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Marine and Freshwater Research Marine and Freshwater Research Society
Advances in the aquatic sciences
RESEARCH ARTICLE

Reconciliation of water conflicts? Coalition and contradiction in managing rivers in the Brahmaputra basin

Hongzhang Xu https://orcid.org/0000-0001-8904-2976 A B * , Jamie Pittock https://orcid.org/0000-0001-6293-996X A , Md Kamruzzaman https://orcid.org/0000-0003-4980-4125 A C and Sagar Acharya D
+ Author Affiliations
- Author Affiliations

A Fenner School of Environment and Society, The Australian National University, Building 48, Linnaeus Way, Acton, ACT 2601, Australia.

B Australian Centre on China in the World, The Australian National University, Building 188, Fellows Lane, Canberra, ACT 2601, Australia.

C Department of Agricultural Extension Education, Sylhet Agricultural University, Sylhet 3100, Bangladesh.

D Department of Agriculture, Ministry of Agriculture and Forests, Thimphu, Bhutan.

* Correspondence to: hongzhang.xu@anu.edu.au

Handling Editor: Luiz Silva

Marine and Freshwater Research 74(8) 676-696 https://doi.org/10.1071/MF22237
Submitted: 7 November 2022  Accepted: 17 April 2023   Published: 11 May 2023

© 2023 The Author(s) (or their employer(s)). Published by CSIRO Publishing

Abstract

Context: Transboundary sharing of river water is not just an international problem, it also cascades down to regional, state and local levels. Water cooperation in the Brahmaputra River basin among China, India, Bhutan and Bangladesh has long been contested. However, it is unclear how the four countries can cooperate and what the cornerstones for their cooperation might be.

Aims: Better transboundary management of Brahmaputra requires a new direction from the current situation of fragmented cooperation, conflicts and disputes in the region and increasing threats of climate change.

Methods: To explore possible consensus, we conducted an advocacy coalition assessment of the four countries on the basis of the heterogeneous ecosystem services valued by each nation.

Key results: Whereas China and India are focused on politics, Bangladesh and Bhutan are primarily concerned about the basin in physical terms. Although each nation values the Brahmaputra in different ways, it is possible to initiate strong collaboration on the basis of shared beliefs. We found that hydropower-supported energy transitions for clean and affordable energy supply meet the needs and expectations of all nations, especially under the threats of climate change.

Conclusions: A sustainable energy change coalition can help reduce carbon emissions, acquire green energy, irrigate land in dry seasons, and manage disasters and increasing runoffs from melting glaciers. We conclude our paper with insights for each nation and hydropower development as a whole that might help the nations manage the Brahmaputra River more sustainably by overcoming their unmatched or mismatched values and interest.

Implications: Water in shared rivers can raise regional conflicts, but it does not have to if mismatched deep core beliefs among nations can be avoided through cooperation.

Keywords: advocacy coalition framework, belief systems, Brahmaputra, climate change, dams, energy transitions, transboundary water governance, values.


References

Abdulrazak, LF, Islam, A, and Hossain, MB (2021). Towards energy sustainability: Bangladesh perspectives. Energy Strategy Reviews 38, 100738.
Towards energy sustainability: Bangladesh perspectives.Crossref | GoogleScholarGoogle Scholar |

Ara, F, and Khan, MMR (2006). Good governance: Bangladesh perspective. The Social Sciences 1, 91–97.

Armitage, D, de Loë, RC, Morris, M, Edwards, TWD, Gerlak, AK, Hall, RI, Huitema, D, Ison, R, Livingstone, D, MacDonald, G, Mirumachi, N, Plummer, R, and Wolfe, BB (2015). Science–policy processes for transboundary water governance. Ambio 44, 353–366.
Science–policy processes for transboundary water governance.Crossref | GoogleScholarGoogle Scholar |

Banerjee, A, and Bandopadhyay, R (2016). Biodiversity hotspot of Bhutan and its sustainability. Current Science 110, 521–527.

Bangladesh Bureau of Statistics (2020) ‘Bangladesh statistics 2020.’ (Statistics and Informatics Division, Ministry of Planning: Dhaka, Bangladesh)

Barua, A, Vij, S, and Zulfiqur Rahman, M (2018). Powering or sharing water in the Brahmaputra River basin. International Journal of Water Resources Development 34, 829–843.
Powering or sharing water in the Brahmaputra River basin.Crossref | GoogleScholarGoogle Scholar |

Baten, MA, and Titumir, RAM (2016). Environmental challenges of trans-boundary water resources management: the case of Bangladesh. Sustainable Water Resources Management 2, 13–27.
Environmental challenges of trans-boundary water resources management: the case of Bangladesh.Crossref | GoogleScholarGoogle Scholar |

Bej S (2020) Locked in hydropolitics: understanding the local protests and differing dynamics in Tawang. In ‘Tawang, Monpas and Tibetan Buddhism in transition: life and society along the India-China borderland’. (Eds M Mayilvaganan, N Khatoon, S Bej) pp. 135–151. (Springer: Singapore) https://doi.org/10.1007/978-981-15-4346-3_10

Bentley, J (2021). Protectors of the land and water: citizenship, territory and vulnerability among the Lepcha in Sikkim and West Bengal. Asian Ethnicity 22, 330–352.
Protectors of the land and water: citizenship, territory and vulnerability among the Lepcha in Sikkim and West Bengal.Crossref | GoogleScholarGoogle Scholar |

Bernauer, T (2002). Explaining success and failure in international river management. Aquatic Sciences 64, 1–19.
Explaining success and failure in international river management.Crossref | GoogleScholarGoogle Scholar |

Berndtsson, R, and Tussupova, K (2020). The future of water management in central Asia. Water 12, 2241.
The future of water management in central Asia.Crossref | GoogleScholarGoogle Scholar |

Bhagabati AK, Kalita MC, Baruah S (2006) ‘Biodiversity of Assam: status strategy and action plan for conservation.’ (EBH: Assam, India)

Bhattacharjya, BK, Bhaumik, U, and Sharma, AP (2017). Fish habitat and fisheries of Brahmaputra River in Assam, India. Aquatic Ecosystem Health & Management 20, 102–115.
Fish habitat and fisheries of Brahmaputra River in Assam, India.Crossref | GoogleScholarGoogle Scholar |

Biba S (2020) China–India river-water conflicts: toward a solution through launching a cooperation spiral. In ‘Routledge handbook of China–India relations’. (Eds K Bajpai, S Ho, MC Miller) pp. 209–224. (Routledge: London, UK)

Biswas, AK (2011). Cooperation or conflict in transboundary water management: case study of South Asia. Hydrological Sciences Journal 56, 662–670.
Cooperation or conflict in transboundary water management: case study of South Asia.Crossref | GoogleScholarGoogle Scholar |

Bode, TG (2017). A modern treaty for the Columbia River. Environmental Law 47, 81–125.

