Water, energy and food nexus of Indus Water Treaty: Water governance
Tài liệu tham khảo
Abas, 2015, Review of fossil fuels and future energy technologies, Futures, 69, 31, 10.1016/j.futures.2015.03.003
Abas, 2017, Review of GHG emissions in Pakistan compared to SAARC countries, Renew. Sustain. Energy Rev., 80, 990, 10.1016/j.rser.2017.04.022
Abas, 2018, Natural and synthetic refrigerants, global warming: a review, Renew. Sustain. Energy Rev., 90, 10.1016/j.rser.2018.03.099
Abas, 2017, A thermosyphon solar water heating system for sub zero temperature areas, Cold Reg. Sci. Technol., 143, 81, 10.1016/j.coldregions.2017.08.012
Abas, 2018, CO 2 utilization drivers, opportunities and conversion challenges
Abas, 2018, Protecting children in Pakistani cyberspace: technology-religion education safety approach, Proceedings, 2, 1366, 10.3390/proceedings2211366
Abas, 2019, Cooperative control of regional transboundary air pollutants, Environ. Syst. Res., 8, 10, 10.1186/s40068-019-0138-0
Abbott, 2017, Examining the food–energy–water and conflict nexus, Curr. Opin. Chem. Eng., 18, 55, 10.1016/j.coche.2017.10.002
Ahmad
Ahmed
Akhter, 2015, The hydropolitical Cold War: the Indus Waters Treaty and state formation in Pakistan, Polit. Geogr., 46, 65, 10.1016/j.polgeo.2014.12.002
Al-Saidi, 2018, Institutional arrangements for beneficial regional cooperation on water, energy and food priority issues in the Eastern Nile Basin, J. Hydrol., 562, 821, 10.1016/j.jhydrol.2018.05.009
Allen, 2012, Fossil fuels and water quality, 73
Amorim, 2018, The nexus between water, energy, and food in the context of the global risks: an analysis of the interactions between food, water, and energy security, Environ. Impact Assess. Rev., 72, 1, 10.1016/j.eiar.2018.05.002
Anel, 2017, Impact of cold waves and heat waves on the energy production sector, Atmosphere, 8, 209, 10.3390/atmos8110209
Barquet, 2014, Transboundary conservation and militarized interstate disputes, Polit. Geogr., 42, 1, 10.1016/j.polgeo.2014.05.003
Bidoglio, 2018, The Water-Energy-Food-Ecosystems (WEFE) Nexus
Bieber, 2018, Sustainable planning of the energy-water-food nexus using decision making tools, Energy Policy, 113, 584, 10.1016/j.enpol.2017.11.037
Bingham, G., Wolf, A., Wohlegenant., T., 1994. Resolving water disputes: Conflict and cooperation in the United States, the Near East, and Asia. Washington, D.C.
Cai, 2018, Understanding and managing the food-energy-water nexus – opportunities for water resources research, Adv. Water Resour., 111, 259, 10.1016/j.advwatres.2017.11.014
Dinar, 2015, Climate change, conflict, and cooperation: global analysis of the effectiveness of international river treaties in addressing water variability, Polit. Geogr., 45, 55, 10.1016/j.polgeo.2014.08.003
Dowling, 2013, The impact of climate change on the European energy system, Energy Policy, 60, 406, 10.1016/j.enpol.2013.05.093
Editor, Weird ‘wind drought’ means Britain’s turbines are at a standstill. (2018). Retrieved from https://www.newscientist.com/article/mg23931873-500.
Emma, M., 2014. A monsoon hiatus that began 4,200 years ago parallels a dry spell that led to the collapse of Bronze-Age civilizations in Egypt, Greece and Mesopotamia. Retrieved from https://www.reddit.com/r/history/comments/1zhdux/200year_drought_doomed_indus_valley_civilization/.
Fischhendler, 2013, The impact of uncertainties on cooperation over transboundary water: the case of Israeli-Palestinian negotiations, Geoforum, 50, 200, 10.1016/j.geoforum.2013.09.005
Ganter, 2017. The Water Conflict Chronology: Water Conflicts over the Centuries and Millennia. Retrieved from https://www.circleofblue.org/2017/world/water-conflict-chronology-water-conflicts-centuries-millennia-podcast/.
