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Restoration of Ecological Status of Himalayan Rivers in China and India: The Case of the Two Mother Rivers—The Yellow and the Ganges

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Environmental Sustainability from the Himalayas to the Oceans

Abstract

This chapter first introduces the contribution of the Himalayas as the Water Tower of Asia, especially for the large countries of China and India. For the role of the Himalayan rivers of the Yellow and the Ganges, in giving birth and sustaining human civilizations in these countries, they are revered as the respective “Mother Rivers.” With rapid growth in the population in the two most populated countries with very rapidly growing economies, these two rivers have been impacted badly in terms of quality and quantity of their flows. Governmental and nongovernmental concerns over the decline of the ecological status of all rivers in China and India have led to important social innovations. The chapter reviews the research and innovations in policy and institutions made in China and India for ecological restoration of their rivers. In this context, the chapter reviews the status of clarification and articulation of environmental flows in the rivers in general but in the Yellow and the Ganges rivers in particular.

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References

  • Amarasinghe UA, Shah T, Anand BK (2008) India’s water supply and demand from 2025-2050: business-as-usualscenario and issues. In: Amarasinghe UA, Sharma BR (eds) Strategic analyses of the national river linking project (NRLP) of India, Series 2. Proceedings of the workshop on analyses of hydrological, social and ecological issues of the NRL, New Delhi, India, 9–10 October. IWMI, Colombo, pp 23–61

    Google Scholar 

  • Andersen LS (2011) Knowledge application—China. Stockholm Waterfront No. 2, 9 July 2011

    Google Scholar 

  • Arthington AH, Bunn SE, Poff NL, Naiman RJ (2006) The challenge of providing environmental flow rules to sustain river ecosystems. Ecol Appl 16(4):1311–1318

    Article  Google Scholar 

  • Bandyopadhyay J (1990) Tehri Dam: challenge before NF government. Econ Pol Wkly 25(5):243–244

    Google Scholar 

  • Bandyopadhyay J (1995) Sustainability of big dams in the Himalaya. Econ Pol Wkly 30(38):2367–2370

    Google Scholar 

  • Bandyopadhyay J (1996) Water towers of the world. People and the Planet 5(1):14–16

    Google Scholar 

  • Bandyopadhyay J (2002) A critical look at the report of the world commission on dams in the context of the debate over large dams on the Himalayan rivers. Water Resour Dev 18(1):127–145

    Article  Google Scholar 

  • Bandyopadhyay J (2009) Water, ecosystems and society: a confluence of disciplines. Sage, New Delhi

    Google Scholar 

  • Bandyopadhyay J (2011) Deciphering environmental flows. Semin Mag 626:50–53

    Google Scholar 

  • Bandyopadhyay J (2012) Water science in India; hydrological obscurantism. Econ Pol Wkly 47(7):22–25

    Google Scholar 

  • Bandyopadhyay J (2013) Securing the Himalayas as the water tower of Asia: an environmental perspective. Asia Policy 16(1):45–50

    Article  Google Scholar 

  • Boxer B (2001) Contradictions and challenges in China’s water policy development. Water Int 26(3):335–341

    Article  Google Scholar 

  • Briscoe J, Malik RPS (2006) India’s water economy: bracing for a turbulent future. Oxford University Press, New Delhi

    Google Scholar 

  • Cai X, Rosegrant MW (1999) Irrigated and rainfed crop area and yield. International Food Policy Research Institute, Washington, DC

    Google Scholar 

  • Chaturvedi MC (2001) Sustainable development of India’s waters: some policy issues. Water Policy 3:297–320

    Article  Google Scholar 

  • Chaturvedi MC (2012) India’s waters: advances in development and management. CRC Press, Boca Raton

    Google Scholar 

  • Chen YN, Hao XM, Li WH (2008) An analysis of the ecological security and ecological water requirements in the inland river of arid region. Adv Earth Sci 23(7):732–738

    Google Scholar 

  • CPC (2011) Document No. 1: CPC Central Committee and the State Council on accelerating water conservancy reform and development. Beijing

    Google Scholar 

  • CPC (2012) Document No. 3: Implementing the strictest water resource management system. Opinion of the State Council, Beijing

    Google Scholar 

  • CPCB (1982) Basin sub-basin inventory of water pollution: the Ganga basin parts I and II. Central Pollution Control Board, New Delhi

