelectric reservoirs are filled in periods of low water flow in the three western rivers.

Water Storage Capacity: 

Pakistan's water storage capacity in its various dams and lakes is about 15 million acre feet (MAF), about 10% of all water flow. It's just enough water to cover a little over a month  of water needed. There are several new dams in the works which will double Pakistan's water storage capacity when completed in the future.

Since 1970s, the only significant expansion in water storage capacity occurred on former President Musharraf's watch when Mangla Dam was raised 30 feet to increase its capacity by nearly 3 million acre feet (MAF). Musharraf increased water projects budget to Rs. 70 billion which was reduced to Rs. 51 billion by PPP government and further decreased to Rs. 36 billion by PMLN government.  It was only the very last PMLN budget passed by Shahid Khaqan Abbasi's outgoing government that increased water development allocation to Rs. 65 billion, a far cry from Rs. 70 billion during Musharraf years given the dramatic drop in the value of the Pakistani rupee.

Water Consumption: 

Domestic, business and industrial consumers use about 5 million acre feet while the rest is consumed by the agriculture sector to grow food. Just 5% improvement in irrigation efficiency can save Pakistan about 7.5 million acre feet , the same as the current storage capacity of the country's largest Tarbela dam.

Given the vast amount of water used to grow crops, there is a significant opportunity to save water and increase yields by  modernizing the farm sector.

National Water Policy:

Pakistan's Common Council of Interests (CCI) with the prime minister and the provincial chief ministers recently adopted a National Water Policy (NWP) in April 2018. It is designed to deal with “the looming shortage of water” which poses “a grave threat to (the country’s) food, energy and water security” and constitutes “an existential threat…”as well as “the commitment and intent” of the federal and provincial governments to make efforts “ to avert the water crisis”.

The NWP supports significant increases in the public sector investment for the water sector by the Federal Government from 3.7% of the development budget in 2017-18 to at least 10% in 2018-19 and 20% by 2030; the establishment of an apex body to approve legislation, policies and strategies for water resource development and management, supported by a multi- sectoral Steering Committee of officials at the working level; and the creation of a Groundwater Authority in Islamabad and provincial water authorities in each of the provinces.

More Crop Per Drop:

"More crop per drop" program will focus on improving water use efficiency by promoting drip and sprinkler irrigation in agriculture.

The Punjab government started this effort with the World Bank with $250 million investment.  The World Bank is now providing additional $130 million financing for the Punjab Irrigated Agriculture Productivity Improvement Program Phase-I.

The project is the Punjab Government's initiative called High-Efficiency Irrigation Systems (HEIS) to more than doubles the efficiency of water use. Under the project, drip irrigation systems have been installed on about 26,000 acres, and 5,000 laser leveling units have been provided. The additional financing will ensure completion of 120,000 acres with ponds in saline areas and for rainwater harvesting, and filtration systems for drinking water where possible, according to the World Bank.

Groundwater Depletion: 

 Pakistan, India, and the United States are responsible for two-thirds of the groundwater use globally,  according to a report by University College London researcher Carole Dalin.  Nearly half of this groundwater is used to grow wheat and rice crops for domestic consumption and exports.  This puts Pakistan among the world's largest exporters of its rapidly depleting groundwater.

Pakistan Council of Research in Water Resources is working with  United States' National Air and Space Administration (NASA) to monitor groundwater resources in the country.

Water Stress Satellite Map Source: NASA 
NASA's water stress maps shows extreme water stress across most of Pakistan and northern, western and southern parts of India.

The US space agency uses Gravity Recovery and Climate Experiment (GRACE) to measure earth's groundwater. GRACE’s pair of identical satellites, launched in 2002, map tiny variations in Earth's gravity. Since water has mass, it affects these measurements. Therefore, GRACE data can help scientists monitor where the water is and how it changes over time, according to NASA.

Aquifer Recharge:

Building large dams is only part of the solution to water stress in Pakistan. The other, more important part, is building structures to trap rain water for recharging aquifers across the country.

Typical Aquifer in Thar Desert 

Pakistan's highly water stressed Punjab province is beginning recognize the need for replacing groundwater. Punjab Government is currently in the process of planning a project to recharge aquifers for groundwater management in the Province by developing the economical and sustainable technology and to recharge aquifer naturally and artificially at the available site across the Punjab. It has allocated Rs. 582.249 million to execute this project over four years.

Summary:

Pakistan is in the midst of a severe water crisis that could pose an existential threat if nothing is done to deal with it.  The total per capita water availability is about 900 cubic meters per person, putting the country in the water-stressed category. Agriculture sector uses about 95% of the available water. There are significant opportunities to achieve greater efficiency by using drop irrigation systems being introduced in Punjab. The New Water Policy is a good start but it requires continued attention with greater investments and focus to deal with all aspects of the crisis.