Gleick, 2012, Water and conflict, events, trends, and analysis, Water Brief
Gregg, R., 2018. Berkeley declares “climate emergency” worse than World War II, demands “humane” population control. Retrieved from https://www.foxnews.com/politics/berkeley-declares-climate-emergency-worse-than-world-war-ii-demands-humane-population-control.
Grigg, 2018, The water–food–energy nexus in Pakistan: a biophysical and socio-economic challenge, Proc. Int. Assoc. Hydrol. Sci., 376, 9
Hanes, 2018, Including nature in the food-energy-water nexus can improve sustainability across multiple ecosystem services, Resour. Conserv. Recycl., 137, 214, 10.1016/j.resconrec.2018.06.003
Hatami, 1994
Hejazi, 2014, Integrated assessment of global water scarcity over the 21st century under multiple climate change mitigation policies, Hydrol. Earth Syst. Sci., 18, 2859, 10.5194/hess-18-2859-2014
Helmstedt, 2018, Innovating at the food, water, and energy interface, J. Environ. Manage., 209, 17, 10.1016/j.jenvman.2017.12.026
Hilden, 2018, The importance of transnational impacts of climate change in a power market, Energy Policy, 115, 418, 10.1016/j.enpol.2018.01.039
Humanity has only 100 years left to leave Earth or perish, Stephen Hawking believed, 2017. Retrieved from https://www.theinquirer.net/inquirer/news/3029179/stephen-hawking-humanity-has-only-100-years-left-to-leave-earth.
Hydropower Status Report shows record rise in clean electricity, 2018. Retrieved from https://www.hydropower.org/news/2018-hydropower-status-report-shows-record-rise-in-clean-electricity.
Indus Water System Authority, 1992. Retrieved from http://www.pakirsa.gov.pk/Home.aspx.
Indus Water Treaty, 1960. Retrieved from http://www.worldbank.org/en/region/sar/brief/fact-sheet-the-indus-waters-treaty-1960-and-the-world-bank.
Irfan, 2018, Thermal performance analysis of net zero energy home for sub zero temperature areas, Case Stud. Therm. Eng., 12, 789, 10.1016/j.csite.2018.10.008
Jaramillo, 2018, Assessing urban water security under changing climate: challenges and ways forward, Sustainable Cities Soc., 41, 907, 10.1016/j.scs.2017.04.005
Kaddoura, 2017, Review of water-energy-food Nexus tools to improve the Nexus modelling approach for integrated policy making, Environ. Sci. Policy, 77, 114, 10.1016/j.envsci.2017.07.007
Kamran, 2017, Institutions for governance of transboundary water commons, 207
Karan, 2018, Towards the optimization of sustainable food-energy-water systems: a stochastic approach, J. Cleaner Prod., 171, 662, 10.1016/j.jclepro.2017.10.051
Karatayev, 2017, The water-energy-food nexus in Kazakhstan: challenges and opportunities, Energy Procedia, 125, 63, 10.1016/j.egypro.2017.08.064
Keskinen, 2016, The Water-Energy-Food Nexus and the transboundary context: insights from large Asian Rivers, Water, 8, 193, 10.3390/w8050193
Khan
Khan
Khan, 2019, Review of energy storage and transportation of energy, Energy Storage, 10.1002/est2.49
Khan, 2017, Review of ocean tidal, wave and thermal energy technologies, Renew. Sustain. Energy Rev., 10.1016/j.rser.2017.01.079
Khan, 2018, Energy transition from molecules to atoms and photons, Eng. Sci. Technol.
Kundzewicz, 2018, Uncertainty in climate change impacts on water resources, Environ. Sci. Policy, 79, 1, 10.1016/j.envsci.2017.10.008
Li, 2012, Impact of climate change on energy use in the built environment in different climate zones – a review, Energy, 42, 103, 10.1016/j.energy.2012.03.044
List of deaths in wars, genocides and natural hazards. (n.d.). Retrieved from https://en.wikipedia.org/wiki/List_of_wars_and_anthropogenic_disasters_by_death_toll.