Brichieri-Colombi, S, and Bradnock, RW (2003). Geopolitics, water and development in South Asia: cooperative development in the Ganges–Brahmaputra delta. The Geographical Journal 169, 43–64.
Geopolitics, water and development in South Asia: cooperative development in the Ganges–Brahmaputra delta.Crossref | GoogleScholarGoogle Scholar |

Chellaney, B (2012). Rising powers, rising tensions: the troubled China–India relationship. The SAIS Review of International Affairs 32, 99–108.

Chowdhury, NT (2010). Water management in Bangladesh: an analytical review. Water Policy 12, 32–51.
Water management in Bangladesh: an analytical review.Crossref | GoogleScholarGoogle Scholar |

Chowdhury, MMI, Rahman, SM, Abubakar, IR, Aina, YA, Hasan, MA, and Khondaker, AN (2021). A review of policies and initiatives for climate change mitigation and environmental sustainability in Bangladesh. Environment, Development and Sustainability 23, 1133–1161.
A review of policies and initiatives for climate change mitigation and environmental sustainability in Bangladesh.Crossref | GoogleScholarGoogle Scholar |

Daoudy M (2020) ‘The origins of the Syrian conflict: climate change and human security.’ (Cambridge University Press: UK)

Darby, SE, Dunn, FE, Nicholls, RJ, Rahman, M, and Riddy, L (2015). A first look at the influence of anthropogenic climate change on the future delivery of fluvial sediment to the Ganges–Brahmaputra–Meghna delta. Environmental Science: Processes & Impacts 17, 1587–1600.
A first look at the influence of anthropogenic climate change on the future delivery of fluvial sediment to the Ganges–Brahmaputra–Meghna delta.Crossref | GoogleScholarGoogle Scholar |

Davis, AE, Gamble, R, Roche, G, and Gawne, L (2021). International relations and the Himalaya: connecting ecologies, cultures and geopolitics. Australian Journal of International Affairs 75, 15–35.
International relations and the Himalaya: connecting ecologies, cultures and geopolitics.Crossref | GoogleScholarGoogle Scholar |

Department of Hydropower & Power Systems (2019) ‘Project on power system master plan 2040 in Bhutan.’ (Japan International Cooperation Agency, JICA)

Development and Reform Commission of People’s Government of the Xizang Autonomous Region (2018a) 13th five-year plan of hydropower development and revolution in Tibet. Available at https://www.xizang.gov.cn/zwgk/xxfb/ghjh_431/201902/t20190223_61969.html

Development and Reform Commission of People’s Government of the Xizang Autonomous Region (2018b) 13th five-year plan of toursim development in Tibet. Available at https://www.xizang.gov.cn/zwgk/xxfb/ghjh_431/201902/t20190223_61964.html

Dhawan V (2017) ‘Water and agriculture in India: Background paper for the South Asia expert panel during the global forum for food and agriculture.’ (OAV – German Asia-Pacific Business Association: Hamburg, Germany)

Dinar, S, Katz, D, De Stefano, L, and Blankespoor, B (2019). Do treaties matter? Climate change, water variability, and cooperation along transboundary river basins. Political Geography 69, 162–172.
Do treaties matter? Climate change, water variability, and cooperation along transboundary river basins.Crossref | GoogleScholarGoogle Scholar |

Dorji Y (2016) Water: securing Bhutan’s future. Thimphu, Bhutan: Asian Development Bank and National Enviornment Commission, Royal Government of Bhutan. Available at https://www.adb.org/publications/water-securing-bhutans-future

Earle A (2013) ‘Transboundary water management: principles and practice.’ (Earthscan: London, UK)

Ellis, SR, Levings, GW, Carter, LF, Richey, SF, and Radell, MJ (1993). Rio Grande Valley, Colorado, New Mexico, and Texas. JAWRA Journal of the American Water Resources Association 29, 617–646.
Rio Grande Valley, Colorado, New Mexico, and Texas.Crossref | GoogleScholarGoogle Scholar |

Feng, Y, Wang, W, and Liu, J (2019). Dilemmas in and pathways to transboundary water cooperation between China and India on the Yaluzangbu–Brahmaputra River. Water 11, 2096.
Dilemmas in and pathways to transboundary water cooperation between China and India on the Yaluzangbu–Brahmaputra River.Crossref | GoogleScholarGoogle Scholar |

Fischer, S, Pietroń, J, Bring, A, Thorslund, J, and Jarsjö, J (2017). Present to future sediment transport of the Brahmaputra River: reducing uncertainty in predictions and management. Regional Environmental Change 17, 515–526.
Present to future sediment transport of the Brahmaputra River: reducing uncertainty in predictions and management.Crossref | GoogleScholarGoogle Scholar |

Gain, AK, Mondal, MS, and Rahman, R (2017). From flood control to water management: a journey of Bangladesh towards integrated water resources management. Water 9, 55.
From flood control to water management: a journey of Bangladesh towards integrated water resources management.Crossref | GoogleScholarGoogle Scholar |

Gallagher, KS, and Qi, Q (2021). Chinese overseas investment policy: implications for climate change. Global Policy 12, 260–272.
Chinese overseas investment policy: implications for climate change.Crossref | GoogleScholarGoogle Scholar |

Gamble, R (2019). How dams climb mountains: China and India’s state-making hydropower contest in the Eastern-Himalaya watershed. Thesis Eleven 150, 42–67.
How dams climb mountains: China and India’s state-making hydropower contest in the Eastern-Himalaya watershed.Crossref | GoogleScholarGoogle Scholar |

Gasparotti, C (2014). The main factors of water pollution in Danube River basin. Euro Economica 33, 91–106.