    Google Scholar 

  • CPCB (2013) Pollution assessment: river Ganga. Central Pollution Control Board, Delhi

    Google Scholar 

  • Curray JR, Moore DG (1971) Growth of the Bengal Deep-Sea Fan and denudation in the Himalaya. Geol Soc Am Bull 82:563–572

    Article  Google Scholar 

  • CWC (2005) Water data of India from Central Water Commission. New Delhi

    Google Scholar 

  • Dyson M, Bergkamp G, Scanlon J (eds) (2003) Flow: the essentials of environmental flows. IUCN, Gland

    Google Scholar 

  • Economy EC (2010) The river runs black. Cornell University Press, Ithaca

    Google Scholar 

  • Fang ZY (1988) Protection notebook of water resources (in Chinese). Hehai University Press, Nanjing

    Google Scholar 

  • Fu G, Chen S (2006) Water crisis in the yellow river: facts, reasons, impacts and countermeasures. Water Pract Technol 1(2)

    Google Scholar 

  • Gippel C, Jiang X, Zhang D, Cooling M, Kerr G, Close P, Jin S, Li L, Wang Z, Ma Z, Wang L, Sun Y, Pang H, Song R, Sun F, Shang H, Speed R (2012) Environmental flows assessment for the lower Yellow River. International Water Centre, Brisbane

    Google Scholar 

  • Gleick PH (2009) Chapter 5: China and water. In: World’s water 2008–2009. Island Press, Washington, DC, pp 79–100

    Google Scholar 

  • Gleick PH (2012) Chapter 6: China dams. In: Gleick PH (ed) The world’s water, vol 7. Island Press, Washington, DC

    Google Scholar 

  • Gopal B (2012) Water resources and sustainable development: issues and approaches to management—an Indian perspective. Int J Ecol Environ Sci 38(2–3):133–160

    Google Scholar 

  • Gopal B (ed) (2013) Environmental flows: an introduction for water resources managers. National Institute of Ecology, New Delhi

    Google Scholar 

  • Gopal B, Sah M (1993) Conservation and management of rivers in India: case-study of the river Yamuna. Environ Conserv 20(3):243–254

    Article  Google Scholar 

  • Guo Q (2007) Digging deeper for cleaner water. China Ministry of Water Resources, Beijing. http://www.mwr.gov.cn/english/20070424/83634.asp. Accessed 24 Apr 2007

  • HSBC (2012) Quality before quantity: will China address water quality or quantity first? HSBC Climate Change Global Research, Hong Kong

    Google Scholar 

  • ICID (2005) Water policy issues in China: study outcomes and suggested policy interventions. ICID, New Delhi

    Google Scholar 

  • IDSA (2010) Water security for India: the external dynamics. Institute for Defence Studies and Analyses, New Delhi

    Google Scholar 

  • IITR (2011) Study on assessment of cumulative impacts of hydropower projects in Alaknanda and Bhagirathi basins up to Devprayag. Indian Institute of Technology Roorkee, Roorkee

    Google Scholar 

  • IWMI (2004) Environmental Flows 1(2), November

    Google Scholar 

  • Iyer RR (2007) Towards water wisdom: limits, justice, harmony. Sage, New Delhi

    Google Scholar 

  • Iyer RR (2011) National water policy: an alternative draft for consideration. Econ Pol Wkly 46(26–27):201–214

    Google Scholar 

  • Jha DN (1998) Ancient India: an historical outline. Manohar, New Delhi

    Google Scholar 

  • Jiang X, Arthington A, Changming L (2010) Environmental flow requirement of fish in the lower reach of Yellow River. Water Int 35(4):381–396

    Article  Google Scholar 

  • Jun X, Chen YD (2001) Water problems and opportunities in the hydrological sciences in China. Hydrol Sci J 46(6):1–16

    Google Scholar 

  • Krishna Murti CR, Bilgrami KS, Das TM, Mathur RP (1991) The Ganga: a scientific study. Northern Book Centre, New Delhi

    Google Scholar 

  • Kumar R, Singh RD, Sharma KD (2005) Water resources of India. Curr Sci 89(5):794–811

    Google Scholar 

  • Kusuda T (ed) (2010) The Yellow River: water and life. World Scientific, Singapore