Here's a video discussion on the subject:

https://youtu.be/nrfF3ppBzpo




Related Links:

Haq's Musings

Groundwater Depletion in Pakistan

Water Scarce Pakistan

Cycles of Drought and Floods in Pakistan

Pakistan to Build Massive Dams

Dust Bowl in Thar Desert Region

Dasht River in Balochistan

Hindus in Pakistan

Tuesday, January 5, 2010

Challenges of the Decade 2010-2020 in South Asia and Beyond

Making predictions is hazardous business. After all, who would have forecast with any accuracy the Soviet defeat in Afghanistan and the fall of the Berlin wall in late 1980s, or the terrorists attacks of September 11, 2001, or the near-collapse of the US financial markets in 2008, the kind of events that fundamentally changed the world. This new decade of 2010-2020 could also bring long-lasting but hard to predict events that are described by Nassim Taleb as rare but high-impact Black Swan Events. However, I do think this new decade is likely to be defined by the fundamental issues of access to food and water, in addition to the continuing concerns about terrorism and security. Each of these challenges has the potential to precipitate major events that could bring about fundamental yet unpredictable changes in the world order.

Food:

A combination of population explosion, water scarcity, and climate change are causing serious concerns about access to affordable and reliable food supply in many nations. Climate change in parts of India has resulted in multiple crop failures after seven or eight bad years in a row, putting local people deeper and deeper in debt. An estimated 200,000 Indian farmers have ended their lives since 1997.

There has been a rush by some of the rich but food-poor nations to buy up farmland to grow food in poor nations, raising concerns about the potential for food riots. New ideas and technologies are required to bring about a new "Green Revolution" to feed the growing population of the world.

In June, news agency Reuters reported that the government of Pakistan had offered 404,700 hectares (ha) of farmland for sale or lease to foreign investors. It is the usual suspects of the Gulf states and South Korea who are the likely targets of the government's drive for investment. Oil rich, food poor states from the Middle East and food deficit prone South Korea have been spurred by the high food prices of 2007 and 2008 to increase their food security by investing in agricultural land abroad.

Also in June 2009, Swedish multi-national food company Tetra Pak announced the signing of an memorandum of understanding with local company Engro Foods to create a dairy hub in the Sahiwal district of the Punjab. The hub will serve 15 villages in the district and aims to promote more efficient production and bring smallholders into the formal dairy market chain.

In July, the Pakistani minister for investment said that the country would be happy to provide land for Korean companies to build food and dairy processing facilities, according to Pakistan Agribusiness Report. Also in July, the chief minister of the Punjab said that there was a large amount of interest in investing in the province's agriculture from Qatar.

Water:

The year began with an ominous warning by Sardar Aseff Ali, Deputy Chairman of the Planning Commission, about the potential for a water war between India and Pakistan. Such warnings clearly reinforce the gravity of the water situation, requiring creative solutions.

Water is becoming more scarce, and water wars are likely to erupt in several regions of the world. Among the 25 most populous countries in 2009, South Africa, Egypt and Pakistan are the most water-limited nations. India and China, however, are not far behind with per capita renewable water resources of only 1600 and 2100 cubic meters per person per year. Major European countries have up to twice as much renewable water resources per capita, ranging from 2300 (Germany) to 3000 (France) cubic meters per person per year. The United States of America, on the other hand, has far greater renewable water resources than China, India or major European countries: 9800 cubic meters per person per year. By far the largest renewable water resources are reported from Brazil and the Russian Federation - with 31900 and 42500 cubic meters per person per year.

According to the United Nations' World Water Development Report, the total actual renewable water resources in Pakistan decreased from 2,961 cubic meters per capita in 2000 to 1,420 cubic meters in 2005. A more recent study indicates an available supply of water of little more than 1,000 cubic meters per person, which puts Pakistan in the category of a high stress country. Using data from the Pakistan's federal government's Planning and Development Division, the overall water availability has decreased from 1,299 cubic meters per capita in 1996-97 to 1,101 cubic meters in 2004-05. In view of growing population, urbanization and increased industrialization, the situation is likely to get worse. If the current trends continue, it could go as lows as 550-cubic meters by 2025. Nevertheless, excessive mining of groundwater goes on. Despite a lowering water table, the annual growth rate of electric tubewells has been indicated to 6.7% and for diesel tubewells to about 7.4%. In addition, increasing pollution and saltwater intrusion threaten the country's water resources. About 36% of the groundwater is classified as highly saline.

The solution to the water crisis lies in better management of water resources to conserve water and new technologies to economically recycle or produce fresh water from sea water. For example, about 98% of the water in Pakistan is used in farming through a very inefficient flood irrigation method, leaving only two percent for other consumers and commercial-industrial users. A California study recently found that water use efficiency ranged from 60%-85% for surface irrigation to 70%-90% for sprinkler irrigation and 88%-90% for drip irrigation. Potential savings would be even higher if the technology switch were combined with more precise irrigation scheduling and a partial shift from lower-value, water-intensive crops to higher-value, more water-efficient crops. Rather than flood irrigation used in Pakistani agriculture, there is a need to explore the use of drip or spray irrigation to make better use of nation's scarce water resources before it is too late. As a first step toward improving efficiency, Pakistan government has launched a 1.3 billion U.S. dollar drip irrigation program that could help reduce water waste over the next five years. Early results are encouraging. "We installed a model drip irrigation system here that was used to irrigate cotton and the experiment was highly successful. The cotton yield with drip irrigation ranged 1,520 kg to 1,680 kg per acre compared to 960 kg from the traditional flood irrigation method," according to Wajid Ishaq, a junior scientist at the Nuclear Institute for Agriculture and Biology (NIAB).