Giger, W (2009). The Rhine red, the fish dead – the 1986 Schweizerhalle disaster, a retrospect and long-term impact assessment. Environmental Science and Pollution Research 16, 98–111.
The Rhine red, the fish dead – the 1986 Schweizerhalle disaster, a retrospect and long-term impact assessment.Crossref | GoogleScholarGoogle Scholar |

Gilfillan, D, and Pittock, J (2022). Pumped storage hydropower for sustainable and low-carbon electricity grids in pacific rim economies. Energies 15, 3139.
Pumped storage hydropower for sustainable and low-carbon electricity grids in pacific rim economies.Crossref | GoogleScholarGoogle Scholar |

Glantz, MH (2005). Water, climate, and development issues in the Amu Darya basin. Mitigation and Adaptation Strategies for Global Change 10, 23–50.
Water, climate, and development issues in the Amu Darya basin.Crossref | GoogleScholarGoogle Scholar |

Guoqing S, Tianhe J, Zhonggen S (2021) Evolution of land administration law and resettlement regulation in China: setting new standards. In ‘Resettlement in Asian Countries: legislation, administration and struggles for rights’. (Eds M Zaman, R Nair, S Guoqing) pp. 56–70. (Routledge: London, UK)

Gyeltshen, S (2022). Analysis of Bhutan’s energy policies in relation to energy security and climate change: policy perspective. Energy Policy 170, 113223.
Analysis of Bhutan’s energy policies in relation to energy security and climate change: policy perspective.Crossref | GoogleScholarGoogle Scholar |

Han, X, and Webber, M (2020). Extending the China water machine: constructing a dam export industry. Geoforum 112, 63–72.
Extending the China water machine: constructing a dam export industry.Crossref | GoogleScholarGoogle Scholar |

Haque, HME, Dhakal, S, and Mostafa, SMG (2020). An assessment of opportunities and challenges for cross-border electricity trade for Bangladesh using SWOT-AHP approach. Energy Policy 137, 111118.
An assessment of opportunities and challenges for cross-border electricity trade for Bangladesh using SWOT-AHP approach.Crossref | GoogleScholarGoogle Scholar |

Harris, LM, and Alatout, S (2010). Negotiating hydro-scales, forging states: comparison of the upper Tigris/Euphrates and Jordan River basins. Political Geography 29, 148–156.
Negotiating hydro-scales, forging states: comparison of the upper Tigris/Euphrates and Jordan River basins.Crossref | GoogleScholarGoogle Scholar |

He, Y (2021). Current and future transboundary water cooperation over the YarlungZangbo/Brahmaputra River basin: from an interdisciplinary perspective. Water Policy 23, 1107–1128.
Current and future transboundary water cooperation over the YarlungZangbo/Brahmaputra River basin: from an interdisciplinary perspective.Crossref | GoogleScholarGoogle Scholar |

Hossain MM (2015) Basin-wide approach to flood risk management in Bangladesh. In ‘E-proceedings of the 36th IAHR World Congress, 28 June–3 July 2015, The Hague, Netherlands’. (International Association for Hydro-Environment Engineering and Research (IAHR): Madrid, Spain)

Hossain MS, Majumder AK (2019) Tsangpo hydropower dam: is it devastation on river ecosystem and downstream Riparian Community? In ‘8th international conference on water resources and arid environments (ICWRAE 8)’, 22–24 January 2019, Riyadh, Saudi Arabia. (Prince Sultan Institute for Environmental, Water and Desert Research: Riyadh, Saudi Arabia)

Huang, Z, Lin, B, Sun, J, Luozhu, N, Da, P, and Dawa, J (2020). Suspended sediment transport responses to increasing human activities in a high-altitude river: a case study in a typical sub-catchment of the Yarlung Tsangpo River. Water 12, 952.
Suspended sediment transport responses to increasing human activities in a high-altitude river: a case study in a typical sub-catchment of the Yarlung Tsangpo River.Crossref | GoogleScholarGoogle Scholar |

Hydropower Sustainability Council (2021) Hydropower sustainability standard. Available at https://www.hydrosustainability.org/s/Hydropower-sustainability-standard.pdf

Islam, SN, and Gnauck, A (2008). Mangrove wetland ecosystems in Ganges–Brahmaputra delta in Bangladesh. Frontiers of Earth Science in China 2, 439–448.
Mangrove wetland ecosystems in Ganges–Brahmaputra delta in Bangladesh.Crossref | GoogleScholarGoogle Scholar |

Islam, MN, Atiqul Haq, SM, Ahmed, KJ, and Best, J (2022). How do vulnerable people in Bangladesh experience environmental stress from sedimentation in the Haor Wetlands? An exploratory study. Water Resources Research 58, e2021WR030241.
How do vulnerable people in Bangladesh experience environmental stress from sedimentation in the Haor Wetlands? An exploratory study.Crossref | GoogleScholarGoogle Scholar |

Jackson, S, and Barber, M (2016). Historical and contemporary waterscapes of North Australia: Indigenous attitudes to dams and water diversions. Water History 8, 385–404.
Historical and contemporary waterscapes of North Australia: Indigenous attitudes to dams and water diversions.Crossref | GoogleScholarGoogle Scholar |

Jenkins-Smith HC, Nohrstedt D, Weible CM, Ingold K (2018) The advocacy coalition framework: an overview of the research program. In ‘Theories of the policy process. Vol. 4’. (Eds CM Weible, PA Sabatier) pp. 135–171. (Routledge)

