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Baran, E. (2010). Mekong fisheries and mainstream dams. In Fisheries sections in ICEM 2010 Mekong River Commission Strategic Environmental Assessment of hydropower on the Mekong mainstream (pp. 1–145). International Centre for Environmental ManagementSearch in Google Scholar
Baker, C. (2012). Dams, power and security in the Mekong: A non-traditional security assessment of hydro-development in the Mekong River Basin. NTS-Asia Research Paper, No. 8Search in Google Scholar
Bogaart, P. (2023). The potential for sustainable hydropower. Nature Water, 1(1), 22-23. https://doi.org/10.1038/s44221-022-00018-9Search in Google Scholar
Cochrane, T. A., Arias, M. E., & Piman, T. (2014). Historical impact of water infrastructure on water levels of the Mekong River and the Tonle Sap system. Hydrology and Earth System Sciences, 18(11), 4529–4541. https://doi.org/10.5194/hess-18-4529-2014Search in Google Scholar
Costa-Cabral, M. C. et al. (2008). Landscape structure and use, climate, and water movement in the Mekong River Basin. Hydrological Processes, 22(12), 1731-1746. https://doi.org/10.1002/hyp.6740Search in Google Scholar
Gosens, J., Kåberger, T., & Wang, Y. (2017). China’s next renewable energy revolution: Goals and mechanisms in the 13th Five-Year Plan for energy. Energy Science & Engineering, 5(3), 141–155. https://doi.org/10.1002/ese3.161Search in Google Scholar
Grumbine, E. R., & Xu, J. (2011). Mekong hydropower development. Science, 332(6026), 178–179. https://doi.org/10.1126/science.1200990Search in Google Scholar
Grunwald, R., Wang, W., & Feng, Y. (2020). Modified transboundary water interaction nexus (TWINS): Xayaburi dam case study. Water, 12(710). https://doi.org/10.3390/w12030710Search in Google Scholar
He, D., Wu, R., Feng, Y., Ding, C., Wang, W., & Yu, D. W. (2014). China’s transboundary waters: New paradigms for water and ecological security through applied ecology. Journal of Applied Ecology, 51(5), 1159-1168. https://doi.org/10.1111/1365-2664.12291Search in Google Scholar
Huang, M., & Fu, Z. (2001). Development and policy support of small hydropower in China. China Water Resource, 10, 10–15Search in Google Scholar
Jacobs, J. W. (1995). Mekong Committee history and lessons for river basin development. The Geographical Journal, 161(2), 135–148. https://doi.org/10.2307/3059971Search in Google Scholar
Jacobs, J. W. (2002). The Mekong River Commission: Transboundary water resources planning and regional security. The Geographical Journal, 168(4), 345–364. https://doi.org/10.1111/j.0016-7398.2002.00061.xSearch in Google Scholar
Fu, K. et al. (2012). Pollution assessment of heavy metals along the Mekong River and dam effects. Journal of Geographical Sciences, 22, 874–884. https://doi.org/10.1007/s11442-012-0969-3Search in Google Scholar
Li, X., Chen, Z., Fan, X., & Cheng, Z. (2018). Hydropower development situation and prospects in China. Renewable and Sustainable Energy Reviews, 82, 232-239. https://doi.org/10.1016/j.rser.2017.08.090Search in Google Scholar
Matthews, N., & Motta, S. (2013). China’s influence on hydropower development in the Lancang River and Lower Mekong River Basin: State of knowledge. CGIAR Water, Land and EcosystemsSearch in Google Scholar
Moodley, P., & Trois, C. (2021). Lignocellulosic biorefineries: The path forward. In Sustainable Biofuels Opportunities and Challenges. Applied Biotechnology Reviews, 21-42Search in Google Scholar
Nam, S., Souvanny, V., Ly, V., Theerawat, S., Son, M., Malasri, P., Peng, B., Sovanara, K., Degen, P., & Starr, P. (2015). Lower Mekong fisheries estimated to be worth around $17 billion a year. Catch and Culture, 21(3), 4–7Search in Google Scholar
Piper, B. S., Gustard, A., Green, C. S., & Sridurongkatum, P. (1991). Water resource developments and flow regimes on the Mekong River. Hydrology for the Water Management of Large River Basins, 201Search in Google Scholar
Richard, G., Wenling, W., & Yan, F. (2022). Politicization of the hydropower dams in the Lancang-Mekong Basin: A review of contemporary environmental challenges. Energies, 15(5), Article 1682. https://doi.org/10.3390/en15051682Search in Google Scholar
Rutherfurd, I. D., & Peel, M. C. (2009). The hydrology of the Mekong River. In I. C. Campbell (Ed.), The Mekong: Biophysical environment of an international river basin (pp. 53–76). Academic PressSearch in Google Scholar
Sithirith, M. (2016). Dams and state security: Damming the 3S rivers as a threat to Cambodian state security. Asia Pacific Viewpoint, 57(1), 64. https://doi.org/10.1111/apv.12108Search in Google Scholar
Stone, R. (2016). Dam-building threatens Mekong fisheries. Science, 354(6316), 1084–1085Search in Google Scholar
Теймуров, Э. С. (2017). Проблемы регулирования рационального использования и охраны пресной воды в двусторонних договорах Российской Федерации [Problems of regulation of rational use and protection of freshwater in bilateral treaties of the Russian Federation]. Альманах Кафедры Международного Права Ceteris Paribus, Prospect Publishing HouseSearch in Google Scholar
Telle, A. (2023). The challenge of national implementation of international water law: The case of Mekong hydropower development in Lao People’s Democratic Republic. Journal of Water Law, 28(1), 54–64Search in Google Scholar
Ziv, G. et al. (2012). Trading-off fish biodiversity, food security, and hydropower in the Mekong River Basin. Proceedings of the National Academy of Sciences of the United States of America, 109(15), 5609–5614. https://doi.org/10.1073/pnas.120142310Search in Google Scholar
Wagner, F., Tran, V. B., & Renaud, F. G. (2012). Groundwater resources in the Mekong Delta: Availability, utilization, and risks. In Renaud, F. G., & Kuenzer, C. (Eds.), The Mekong Delta system (pp. 201–463). SpringerSearch in Google Scholar
Tran, T. A., & Tortajada, C. (2023). Responding to transboundary water challenges in the Vietnamese Mekong Delta: In search of institutional fit. Environmental Policy and Governance, 32(4), 345Search in Google Scholar