Low-Cost Housing:

Housing construction by traditional methods has failed to keep pace with the rising demand, particularly in the developing countries like India and Pakistan experiencing rapid urbanization. New, cheaper and faster construction methods are needed to address the basic shelter needs of the people. There are a number of modular, pre-fabrication and rapid on-site assembly methods are being explored in developing nations.

Mass Literacy:

Literacy has become as fundamental a need as food and water in this day and age. And yet, UNESCO data indicates that 770 million adults around the world remain illiterate, over 35% of them in India. New focus and methods are needed to reach out to the illiterate masses of the world as part of a worldwide mass literacy campaigns.

Low levels of literacy continue to hobble many developing nations, limiting the productivity and economic opportunities for the growing young populations, and causing concerns about social and political instability and growth of international terrorism.

Health Care:

Access to healhcare in South Asia, particularly due to the wide gender gap, presents a huge challenge, and it requires greater focus to ensure improvement in human resources. Though the life expectancy has increased to 66 years in Pakistan and 63 years in India, it is still very low relative to the rest of the world. The infant rate remains stubbornly high, particular in Pakistan, though it has come down down from 76 per 1000 live births in 2003 to 65 in 2009. With 320 mothers dying per 100,000 live births in Pakistan and 450 in India, the maternal mortality rate in South Asia is very high, according to UNICEF.

International Terrorism:

The threat of global terrorism is likely to gain strength and spread with new bases in new geographies. A new and more creative and comprehensive strategy will be necessary to counter this growing threat in the realm of ideas and policies. Any new strategy must take into account the following facts to be effective:

1. Al Qaeda was an organization with central leadership, command and control located in Afghanistan prior to 911. But that is no longer true. According to former State Department official Mathew Hoh who served in Afghanistan, al Qaeda is an elastic, amorphous entity, one based not on geography but ideology. “Al Qaeda is a collection of ideas, of independent, autonomous cells,” Hoh says. “They don’t need a lot of funding. They need an apartment with an Internet connection.”

2. Even the 911 hijackers were not all recruited and trained in any one country. They came from different nations and were educated and trained mostly in the United States and Western Europe. What they shared in common was an ideology rather than a geography.

3. Hundreds of al Qaeda members, including many top leaders, have been captured or killed by Pakistani and US military in the region since 911. And yet, the violence is worse than ever before.

4. There have been multiple reports of al Qaeda popping up in several countries around the world such as Yemen and Somalia, confirming Mathew Hoh's arguments that al Qaeda is not confined to a particular geography in central or south Asia.


Security:

With increasing carnage in several countries, including Pakistan, and growing fears of terrorism, there is an urgent need to develop and use new tools, technologies and methodologies to anticipate and prevent acts of terror resulting in mass casualties.

Counter-insurgency:

There are many insurgencies growing around the world, including South Asia, in response to real or perceived injustices. In addition to the Afghan Taliban insurgency against foreign forces, other examples include Taliban and Baloch insurgencies in Pakistan, and Maoists and Kashmir insurgencies in India.

In addition to the political dialog to understand and address genuine grievances of the insurgents, there is a great need to develop techniques and training for counterinsurgency.

Green Energy:

Clearly, conservation alone will not suffice when it comes to the world's growing energy needs. There will continue to be significant research and development into exploiting energy from water, wind and sun, as well as innovation in safer and greener nuclear technology such as thorium nuclear reactors.

Extreme Affordability:

The incredible success of relatively inexpensive mobile telephones in poor nations, such as Bangladesh, India and Pakistan, has created the awareness among the big corporations and the entrepreneurs that the poor can be a very lucrative market.

Understanding the need to design for extreme affordability with scarce resources is giving birth to a new generation of entrepreneurs. These are entrepreneurs with a social conscience who are motivated by the desire to do good and do well at the same time. They are finding new ways to empower the poor by satisfying their basic needs, such as water, electricity and telephones.

Conclusion:

Regardless of any forecasts of the future, it is extremely important for all nations of the world, particularly the United States, China, the United Kingdom, Israel, Iran, India, North Korea and Pakistan to learn from the mistakes of the last decade to try and make the new decade a better stretch of ten years for the entire humanity. This will require sincere efforts and creative energies of the people from the aforementioned countries and the help of the rest of the world.

Related Links:

Water Crisis

Pakistan's Farmland Controversy

United Nations Literacy Decade

UNICF Country Data

Facts and Myths of Obama's Afghan Surge

Can Energy from Thorium Save Planet Earth?

Social Entrepreneurs Target India and Pakistan

Housing Construction and Economic Growth

Climate Change Worsens Poverty in India

Pakistan's Decade of 1999-2009

Godfather's Vito Corleone: Metaphor for Uncle Sam Today?