Jiang, H, Qiang, M, Lin, P, Wen, Q, Xia, B, and An, N (2017). Framing the Brahmaputra River hydropower development: different concerns in riparian and international media reporting. Water Policy 19, 496–512.
Framing the Brahmaputra River hydropower development: different concerns in riparian and international media reporting.Crossref | GoogleScholarGoogle Scholar |

Jyoti Deka, B (2021). Hydro-politics between India and China: the ‘brahma-hypothesis’ and securing the Brahmaputra. Asian Affairs 52, 327–343.
Hydro-politics between India and China: the ‘brahma-hypothesis’ and securing the Brahmaputra.Crossref | GoogleScholarGoogle Scholar |

Kamakia, A, Guoqing, S, Zaman, M, and Junbi, Z (2018). Financing for development and socio-ecological transitions: a review of Chinese investments in Kenya. Environmental Management and Sustainable Development 7, 34.
Financing for development and socio-ecological transitions: a review of Chinese investments in Kenya.Crossref | GoogleScholarGoogle Scholar |

Kibaroglu A (2021) ‘Building a regime for the waters of the Euphrates-Tigris river basin.’ (Brill: Leiden, Netherlands)

Kirchherr, J, Matthews, N, Charles, KJ, and Walton, MJ (2017). ‘Learning it the hard way’: social safeguards norms in Chinese-led dam projects in Myanmar, Laos and Cambodia. Energy Policy 102, 529–539.
‘Learning it the hard way’: social safeguards norms in Chinese-led dam projects in Myanmar, Laos and Cambodia.Crossref | GoogleScholarGoogle Scholar |

Lee, TR (1995). The management of shared water resources in Latin America. Natural Resources Journal 35, 541–553.

Li, D, Lu, X, Walling, DE, Zhang, T, Steiner, JF, Wasson, RJ, Harrison, S, Nepal, S, Nie, Y, Immerzeel, WW, Shugar, DH, Koppes, M, Lane, S, Zeng, Z, Sun, X, Yegorov, A, and Bolch, T (2022). High Mountain Asia hydropower systems threatened by climate-driven landscape instability. Nature Geoscience 15, 520–530.
High Mountain Asia hydropower systems threatened by climate-driven landscape instability.Crossref | GoogleScholarGoogle Scholar |

Lin, P-C, Brosse, S, Gao, X, Liu, C-C, and Liu, H-Z (2013). Species composition and temporal pattern of fish passing through the navigation locks in the middle reach of Yangtze River: implications for fish conservation. Journal of Applied Ichthyology 29, 1441–1444.
Species composition and temporal pattern of fish passing through the navigation locks in the middle reach of Yangtze River: implications for fish conservation.Crossref | GoogleScholarGoogle Scholar |

Liu, Y (2015). Transboundary water cooperation on the Yarlung Zangbo/Brahmaputra – a legal analysis of riparian state practice. Water International 40, 354–374.
Transboundary water cooperation on the Yarlung Zangbo/Brahmaputra – a legal analysis of riparian state practice.Crossref | GoogleScholarGoogle Scholar |

Llamosas, C, and Sovacool, BK (2021). The future of hydropower? A systematic review of the drivers, benefits and governance dynamics of transboundary dams. Renewable and Sustainable Energy Reviews 137, 110495.
The future of hydropower? A systematic review of the drivers, benefits and governance dynamics of transboundary dams.Crossref | GoogleScholarGoogle Scholar |

Ly Keng, C, Berrod, F, Fujiki, K, and Badariotti, D (2020). Mapping of law: tool for understanding geo-history of industrial pollutions of the Rhine river’s water. Annales de géographie 733–734, 250–273.

Mahanta C (2014) ‘Physical assessment of the Brahmaputra River.’ (IUCN)

Malkamäki, A, Ylä-Anttila, T, Brockhaus, M, Toppinen, A, and Wagner, PM (2021). Unity in diversity? When advocacy coalitions and policy beliefs grow trees in South Africa. Land Use Policy 102, 105283.
Unity in diversity? When advocacy coalitions and policy beliefs grow trees in South Africa.Crossref | GoogleScholarGoogle Scholar |

Mehsud, MI (2021). Pakistan’s Indus diplomacy: from troubled waters to a troubled treaty. International Negotiation 27, 247–263.
Pakistan’s Indus diplomacy: from troubled waters to a troubled treaty.Crossref | GoogleScholarGoogle Scholar |

Millennium Ecosystem Assessment (2005) ‘Ecosystems and human well-being: wetlands and water synthesis.’ (Island Press: Washington, DC, USA)

Ministry of Economic Affairs, Royal Government of Bhutan (2021) Bhutan sustainable hydropower development policy. Available at https://www.sasec.asia/index.php?page=news&nid=1257&url=shdp-2021-bhutan

Ministry of Health (2021) ‘National nutrition strategy and action plan (2021–2025).’ (Nutrition Program, Department of Public Health, Ministry of Health: Thimpu, Bhutan)

Ministry of Power (2022) Policy on hydro power development. Available at https://powermin.gov.in/en/content/policy-hydro-power-development

Mohanty A (2021) ‘Water as a political security tool: the Himalaya’s strategic conundrum.’ February. (Institute for Security & Development Policy)

Mohanty, MP, Mudgil, S, and Karmakar, S (2020). Flood management in India: a focussed review on the current status and future challenges. International Journal of Disaster Risk Reduction 49, 101660.
Flood management in India: a focussed review on the current status and future challenges.Crossref | GoogleScholarGoogle Scholar |

Morcom, A (2015). Landscape, urbanization, and capitalist modernity: exploring the ‘great transformation’ of Tibet through its songs. Yearbook for Traditional Music 47, 161–189.
Landscape, urbanization, and capitalist modernity: exploring the ‘great transformation’ of Tibet through its songs.Crossref | GoogleScholarGoogle Scholar |

Mujica A, Piaggio C, Díaz LR, Bussi J, Courret AP, Saito CH (2021) The global water partnership-South America and the transboundary implementation of integrated water resources management (SDG Target 6.5). In ‘Sustainable development goals for society Vol. 1. Selected Topics of Global Relevance’. (Eds G Nhamo, M Tog, K Dube) (pp. 171–186). (Springer International Publishing) https://doi.org/10.1007/978-3-030-70948-8_12