    Google Scholar 

  • Lahiri N (ed) (2000) The decline and fall of the Indus civilization. Permanent Black, Delhi

    Google Scholar 

  • Lamadrid AJ, Mac Clune KL (2010) Climate and hydrological modeling in the Hindu-Kush Himalaya region. CICER, ISET, Oslo

    Google Scholar 

  • Liu C, Xia J (2004) Water problems and hydrological research on the Yellow River and the Hai and Huai basins in China. Hydrol Process 18(12):2197–2210

    Article  Google Scholar 

  • Liu C, Wang Y, Shao M, Hou X (eds) (2012) Water science and technology in China: a roadmap to 2050. Science Press, Beijing

    Google Scholar 

  • Liu KK, Li CH, Cai YP, Xu M, Xia XH (2014) Comprehensive evaluation of water resources security in the Yellow River basin based on a fuzzy multi-attribute decision analysis approach. Hydrol Earth Syst Sci 18(5):1605–1623

    Article  Google Scholar 

  • Ma J (2004) China’s water crisis. International Rivers, Berkeley

    Google Scholar 

  • Majumdar PP (2008) Implications of climate change for sustainable water resources management in India. Phys Chem Earth 33:354–358

    Article  Google Scholar 

  • Mertha A (2008) China’s water warriors: citizens action and policy change. Cornell University Press, Ithaca

    Google Scholar 

  • MOEF (2013) Report of the inter-ministerial group on issues relating to the river Ganga, vol 1. Ministry of Environment and Forests, New Delhi

    Google Scholar 

  • MOWR (2012) Draft national water policy 2012. Ministry of Water Resources, New Delhi

    Google Scholar 

  • MOWR (2014) The Ganga basin version 2.0. Ministry of Water Resources, New Delhi

    Google Scholar 

  • Murty MN, Kumar S (2011) Water pollution in India: an economic appraisal. India infrastructure report 2011. IDFC, New Delhi, pp 285–298

    Google Scholar 

  • Pang AP, Sun T (2014) Bayesian networks for environmental flows decision-making and an application in the Yellow River estuary. China Hydrol Earth Syst Sci 18(5):1641–1651

    Article  Google Scholar 

  • Pietz DA (2015) The Yellow River; the problem of water in modern China. Harvard College, Cambridge, MA

    Google Scholar 

  • Rajvanshi A, Arora R, Mathur VB, Sivakumar K, Sathyakumar S, Rawat GS, Johnson JA, Ramesh K, Dimri N, Maletha A (2012) Assessment of cumulative impacts of hydroelectric projects on aquatic and terrestrial biodiversity in Alaknanda and Bhagirathi basins, Uttarakhand. Wildlife Institute of India, Dehradun

    Google Scholar 

  • Rao KL (1975) India’s water wealth: its assessment, uses and projections. Orient Longman, Hyderabad

    Google Scholar 

  • Ringler C, Cai X, Wang J, Ahmed A, Sue Y, Xu Z, Yang E, Jianshi Z, Zhu T, Cheng L, Yongfeng F, Xinfeng F, Xiaowei G, You L (2010) Yellow River basin: living with scarcity. Water Int 35(5):681–701

    Article  Google Scholar 

  • Smakhtin V, Revenga C, Doll P (2004) A pilot global assessment of environmental water requirements and scarcity. Water Int 29(3):307–317

    Article  CAS  Google Scholar 

  • Smakhtin V, Arunachalam M, Behera S, Chatterjee A, Das S, Gautam P, Joshi GD, Sivaramakrishnan KG, Unni KS (2007) Developing procedures for assessing ecological status of Indian river basins in the context of environmental water requirements. IWMI research report 114. IWMI, Colombo

    Google Scholar 

  • Song JX, Xu ZX, Liu CM, Li HE (2007) Ecological and environmental instream flow requirements for the Wei river—the largest tributary of the Yellow River. Hydrol Process 21(8):1066–1073

    Article  CAS  Google Scholar 

  • Speed R, Binney J, Posey B, Catford J (2011) Policy measures, mechanisms and framework for addressing environmental flows. International Water Centre, Brisbane

    Google Scholar 

  • Sun T, Yang ZF, Cui BS (2008) Critical environmental flows to support integrated ecological objectives for the Yellow River estuary, China. Water Resour Manage 22(8):973–989