Marching Toward Hell by Michael Scheuer

Pakistan's Choice: Globalization or Talibanization

Soviet Defeat in Afghanistan

Karachi Stock Exchange Presentation

Saturday, June 1, 2019

Drip Irrigation: Can Pakistan Make its Deserts Bloom?

Large tracts of desert in Cholistan, Kharan and Thar land lay barren in Pakistan today. Can some parts of these deserts be made to bloom given the worsening water crisis in the country with per capita water availability approaching 900 cubic meters? How does Pakistan improve long term food security for its growing population? The answer to both lies in efficient water management through effective drip irrigation.

Drip Irrigation 

What is Drip Irrigation:

Drip irrigation is a micro-irrigation system using tubing that saves water and nutrients by allowing water to drip slowly into the roots of plants, either from above the soil surface or buried below the surface. It puts water directly into the roots and minimizes evaporation.

Water mixed with fertilizer is carried out through tubes which release a small amounts of water per minute directly to the roots of each plant. Precision watering cuts evaporation, run off, and waste.

More Crop Per Drop:

Agriculture uses over 90% of all available fresh water in Pakistan. "More crop per drop" program focuses on improving water use efficiency by promoting drip and sprinkler irrigation in agriculture in Pakistan.

The Punjab government started this effort with the World Bank with $250 million investment.  The World Bank is now providing additional $130 million financing for the Punjab Irrigated Agriculture Productivity Improvement Program Phase-I.

The project is the Punjab Government's initiative called High-Efficiency Irrigation Systems (HEIS) to more than doubles the efficiency of water use. Under the project, drip irrigation systems have been installed on about 26,000 acres, and 5,000 laser leveling units have been provided. The additional financing will ensure completion of 120,000 acres with ponds in saline areas and for rainwater harvesting, and filtration systems for drinking water where possible, according to the World Bank.

Cost of Drip Irrigation System:

Most crops are not irrigated with the drip method due to higher costs. In the United States and Spain, where the technology is used most, it comprises 6.75 and 2.75 percent of the total irrigated area, respectively, according to the International Commission on Irrigation and Drainage. Farmers are offered subsidies to encourage the use of drip irrigation in most countries as a way of conserving precious water.

Subsidies in Punjab, Pakistan:

Punjab provincial government is subsidizing up to 60% of the cost of installing new drip irrigation systems, according to Business Recorder newspaper.  Director General Agriculture (Water Management) Malik Muhammad Akram said that latest irrigation techniques ensure availability of water and fertilizer in time to the plants and it also ensure uniform supply of these two major ingredients to all the plants in a field. It helps attaining more per acre yield with minimum agricultural inputs, he added, according to the paper.

There's at least one example of public-private partnership to promote drip irrigation in Sheikhupura near Lahore. The installation has been carried out by Nestlé Pakistan in collaboration with the Government of Punjab, covering 40% and 60% of the farmer’s cost respectively. The Agricultural Efficiency Project was initiated in the year 2017 and has so far covered 109 acres of land in 2018 with an estimated 280 million liters of water saved, according to a Nestle press release.

Using drip irrigation, farmers can save up to 95% of water and reduce fertilizer use, compared to surface irrigation, according to Malik Mohammad Akram. In flood irrigation – the traditional method of agriculture in the region – a farmer uses 412,000 liters per acre, while using drip irrigation the same land can be irrigated with just 232,000 liters of water, he explained to Zofeen Ibrahim of The Third Pole that covers Asia's water crisis.

Success Stories:

Writing for The Third Pole,  Zofeen Ebrahim has cited a couple of success stories of farmers receiving Punjab government's drip irrigation subsidies: The stories of ex IT Engineer Hasan Abdullah and Infiniti Agro and Livestock Farm.

Hasan Abdulla is has planted an orchard on his 40-acre plot in Cholistan Desert. He has orange, lemon olive trees which are now fruiting three years after planting. He is among the first farmers experimenting with drip irrigation.While Abdullah was saving water, the cost of diesel for running water pump was proving astronomical. It would have been difficult for Abdullah to continue farming with drip irrigation had the government not announced an 80% subsidy on solar power plants for farmers in 2018. He promptly took it up.

Asif Riaz Taj, who manages Infiniti Agro and Livestock Farm in Bahawalpur, heard of Abdulla's drip irrigation project and paid him a visit. He like it and decided to follow the example.  Now in their fourth year, the Infiniti orchards have started fruiting over 70 acres. But it will not be before its sixth year, Taj said, that they will “break even”. The drip irrigation and solar plant was installed at a cost of PKR 25 million (USD 174,000), and the monthly running cost of this farm is almost PKR 4 million (USD 28,000).

Summary:

Pakistan faces a severe water crisis that threatens the nation's long term food security.  The country needs to expand area under cultivation while efficiently managing its precious water resources. It needs to make parts of its deserts bloom. The best way to do it efficient water management through effective drip irrigation. Such projects are expensive to implement. The Punjab government is offering up to 60% subsidy to farmers to encourage wider use of drip irrigation.