Mukul SA, Biswas SR, Rashid AM (2018) Biodiversity in Bangladesh. In ‘Global biodiversity’. (Ed. T Pullaiah) pp. 93–103. (Apple Academic Press: New York, NY, USA)

Mănoiu, V-M, and Crăciun, A-I (2021). Danube river water quality trends: a qualitative review based on the open access web of science database. Ecohydrology & Hydrobiology 21, 613–628.
Danube river water quality trends: a qualitative review based on the open access web of science database.Crossref | GoogleScholarGoogle Scholar |

Nagabhatla, N, and Jain, P (2013). Assessing the potential role of inland water navigation for green economy. Journal of Environmental Professionals Sri Lanka 2, 25–37.
Assessing the potential role of inland water navigation for green economy.Crossref | GoogleScholarGoogle Scholar |

National Development and Reform Commission (2021) Fourth five-year plan of social and economic development of People’s Republic of China. Available at https://www.adb.org/publications/14th-five-year-plan-high-quality-development-prc

National Energy Administration (2016) ‘Thirteenth five – year plan’ on hydroelectricity development. (National Energy Administration) Available at http://www.nea.gov.cn/135867663_14804701976251n.pdf

Nayak P, Panda B (2016) Brahmaputra and the socio-economic life of people of Assam. In ‘The Mahabahu Brahmaputra’. (Ed. KK Dwivedi) pp. 77–85. (Flood and River Management Agency of Assam: Guwahati, Assam)

Nie, Y, Liu, W, Liu, Q, Hu, X, and Westoby, MJ (2020). Reconstructing the Chongbaxia Tsho glacial lake outburst flood in the eastern Himalaya: evolution, process and impacts. Geomorphology 370, 107393.
Reconstructing the Chongbaxia Tsho glacial lake outburst flood in the eastern Himalaya: evolution, process and impacts.Crossref | GoogleScholarGoogle Scholar |

Nima B, Peacock JL, Thornton PM, Inman PB (2007) Tibetan identity in today’s China. In ‘Identity matters: ethnic and sectarian conflict. Vol. 37’. (Eds JL Peacock, PM Thornton, PB Inman) pp. 120–129. (Bergbahn Books: Oxford, UK)

Onencan, AM, and Van de Walle, B (2018). Equitable and reasonable utilization: reconstructing the Nile basin water allocation dialogue. Water 10, 707.
Equitable and reasonable utilization: reconstructing the Nile basin water allocation dialogue.Crossref | GoogleScholarGoogle Scholar |

Page, MJ, McKenzie, JE, Bossuyt, PM, Boutron, I, Hoffmann, TC, Mulrow, CD, Shamseer, L, Tetzlaff, JM, Akl, EA, Brennan, SE, Chou, R, Glanville, J, Grimshaw, JM, Hróbjartsson, A, Lalu, MM, Li, T, Loder, EW, Mayo-Wilson, E, McDonald, S, McGuinness, LA, Stewart, LA, Thomas, J, Tricco, AC, Welch, VA, Whiting, P, and Moher, D (2021). The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. BMJ 372, n71.
The PRISMA 2020 statement: an updated guideline for reporting systematic reviews.Crossref | GoogleScholarGoogle Scholar |

Pandey, A, Prakash, A, Barua, A, Abu Syed, M, and Nepal, S (2020). Upstream–downstream linkages in Ganges–Brahmaputra-Meghna basin: the hydro-social imperatives. Water Policy 22, 1082–1097.
Upstream–downstream linkages in Ganges–Brahmaputra-Meghna basin: the hydro-social imperatives.Crossref | GoogleScholarGoogle Scholar |

Penny, G, Müller-Itten, M, De Los Cobos, G, Mullen, C, and Müller, MF (2021). Trust and incentives for transboundary groundwater cooperation. Advances in Water Resources 155, 104 019.
Trust and incentives for transboundary groundwater cooperation.Crossref | GoogleScholarGoogle Scholar |

People’s Government of the Xizang Autonomous Region (2014) ‘Biodiversity conservation strategy and action plan of the Xizang autonomous region.’ (People’s Government of the Xizang Autonomous Region)

People’s Government of the Xizang Autonomous Region (2016) ‘Thirteenth five-year plan of social and economical development.’ (People’s Government of the Xizang Autonomous Region)

People’s Government of the Xizang Autonomous Region (2021) Fourteenth five-year plan of social and economical development. Available at https://www.ndrc.gov.cn/fggz/fzzlgh/dffzgh/202106/t20210617_1283438.html

Pittock, J (2019a). Pumped-storage hydropower: trading off environmental values? Australian Environment Review 33, 195–200.

Pittock J (2019b) Trade-offs between hydropower development and food security in river management. In ‘Population, development, and the environment’. (Ed. H James) pp. 53–68. (Springer)

Pradhan, NS, Das, PJ, Gupta, N, and Shrestha, AB (2021). Sustainable management options for healthy rivers in south Asia: the case of Brahmaputra. Sustainability 13, 1087.
Sustainable management options for healthy rivers in south Asia: the case of Brahmaputra.Crossref | GoogleScholarGoogle Scholar |

Qadir, LCH (2008). Water – a source of conflict in South Asia. NDU Journal 2, 141–192.

Qamar, MU, Azmat, M, and Claps, P (2019). Pitfalls in transboundary Indus Water Treaty: a perspective to prevent unattended threats to the global security. npj Clean Water 2, 22.
Pitfalls in transboundary Indus Water Treaty: a perspective to prevent unattended threats to the global security.Crossref | GoogleScholarGoogle Scholar |

Rahaman, MM, and Hossain, MS (2020). Hydropower development along the major rivers basins in South Asia: benefits for Bangladesh. Sustainable Water Resources Management 6, 116.
Hydropower development along the major rivers basins in South Asia: benefits for Bangladesh.Crossref | GoogleScholarGoogle Scholar |

Rahaman, MM, and Varis, O (2009). Integrated water management of the Brahmaputra basin: perspectives and hope for regional development. Natural Resources Forum 33, 60–75.
Integrated water management of the Brahmaputra basin: perspectives and hope for regional development.Crossref | GoogleScholarGoogle Scholar |

Rahman, MZ (2014). Territory, tribes, turbines: local community perceptions and responses to infrastructure development along the Sino-Indian Border in Arunachal Pradesh. ICS Occasional Paper 7, 1–35.