    Article  Google Scholar 

  • Sun X, Speed R, Shen D (2010) Water resource management in the People’s Republic of China. Routledge, Abingdon

    Google Scholar 

  • Sun T, Xu J, Wang Z (2012) Objective based method for environmental flow assessment in estuaries and its application to the Yellow River estuary, china. Estuaries Coasts 35:892–903

    Article  Google Scholar 

  • Swain A (2015) When state decides not to listen: the emerging new phase of environmental movements in India. Paper presented at the international seminar on perspectives on contemporary India Leiden, Netherlands, 16–17 Apr 2015

    Google Scholar 

  • The Economist (2013) All dried up. Beijing

    Google Scholar 

  • The World Bank (2011) Project appraisal document: national Ganga river basin project. The World Bank, New Delhi

    Google Scholar 

  • Trivedi RC (2010) Water quality of the Ganga river—an overview. Aquat Ecosyst Health Manage 13(4):347–351

    Article  CAS  Google Scholar 

  • UNESCO (2010) Climate change and adaptation for water resources in Yellow River basin, China IHP VII technical document on hydrology. UNESCO, Beijing

    Google Scholar 

  • Wang S (2002) Resource-oriented water management: towards harmonious coexistence between man and nature. China Water Power Press, Beijing

    Google Scholar 

  • Wang H, Yang Z, Yoshiki S, Paul Liu J, Sun X, Wang Y (2007) Stepwise decrease of the Huanghe (Yellow River) sediment load (1950-2005): impacts of climate change and human activities. Global Planet Change 57:331–354

    Article  Google Scholar 

  • Wang X, Zhang Y, James C (2010) Approaches to providing and managing environmental flows in China. In: Sun X, Speed R, Shen D (eds) Water resources management in the People’s Republic of China. Routledge, London

    Google Scholar 

  • Wang S, Bojie F, Piao S, Lu Y, Ciais P, Feng X, Wang Y (2016) Reduced sediment transport in the Yellow River due to anthropogenic changes. Nat Geosci 9:38–41

    Article  CAS  Google Scholar 

  • Whitehead PG, Barbour E, Futter MN, Sarkar S, Rodda H, Caesar J, Butterfield D, Jin L, Sinha R, Nicholls R, Salehin M (2015) Impacts of climate change and socio-economic scenarios on flow and water quality of the Ganges, Brahmaputra and Meghna (GBM) river systems: low flow and flood statistics. Environ Sci Process Impacts 17:1057–1069

    Article  CAS  Google Scholar 

  • Wittfogel KA (1957) Oriental despotism: a comparative study of total power. Yale University Press, New Haven

    Google Scholar 

  • WWF (2012) Assessment of environmental flows for the Upper Ganga Basin. Worldwide Fund for Nature, New Delhi

    Google Scholar 

  • Xie L (2009) Environmental activism in China. Routledge, Abingdon

    Google Scholar 

  • Xie J, Liebenthal A, Warford JJ, Dixon JA, Wang M, Gao S, Wang S, Jiang Y, Ma Z (2009) Addressing China’s water scarcity. The World Bank, Washington, DC

    Google Scholar 

  • Yang QR, Zhang XP, Wang XG (2010) Study on the population dynamics and water right changes along Yellow River watershed. Yellow River 32(4):7–9

    CAS  Google Scholar 

  • Zhang DX (2000) The effect of population activities on the changes in vegetation of Yangtez River valley since the period of Spring and Autumn-Warring State (710–221 BC). J Plant Resour Environ 9(1):47–53

    Google Scholar 

  • Zhao Z (2011) New archaeobotanic data for the study of origins of agriculture in China. Curr Anthropol 52(S4):161–162

    Article  Google Scholar 

  • Zusman E (2000) The river runs dry: examining water shortages in the Yellow River basin. Asia Institute, UCLA, Los Angeles

    Google Scholar 

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Correspondence to Jayanta Bandyopadhyay .

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Bandyopadhyay, J. (2017). Restoration of Ecological Status of Himalayan Rivers in China and India: The Case of the Two Mother Rivers—The Yellow and the Ganges. In: Dong, S., Bandyopadhyay, J., Chaturvedi, S. (eds) Environmental Sustainability from the Himalayas to the Oceans. Springer, Cham. https://doi.org/10.1007/978-3-319-44037-8_4

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