Related Links:

Haq's Musings

South Asia Investor Review

Pakistan Water Crisis: Facts and Myths 

Groundwater Depletion in Pakistan

Water Scarce Pakistan

Cycles of Drought and Floods in Pakistan

Pakistan to Build Massive Dams

Dust Bowl in Thar Desert Region

Dasht River in Balochistan



Thursday, April 1, 2021

Groundwater Depletion in Pakistan

Pakistan has about 1.2 million tube wells extracting 50 million acre feet of water every year for farm irrigation. NASA satellite maps show that Pakistan is among the places worst affected by rapid depletion of groundwater

Water Stress Satellite Map Source: NASA 

A recent World Bank report titled "Groundwater in Pakistan’s Indus Basin : Present and Future Prospects" lays out the need for better groundwater management in Pakistan. Here are three key highlights of this reports:

1. Improved groundwater management is crucial for a healthy, wealthy, and green Pakistan. Pakistan’s Indus Basin Irrigation System is the largest artificial groundwater recharge system in the world, but the current water management paradigm doesn’t reflect it. 

2. Over-abstraction, waterlogging and contamination threaten the crucial role of groundwater as a life-sustaining resource, which has cascading impacts on drought resilience, public health, and environmental sustainability. 

3. For groundwater to remain a safe and reliable source of drinking water and a lifeline for tail-end farmers, a balance must be achieved between efficiency of the surface water system and sustainability of groundwater resources.

The World Bank report points to the need for better management of groundwater resources. One of the keys to groundwater management is to have an elaborate network of small dams and water reservoirs in strategic locations to recharge underground aquifers. 

In recent years, Pakistan has begun to address its groundwater challenges, starting with the National Water Policy 2018 which identified priorities for groundwater management. 

Pakistan's Common Council of Interests (CCI) with the prime minister and the provincial chief ministers recently adopted a National Water Policy (NWP) in April 2018. It is designed to deal with “the looming shortage of water” which poses “a grave threat to (the country’s) food, energy and water security” and constitutes “an existential threat…”as well as “the commitment and intent” of the federal and provincial governments to make efforts “ to avert the water crisis”.

The NWP supports significant increases in the public sector investment for the water sector by the Federal Government from 3.7% of the development budget in 2017-18 to at least 10% in 2018-19 and 20% by 2030; the establishment of an apex body to approve legislation, policies and strategies for water resource development and management, supported by a multi- sectoral Steering Committee of officials at the working level; and the creation of a Groundwater Authority in Islamabad and provincial water authorities in each of the provinces.

As the NASA satellite map shows, the Punjab is the worst affected province where the groundwater depletion is the highest. Currently, 1.2 million private tube wells are working in the country, out of which 85% are in Punjab, 6.4% are in Sindh, 3.8% are in Khyber-Pakhtunkhwa, and 4.8% are 3 in Baluchistan. 

National Water Policy 2018 was followed by the Punjab Water Policy in 2018 and the Punjab Water Act 2019. The policy emphasizes the need to curb groundwater over-extraction and contamination, and the Act establishes a regime of licenses for abstraction and wastewater disposal, managed by newly created regulatory bodies.

Punjab is also developing a provincial Groundwater Management Plan. In Khyber Pakhtunkhwa province, a similar act was passed in 2020 while in Sindh, a draft Water Policy is underway to provide much needed direction for tackling waterlogging and salinity, and for conjunctive management of surface water and groundwater. The federal government is drafting a five-year National Groundwater Management Plan to provide a framework for coordinating groundwater stakeholders across Pakistan.

It appears that there is now clear recognition of the rapid loss of groundwater and its impact on agriculture irrigation and drinking water availability.  What is needed is serious follow-up and execution to produce results. 

Here's a video discussion on the subject:

https://youtu.be/nrfF3ppBzpo




Related Links:

Haq's Musings



Saturday, December 2, 2017

Katas Raj Temple Case Exposes Pakistan's Groundwater Crisis

Pakistan Supreme Court has recently taken notice of the drying water pond at Katas Raj temple located in Chakwal district in the nation's Punjab province.  Hindus believe that it was formed from the tears Lord Shiva shed after the death of his wife Sati.

Why is the temple pond drying up? What is happening to the water source that used to keep it full? Is it symptomatic of a much larger  life-and-death issue of water stress Pakistan faces? Let's explore the answers to these questions.

Groundwater Depletion:

Katas Raj temple pond is a victim of the falling water table due to increasing use of groundwater in Pakistan. Pakistan, India, and the United States are responsible for two-thirds of that outsize groundwater use globally,  according to a report by University College London researcher Carole Dalin.  Nearly half of this groundwater is used to grow wheat and rice crops for domestic consumption and exports.  This puts Pakistan among the world's largest exporters of its rapidly depleting groundwater.

NASA Satellite Maps:

Pakistan Council of Research in Water Resources is working with  United States' National Air and Space Administration (NASA) to monitor groundwater resources in the country.