Rampini C (2016) Impacts of hydropower development along the Brahmaputra River in Northeast India on the resilience of downstream communities to climate change impacts. PhD thesis, University of California, Santa Cruz, Santa Cruz, CA, USA.

Rampini, C (2022). Climate and energy justice along the Brahmaputra river in northeast India. Environment and Planning E: Nature and Space 5, 1919–1946.
Climate and energy justice along the Brahmaputra river in northeast India.Crossref | GoogleScholarGoogle Scholar |

Rampini C (2021) Hydropower and Sino-Indian hydropolitics along the Yarlung–Tsangpo–Brahmaputra. In ‘The political economy of hydropower in Southwest China and beyond’. (Eds J-F Rousseau, S Habich-Sobiegalla) pp. 235–254. (Springer International Publishing) https://doi.org/10.1007/978-3-030-59361-2_12

Ranjan A (2018) ‘India–Bhutan hydropower projects: cooperation and concerns.’ (Institute of South Asian Studies: Singapore)

Ranjan, A (2019). India–Bhutan relationships: cordial but concerns remain. Artha – Journal of Social Sciences 18, 87–101.
India–Bhutan relationships: cordial but concerns remain.Crossref | GoogleScholarGoogle Scholar |

Ranjan, A (2021). The Indus and Mekong River basins: cooperation and disputes. Asian Journal of Comparative Politics 7, 172–185.
The Indus and Mekong River basins: cooperation and disputes.Crossref | GoogleScholarGoogle Scholar |

Rasul, G (2014). Why Eastern Himalayan countries should cooperate in transboundary water resource management. Water Policy 16, 19–38.
Why Eastern Himalayan countries should cooperate in transboundary water resource management.Crossref | GoogleScholarGoogle Scholar |

Rasul, G (2015). Water for growth and development in the Ganges, Brahmaputra, and Meghna basins: an economic perspective. International Journal of River Basin Management 13, 387–400.
Water for growth and development in the Ganges, Brahmaputra, and Meghna basins: an economic perspective.Crossref | GoogleScholarGoogle Scholar |

Rasul, G, Neupane, N, Hussain, A, and Pasakhala, B (2021). Beyond hydropower: towards an integrated solution for water, energy and food security in South Asia. International Journal of Water Resources Development 37, 466–490.
Beyond hydropower: towards an integrated solution for water, energy and food security in South Asia.Crossref | GoogleScholarGoogle Scholar |

Ray, PA, Yang, Y-CE, Wi, S, Khalil, A, Chatikavanij, V, and Brown, C (2015). Room for improvement: hydroclimatic challenges to poverty-reducing development of the Brahmaputra River basin. Environmental Science & Policy 54, 64–80.
Room for improvement: hydroclimatic challenges to poverty-reducing development of the Brahmaputra River basin.Crossref | GoogleScholarGoogle Scholar |

Renardy, S, Takriet, A, Benitez, J-P, Dierckx, A, Baeyens, R, Coeck, J, Pauwels, IS, Mouton, A, Archambeau, P, Dewals, B, Pirotton, M, Erpicum, S, and Ovidio, M (2021). Trying to choose the less bad route: individual migratory behaviour of Atlantic salmon smolts (Salmo salar L.) approaching a bifurcation between a hydropower station and a navigation canal. Ecological Engineering 169, 106304.
Trying to choose the less bad route: individual migratory behaviour of Atlantic salmon smolts (Salmo salar L.) approaching a bifurcation between a hydropower station and a navigation canal.Crossref | GoogleScholarGoogle Scholar |

Riaz A, Fair CC (2011) ‘Political Islam and governance in Bangladesh.’ (Routledge: London, UK)

Ringler, C, von Braun, J, and Rosegrant, MW (2004). Water policy analysis for the Mekong River Basin. Water International 29, 30–42.
Water policy analysis for the Mekong River Basin.Crossref | GoogleScholarGoogle Scholar |

Roy, SC, and Roy, M (2015). Tourism in Bangladesh: present status and future prospects. International Journal of Management Science and Business Administration 1, 53–61.
Tourism in Bangladesh: present status and future prospects.Crossref | GoogleScholarGoogle Scholar |

Roy, S, and Sims, K (2021). Climate change mitigation and adaptation in Bangladesh: the need for community-based approaches. Asia Pacific Viewpoint 62, 143–150.
Climate change mitigation and adaptation in Bangladesh: the need for community-based approaches.Crossref | GoogleScholarGoogle Scholar |

Sabatier PA, Weible CM (2007) The advocacy coalition framework. In ‘Theories of the policy process. Vol. 7’. (Ed. PA Sabatier) pp. 189–220. (Westview Press: Boulder, CO, USA)

Sadoff, CW, and Grey, D (2002). Beyond the river: the benefits of cooperation on international rivers. Water Policy 4, 389–403.
Beyond the river: the benefits of cooperation on international rivers.Crossref | GoogleScholarGoogle Scholar |

Sahu, AK, and Mohan, S (2022). From securitization to security complex: climate change, water security and the India–China relations. International Politics 59, 320–345.
From securitization to security complex: climate change, water security and the India–China relations.Crossref | GoogleScholarGoogle Scholar |

Saklani, U, and Tortajada, C (2019). India’s development cooperation in Bhutan’s hydropower sector: concerns and public perceptions. Water Alternatives 12, 734–759.