Water Stress Satellite Map Source: NASA 
NASA's water stress maps shows extreme water stress across most of Pakistan and northern, western and southern parts of India.

The US space agency uses Gravity Recovery and Climate Experiment (GRACE) to measure earth's groundwater. GRACE’s pair of identical satellites, launched in 2002, map tiny variations in Earth's gravity. Since water has mass, it affects these measurements. Therefore, GRACE data can help scientists monitor where the water is and how it changes over time, according to NASA.

Aquifer Recharge:

Building large dams is only part of the solution to water stress in Pakistan. The other, more important part, is building structures to trap rain water for recharging aquifers across the country.

Typical Aquifer in Thar Desert 

Pakistan's highly water stressed Punjab province is beginning recognize the need for replacing groundwater. Punjab Government is currently in the process of planning a project to recharge aquifers for groundwater management in the Province by developing the economical and sustainable technology and to recharge aquifer naturally and artificially at the available site across the Punjab. It has allocated Rs. 582.249 million to execute this project over four years.

Punjab Pilot Project: 

The Punjab pilot project is intended to recharge groundwater by building flood water ponds in "old Mailsi Canal and supplement it by installing suitable recharging mechanism like recharging well as pilot project. Moreover to develop efficient and sustainable techniques for artificial recharge of Aquifer using surplus rain, flood and surface water and also strengthening the ground water monitoring network in Punjab as well as to identify the different potential feasible sites for artificial recharge."

Summary:

Katas Raj Pond case in Pakistan Supreme Court has brought mass media attention to the nation's existential crisis with its water resource depletion. The country needs to urgently address this looming crisis with a multi-pronged effort. It needs to build large dams and recharge its groundwater reservoirs. At the same time, Pakistan needs to find ways to conserve and more efficiently use the water resources it has.  The country needs to particularly focus on efficient farm irrigation and planting of less water intensive varieties of crops because the agriculture sector uses over 90% of all available water.


Related Links:

Haq's Musings

Water Scarce Pakistan

Cycles of Drought and Floods in Pakistan

Pakistan to Build Massive Dams

Dust Bowl in Thar Desert Region

Dasht River in Balochistan

Hindus in Pakistan

Wednesday, January 6, 2016

UAE Eyes Pakistan's Dasht River Water in Balochistan

A top UAE businessman has proposed building a 500 kilometer long pipeline to bring Pakistan's Dasht River water from the Makran coast to Fujaira for United Arab Emirates' water security.

Water-scarce Pakistan itself needs to store and use the Dasht River water for development of Balochistan, particularly Gwadar and other related projects as part of the ambitious China-Pakistan Economic Corridor (CPEC).

Abdullah Al Shehi, the CEO of GeoWash, has argued that the Dasht River floods annually, which has prompted the Pakistani government to empty the excess water through channels leading to the sea. That excess water, said Mr Al Shehi, could be put to use in the UAE, according to a report in the UAE's newspaper "The National".

Dasht River


Dasht River:

Dasht River is located in Makran region and Gwadar District, in the southwestern section of Balochistan Province, in southwestern Pakistan. The Kech River, a seasonal intermittent river, is a tributary of the Dasht River which flows southeast through the Central Makran Range in the Gwadar District of Balochistan into the Gulf of Oman in the Arabian Sea.

Mirani Dam

Mirani Dam:

Mirani Dam was completed on Dasht River in 2006 to store over 300,000 acre-feet of fresh water to meet the needs of southern Balochistan. Mirani Dam is the largest dam in the world in terms of volume for flood protection with a floodstock of 588,690 cubic hectometer, according to International Commission On Large Dams (ICOLD). This water reservoir is essential for the development of a deep sea port and a major new metropolis in Gawadar as part of China-Pakistan Economic Corridor. In addition to supplying fresh water to Turbat, Jiwani and Gwadar cities, it has sufficient capacity to irrigate over 33,000 acres of farm land.

UAE Water Security:

The United Arab Emirates uses 80% of its fresh water for agriculture in its arid desert and the rest of the 20% for urban needs, according to The National. Here's the key question: Does it make more sense for the UAE to import food rather than grow its own food by importing fresh water? The second question is: Can the UAE focus on desalination for the water it needs for urban use?

Summary:

Gwadar port was first conceived in late 1950s when Pakistan purchased the region from  the Sultanate of Oman. China-Pakistan Economic Corridor (CPEC) has been talked about since early 1990s. But nothing was done to develop until President Pervez Musharraf allocated time, money and focus to build first several berths at Gwadar deep sea port, Coastal Highway to connect it with Karachi and Mirani Dam in Balochistan to supply water on his watch.

Now water-stressed Pakistan needs to focus on building greater water storage capacity if it's really serious about developing Gwadar, Southwestern Balochistan and the Makran coast. It must not agree to export the Dasht River water to anyone, including the UAE. Instead, it should offer to export food as necessary to meet UAE's needs.

Related Links:

Haq's Musings

Water-Stressed Pakistan

China-Pakistan Economic Corridor

President Musharraf's Legacy

Mineral Wealth of Balochistan

Pakistan Farm Land Controversy

Recurring Floods and Droughts in Pakistan

Wednesday, September 14, 2011

Recurring Floods and Droughts in Pakistan

Pakistan has increasingly been suffering from cycles of severe droughts followed by massive floods in the last few years. This recurring pattern of shortage and excess of water gives us a preview of the growing challenge of climate change. This situation calls for a comprehensive water management effort to deal with a potentially existential threat to Pakistan.

Flood-Drought Cycles:

Before the summer floods of 2010, the Indus had turned into a muddy puddle in parts of Sindh. Britain's Financial Times reported at the the time that "angry farmers marched through villages in Sindh demanding access to water. Those who can no longer turn a profit in the fields are increasingly resorting to banditry or migrating to urban shanties".

Earlier, there was a 2009 report by the Woodrow Wilson International Center saying that the melting Himalayan glaciers have exacerbated Pakistan’s shortages. And the World Bank warned that Pakistan could face a “terrifying” 30-40 per cent drop in river flows in 100 year’s time. Now large parts of Sindh are under water for the second year in a row, destroying lives and standing crops.

Growing Water Scarcity:



According to the United Nations' World Water Development Report, the total actual renewable water resources in Pakistan decreased from 2,961 cubic meters per capita in 2000 to 1,420 cubic meters in 2005. A more recent study indicates an available supply of water of little more than 1,000 cubic meters per person, which puts Pakistan in the category of a high stress country. Using data from the Pakistan's federal government's Planning and Development Division, the overall water availability has decreased from 1,299 cubic meters per capita in 1996-97 to 1,101 cubic meters in 2004-05. In view of growing population, urbanization and increased industrialization, the situation is likely to get worse. If the current trends continue, it could go as lows as 550-cubic meters by 2025. Nevertheless, excessive mining of groundwater goes on. Despite a lowering water table, the annual growth rate of electric tubewells has been 6.7% and for diesel tubewells about 7.4%. In addition, increasing pollution and saltwater intrusion threaten the country's water resources. About 36% of the groundwater is classified as highly saline.

So what can Pakistan do to manage these disastrous cycles of floods and droughts?

1. Build Dams and Dykes:



As the flood disaster takes its toll yet again, there are reports of USAID and ADB considering funding the $12 billion Diamer Bhasha Dam in Pakistan. The project is located on Indus River, about 200 miles upstream of the existing Tarbela Dam, 100 miles downstream from the Northern Area capital Gilgit in Gilgit-Baltistan region. The dam's reservoir would hold so much water that it could have averted last year's devastating floods. It would also provide enough electricity to end Pakistan's crippling shortages, according to a report in the Guardian newspaper. The massive dam on the Indus river would provide 4,500MW of renewable energy, making up for a shortfall causing up to 12 hours of load shedding on daily basis across Pakistan. The reservoir would be 50 miles long, holding 8.5 MAF (million acre feet) of water.

In addition to large dams, there is also a need to build and maintain dykes and start other flood-control projects in flood-prone areas like Badin and Thatta in Sindh.

2. Conserve Water:

Building Bhasha and several other proposed dams will help in dealing with water scarcity, but the growing population will continue put pressure on the vital resource.



Serious conservation steps need to be taken to improve the efficiency of water use in Pakistani agriculture which claims almost all of the available fresh water resources. A California study recently found that water use efficiency ranged from 60%-85% for surface irrigation to 70%-90% for sprinkler irrigation and 88%-90% for drip irrigation. Potential savings would be even higher if the technology switch were combined with more precise irrigation scheduling and a partial shift from lower-value, water-intensive crops to higher-value, more water-efficient crops. Rather than flood irrigation method currently used in Pakistani agriculture, there is a need to explore the use of drip or spray irrigation to make better use of nation's scarce water resources before it is too late. As a first step toward improving efficiency, Pakistan government launched in 2006 a US $1.3 billion drip irrigation program that could help reduce water waste over the next five years. Early results are encouraging. "We installed a model drip irrigation system here that was used to irrigate cotton and the experiment was highly successful. The cotton yield with drip irrigation ranged 1,520 kg to 1,680 kg per acre compared to 960 kg from the traditional flood irrigation method," according to Wajid Ishaq, a junior scientist at the Nuclear Institute for Agriculture and Biology(NIAB).





Beyond the government-funded experiments, there is a drip irrigation company called Micro Drip which is funded by the Acumen Fund. Micro Drip develops and provides products and services as poverty alleviation solutions to small farmers in Pakistan’s arid regions. It provides a complete drip irrigation system along with agricultural training and after-sales support to enable farmers to extract a higher yield from their land at a much lower cost of input.

So what is holding up Pakistan's progress on water management?

1. Lack of Funds:

Pakistani government revenues continue to be limited by slow economic growth and widespread culture of tax evasion. The biggest culprits are the ruling feudal politicians who oppose any attempt to levy taxes on their farm income. The limited resources the state does have are usually squandered on political patronage doled out to ruling politicians' supporters in the form of capricious grants, huge loans (defaulted with impunity), and plum jobs in bloated government and the money-losing state-owned enterprises. The result of this blatant abuse, waste and fraud is that the budget allocations for vital long-term investments in education, health care and infrastructure development projects are regularly slashed thereby shortchanging the future of the nation.