Saklani, U, Shrestha, PP, Mukherji, A, and Scott, CA (2020). Hydro-energy cooperation in South Asia: prospects for transboundary energy and water security. Environmental Science & Policy 114, 22–34.
Hydro-energy cooperation in South Asia: prospects for transboundary energy and water security.Crossref | GoogleScholarGoogle Scholar |

Samaranayake N, Limaye S, Wuthnow J (2016) Water resource competition in the Brahmaputra River Basin: China, India, and Bangladesh. Available at https://www.cna.org/cna_files/pdf/cna-brahmaputra-study-2016.pdf

Sharma, S, and Kuniyal, JC (2016). Hydropower development and policies in India: a case of Himachal Pradesh in the northwestern Himalaya, India. Energy Sources, Part B: Economics, Planning, and Policy 11, 377–384.
Hydropower development and policies in India: a case of Himachal Pradesh in the northwestern Himalaya, India.Crossref | GoogleScholarGoogle Scholar |

Sharma UC, Sharma V (2015) Water quality and sediment management in Brahmaputra Basin of India: impact of agricultural land use. In ‘Sediment matters’. (Eds P Heininger, J Cullmann) pp. 111–127. (Springer International Publishing) https://doi.org/10.1007/978-3-319-14696-6_8

Shen, M, Wang, S, Li, Y, Tang, M, and Ma, Y (2021). Pattern of turbidity change in the middle reaches of the Yarlung Zangbo River, Southern Tibetan Plateau, from 2007 to 2017. Remote Sensing 13, 182.
Pattern of turbidity change in the middle reaches of the Yarlung Zangbo River, Southern Tibetan Plateau, from 2007 to 2017.Crossref | GoogleScholarGoogle Scholar |

Siderius, C, van Walsum, P, and Biemans, H (2022). Strong trade-offs characterise water–energy–food related sustainable development goals in the Ganges–Brahmaputra–Meghna River basin. Environmental Research Letters 17, 105005.
Strong trade-offs characterise water–energy–food related sustainable development goals in the Ganges–Brahmaputra–Meghna River basin.Crossref | GoogleScholarGoogle Scholar |

Silva, S, Lowry, M, Macaya-Solis, C, Byatt, B, and Lucas, MC (2017). Can navigation locks be used to help migratory fishes with poor swimming performance pass tidal barrages? A test with lampreys. Ecological Engineering 102, 291–302.
Can navigation locks be used to help migratory fishes with poor swimming performance pass tidal barrages? A test with lampreys.Crossref | GoogleScholarGoogle Scholar |

Singh V, Sharma N, Ojha CSP (2004) ‘The Brahmaputra basin water resources. Vol. 47.’ (Springer Science & Business Media)

Sinha, UK (2012). Examining China’s hydro-behaviour: peaceful or assertive? Strategic Analysis 36, 41–56.
Examining China’s hydro-behaviour: peaceful or assertive?Crossref | GoogleScholarGoogle Scholar |

Stankevich N, Nora E, Bandyopadhyay A (2021) Eastern waterways grid to benefit Bangladesh, Bhutan, India and Nepal. Available at https://blogs.worldbank.org/endpovertyinsouthasia/eastern-waterways-grid-benefit-bangladesh-bhutan-india-and-nepal

Tang, M, and Xu, H (2023). Cultural integration and rural tourism development: a scoping literature review. Tourism and Hospitality 4, 75–90.
Cultural integration and rural tourism development: a scoping literature review.Crossref | GoogleScholarGoogle Scholar |

Tariq, MAUR, Wangchuk, K, and Muttil, N (2021). A critical review of water resources and their management in Bhutan. Hydrology 8, 31.
A critical review of water resources and their management in Bhutan.Crossref | GoogleScholarGoogle Scholar |

Tobden, J (2022). Political economy of resource economics: unlocking the policy debate on accelerated hydropower future in Bhutan. Bhutan Journal of Natural Resources and Development 9, 31–43.
Political economy of resource economics: unlocking the policy debate on accelerated hydropower future in Bhutan.Crossref | GoogleScholarGoogle Scholar |

Ullah, MN, and Rahman, MS (2021). Good governance in Bangladesh: a study of world governance indicators. Indonesian Journal of Social Research (IJSR) 3, 201–216.
Good governance in Bangladesh: a study of world governance indicators.Crossref | GoogleScholarGoogle Scholar |

UN Water (2018) 2018 UN world water development report, nature-based solutions for water. (United Nations Educational, Scientific and Cultural Organization: Paris, France). Available at https://www.unwater.org/publications/world-water-development-report-2018

United Nations (2017) Protocol on strategic environmental assessment to the convention on environmental impact assessment in a transboundary context. UN. Available at https://treaties.un.org/pages/ViewDetails.aspx?src=IND&mtdsg_no=XXVII-4-b&chapter=27&clang=_en

VanNijnatten, DL (2020). The potential for adaptive water governance on the US–Mexico border: application of the OECD’s water governance indicators to the Rio Grande/Bravo basin. Water Policy 22, 1047–1066.
The potential for adaptive water governance on the US–Mexico border: application of the OECD’s water governance indicators to the Rio Grande/Bravo basin.Crossref | GoogleScholarGoogle Scholar |

Vasani, H (2023). Practicing security: securitisation of transboundary rivers by hydrocrats in Himalayan South Asia. GeoJournal , .
Practicing security: securitisation of transboundary rivers by hydrocrats in Himalayan South Asia.Crossref | GoogleScholarGoogle Scholar |

Vass, K, Das, M, Tyagi, R, Katiha, P, Samanta, S, Srivastava, N, Bhattacharjya, B, Suresh, V, Pathak, V, Chandra, G, Debnath, D, and Gopal, B (2011). Strategies for sustainable fisheries in the Indian part of the Ganga–Brahmaputra river basins. International Journal of Ecology and Environmental Sciences 37, 157–218.