2. Corruption and Security Concerns:

The NY Times recently reported that "Washington’s fears of Pakistani corruption and incompetence has slowed disbursal of the money". The story reinforces the widely-held view that even after the funding is arranged, the corrupt and incompetent politicians and their hand-picked civilian administrators make any development progress slow and difficult. Such problems are further exacerbated by significant security issues in parts of the country severely plagued by ongoing militancy.

Existential Threat:

The Taliban who get all the coverage do not pose an existential threat to Pakistan. Generations of military families have periodically fought FATA insurgencies. For example, Shuja Nawaz, the author of Crossed Swords says that his grandfather, his uncle and his cousin have all been deployed in Waziristan by the British and later Pakistani governments in the last century and a half. American withdrawal from the region will eventually calm the situation in Waziristan, and the rest of the country.

Climate change and the growing water scarcity are the main long-term existential threats to Pakistan and the region. Water per capita is already down below 1000 cubic meters and declining
What Pakistan needs are major 1960s style investments for a second Green Revolution to avoid the specter of mass starvation and political upheaval it will bring.

Related Links:

Haq's Musings

Growing Water Scarcity in Pakistan

Political Patronage in Pakistan

Corrupt and Incompetent Politicians

Pakistan's Energy Crisis

Culture of Tax Evasion and Aid Dependence

Climate Change in South Asia

US Senate Report on Avoiding Water Wars in Central and South Asia

Thursday, May 19, 2016

India's Plan to Divert Ganges & Brahmaputra Rivers Alarms Bangladesh

New Delhi is starting massive series of new projects to divert water from major rivers in the north and the east of the country to India's drought-stricken western and southern regions. This news has sounded alarm bells in the Bangladeshi capital of Dhaka, according to the UK's Guardian newspaper.

The $400 billion project involves rerouting water from major rivers including the Ganga and Brahmaputra and creating canals to link the Ken and Batwa rivers in central India and Damanganga-Pinjal in the west. Its target is to help drought-hit India farmers who are killing themselves at a rate on one every 30 minutes for at least two decades.




The Indo-Gangetic Plain, also known as Indus-Ganga and the North Indian River Plain, is a 255 million hectare (630 million acre) fertile plain encompassing most of northern and eastern India, the eastern parts of Pakistan, and virtually all of Bangladesh, according to a Wikipedia entry.

India and Pakistan have a formal internationally-brokered and monitored treaty called Indus Waters Treaty (IWT) signed in 1960 between Indian Prime minister Jawaharlal Nehru and Pakistan President Ayub Khan in Karachi.



The IWT allocated water from three eastern rivers of Ravi, Beas and Sutlej for exclusive use by India before they enter Pakistan, while the water from three western rivers of Jhelum, Chenab and Indus was allocated for exclusive use of Pakistan. The treaty essentially partitioned the rivers rather than sharing of their waters. The treaty also permits India to build run-of-the-river hydroelectric projects on the western rivers but it can not divert any water from them for its own use.

In the east, River Ganga upon reaching the Indian state of West Bengal splits into two main branches, the Hooghly which continues its course south into West Bengal and the Padma that flows into Bangladesh. Similarly, the Brahmaputra upon reaching Bangladesh splits into two main distributaries, the Jamuna and the Meghna. Both enter Bangladesh at different points.

At least 100 million Bangladeshis living downstream in Jamuna (Brahmaputra) and Padma (Ganga) river basins will be hit hard if India carries out the project as planned.

Alarmed by this development, Bangladesh’s minister of water, Nazrul Islam, has pleaded with the Indian government to take Bangladesh’s water needs into consideration, noting that 54 of 56 Indian rivers flowed through his country.

Bangladesh is already suffering from India's increasing withdrawal of Ganges water in recent years. India has built at least 26 water diversion projects upstream the Ganges which has led to crop failure and even desertification of certain areas in the lower riparian Bangladesh, according to Dhaka Tribune.

Unlike the internationally-brokered and monitored Indus Water Treaty (IWT) between Pakistan and India, there is no similar water-sharing treaty between Bangladesh and India. The 1996 Farakka treaty has done little to help Bangladesh.  It is dependent entirely on the good-will of the rulers in Delhi for its water life-line.

Will Modi respond positively to the pleas of his strong ally in Bangladesh's Shaikh Hasina to take its eastern neighbor's water needs into consideration? Will Modi assure Bangladesh by signing a binding water-sharing treaty along the lines of the Indus Waters Treaty? Unfortunately, the history suggests otherwise.

Related Links:

Haq's Musings

Water-Scarce Pakistan

Indian Farmer Suicide One Every 30 Minutes

Recurring Floods and Droughts in Pakistan

Indian Media Coverage of Regional Issues

Shaikh Hasina's Witch Hunt