Vergeynst, J, Pauwels, I, Baeyens, R, Mouton, A, De Mulder, T, and Nopens, I (2021). Shipping canals on the downstream migration route of European eel (Anguilla anguilla): opportunity or bottleneck? Ecology of Freshwater Fish 30, 73–87.
Shipping canals on the downstream migration route of European eel (Anguilla anguilla): opportunity or bottleneck?Crossref | GoogleScholarGoogle Scholar |

Weible CM, Ingold K (2021) Why advocacy coalitions matter and practical insights about them. In ‘Practical lessons from policy theories’. 1st edn. (Eds CM Weible, P Cairney) pp. 173–196. (Bristol University Press: UK) https://doi.org/10.2307/j.ctv1k03sh7.13

Weible CM, Heikkila T, Ingold K, Fischer M (2016) ‘Policy debates on hydraulic fracturing: comparing coalition politics in North America and Western Europe.’ (Springer)

Weible, CM, Ingold, K, Nohrstedt, D, Henry, AD, and Jenkins-Smith, HC (2020). Sharpening advocacy coalitions. Policy Studies Journal 48, 1054–1081.
Sharpening advocacy coalitions.Crossref | GoogleScholarGoogle Scholar |

Whittington D, Haynes KE (1985) Nile water for whom? Emerging conflicts in water allocation for agricultural expansion in Egypt and Sudan. In ‘Agricultural development in the Middle East’. (Eds P Beaumont, K McLachlan) pp. 125–149. (Wiley)

Wilder, MO, Varady, RG, Gerlak, AK, Mumme, SP, Flessa, KW, Zuniga-Teran, AA, Scott, CA, Pablos, NP, and Megdal, SB (2020). Hydrodiplomacy and adaptive governance at the US–Mexico border: 75 years of tradition and innovation in transboundary water management. Environmental Science & Policy 112, 189–202.
Hydrodiplomacy and adaptive governance at the US–Mexico border: 75 years of tradition and innovation in transboundary water management.Crossref | GoogleScholarGoogle Scholar |

Wilmsen, B, and Webber, M (2015). What can we learn from the practice of development-forced displacement and resettlement for organised resettlements in response to climate change? Geoforum 58, 76–85.
What can we learn from the practice of development-forced displacement and resettlement for organised resettlements in response to climate change?Crossref | GoogleScholarGoogle Scholar |

Wolf, AT (1999). Criteria for equitable allocations: the heart of international water conflict. Natural Resources Forum 23, 3–30.
Criteria for equitable allocations: the heart of international water conflict.Crossref | GoogleScholarGoogle Scholar |

Xie, L, and Warner, J (2021). The politics of securitization: China’s competing security agendas and their impacts on securitizing shared rivers. Eurasian Geography and Economics 63, 332–361.
The politics of securitization: China’s competing security agendas and their impacts on securitizing shared rivers.Crossref | GoogleScholarGoogle Scholar |

Xie, L, Zhang, Y, and Panda, JP (2018). Mismatched diplomacy: China–India water relations over the Ganges–Brahmaputra–Meghna River Basin. Journal of Contemporary China 27, 32–46.
Mismatched diplomacy: China–India water relations over the Ganges–Brahmaputra–Meghna River Basin.Crossref | GoogleScholarGoogle Scholar |

Xu X (2014) ‘Brahmaputra river water resource development.’ (Hubei Science and Technology Publishing)

Xu H (2022) China is gunning for supremacy in the global green hydrogen race. Will it shatter Australia’s dreams? Available at https://theconversation.com/china-is-gunning-for-supremacy-in-the-global-green-hydrogen-race-will-it-shatter-australias-dreams-179953#:~:text=It’s%20committed%20to%20becoming%20carbon,becoming%20a%20global%20hydrogen%20superpower

Xu, H, and Pittock, J (2019). Limiting the effects of hydropower dams on freshwater biodiversity: options on the Lancang River, China. Marine and Freshwater Research 70, 169–194.
Limiting the effects of hydropower dams on freshwater biodiversity: options on the Lancang River, China.Crossref | GoogleScholarGoogle Scholar |

Xu H, Pittock J (2020) Saving fish by removing dams on small rivers – the case of the Upper Yangtze River Basin. G. W. Forum. Available at https://globalwaterforum.org/2020/08/21/saving-fish-by-removing-dams-on-small-rivers-the-case-of-the-upper-yangtze-river-basin/

Xu, H, and Pittock, J (2021). Policy changes in dam construction and biodiversity conservation in the Yangtze River Basin, China. Marine and Freshwater Research 72, 228–243.
Policy changes in dam construction and biodiversity conservation in the Yangtze River Basin, China.Crossref | GoogleScholarGoogle Scholar |

Xu, D, Chen, C, and Liang, W (2002). Hydropower development on the Yalu Tsangpo River. Engineering Science 4, 47–52.

Xu, H, Pittock, J, and Daniell, KA (2021a). China: a new trajectory prioritizing rural rather than urban development? Land 10, 514.
China: a new trajectory prioritizing rural rather than urban development?Crossref | GoogleScholarGoogle Scholar |

Xu, H, Tang, A, and Pittock, J (2021b). The dark side of ambition: side-effects of China’s climate policy. Environmental Research Letters 16, 111001.

Yan, D, Wang, M, Wang, H, and Shi, G (2018). Policy and implementation of land-based resettlement in China (1949–2014). International Journal of Water Resources Development 34, 453–471.
Policy and implementation of land-based resettlement in China (1949–2014).Crossref | GoogleScholarGoogle Scholar |

Yasuda Y, Aich D, Hill D, Huntjens P, Swain A (2017) ‘Transboundary water cooperation over the Brahmaputra River: legal political economy analysis of current and future potential cooperation.’ (The Hague Institute for Global Justice: The Hague, Netherlands)

Yuan, L, He, W, Liao, Z, Degefu, DM, An, M, Zhang, Z, and Wu, X (2019). Allocating water in the Mekong River Basin during the dry season. Water 11, 400.
Allocating water in the Mekong River Basin during the dry season.Crossref | GoogleScholarGoogle Scholar |

Zhao, Z, Li, S, Xue, L, Liao, J, Zhao, J, Wu, M, Wang, M, Sun, J, Zheng, Y, and Yang, Q (2020). Effects of dam construction on arsenic mobility and transport in two large rivers in Tibet, China. Science of The Total Environment 741, 140406.
Effects of dam construction on arsenic mobility and transport in two large rivers in Tibet, China.Crossref | GoogleScholarGoogle Scholar |