Martinez-Hernandez, 2017, Understanding water-energy-food and ecosystem interactions using the nexus simulation tool NexSym, Applied Energy, 206, 1009, 10.1016/j.apenergy.2017.09.022
Mccaffrey, 1996, The Harmon Doctrine one hundred years later: buried, not praised, Nat. Resour. J., 36, 549
Miralles-Wilhelm, F., 2017. Physical impacts of climate change on water resources.
Naff, T., Matson, R.C., 1984. Water in The Middle East: Conflict or Cooperation? 1st ed.
National Water Policy, 2018. Retrieved from http://www.ffc.gov.pk/download/AFR/National Water Policy -April 2018 FINAL.pdf
Nunzio, J.Di., 2013. Conflict on the Nile: The future of transboundary water disputes over the world’s longest river. Retrieved from http://www.futuredirections.org.au/publication/conflict-on-the-nile-the-future-of-transboundary-water-disputes-over-the-world-s-longest-river/.
Olivera, 2004
Pahl-Wostl, 2017, Governance of the water-energy-food security nexus: a multi-level coordination challenge, Environ. Sci. Policy
Rausching, 1983, Indus water dispute, 214
Rosenzweig, 1994, Potential impact of climate change on world food supply, Nature, 367, 133, 10.1038/367133a0
Sehgal, R., 2017. India’s water security concerns over China’s dam building spree are legitimate, require action. Retrieved from https://www.firstpost.com/india/indias-water-security-concerns-over-chinas-dam-building-spree-arelegitimate-require-action-3454406.html.
Saladini, 2018, Linking the water-energy-food nexus and sustainable development indicators for the Mediterranean region, Ecol. Ind., 91, 689, 10.1016/j.ecolind.2018.04.035
Shaheen, A. (2018). Water-Energy-Food Nexus. Retrieved from http://www.lead.org.pk/lead/Pages/attachment/presentations/Water-Energy-Food Nexus -16 Dr. Shaheen Akhtar.pdf.
Shannak, 2018, Moving from theory to practice in the water–energy–food nexus: an evaluation of existing models and frameworks, Water-Energy Nexus, 10.1016/j.wen.2018.04.001
Shivakoti, 2017, Redefining diversity & dynamics of natural resources management in Asia, Sustain. Nat. Resour. Manage. Dyn. Asia, 387
Smajgl, 2016, The water–food–energy Nexus – realising a new paradigm, J. Hydrol., 533, 533, 10.1016/j.jhydrol.2015.12.033
Susnik, 2018, Data-driven quantification of the global water-energy-food system, Resour. Conserv. Recycl., 133, 179, 10.1016/j.resconrec.2018.02.023
Swain, 2015, Water wars, 443
Taniguchi, 2015, Water, energy, and food security in the Asia Pacific region, J. Hydrol. Reg. Stud.
The World Bank in India, 2018. Retrieved from http://www.worldbank.org/en/country/india.
The World Bank in Pakistan, 2018. Retrieved from http://www.worldbank.org/en/country/pakistan.
Transboundary Waters, 2018. Retrieved from http://www.fao.org/land-water/water/water-management/transboundary-water-management/en/.
Wang, 2017, Prediction of the impacts of climate change on energy consumption for a medium-size office building with two climate models, Energy Build., 157, 218, 10.1016/j.enbuild.2017.01.007
Ward, D.R., 2003. Water Wars: Drought, Flood, Folly, and the Politics of Thirst.
Wellington, 2018, Water ethics, 227
Wescoat, 1991, Managing the Indus River basin in light of climate change, Global Environ. Change, 1, 381, 10.1016/0959-3780(91)90004-D
Wheeler, 2013, Climate change impacts on global food security, Science, 341, 508, 10.1126/science.1239402
Wolf, 2009, International water convention and treaties, Encycl. Inland Waters, 10.1016/B978-012370626-3.00251-9
Wolf, 2018, International waters: conflict, cooperation, and transformation, 291
Woodhouse, 2008, Hydro-hegemony and international water law: grappling with the gaps of power and law, Water Policy, 10, 103, 10.2166/wp.2008.209
Woodhouse, 2017, Water governance—An historical perspective on current debates, World Dev., 92, 225, 10.1016/j.worlddev.2016.11.014
Yang, 2014, Water governance and adaptation to climate change in the Indus River Basin, J. Hydrol., 519, 2527, 10.1016/j.jhydrol.2014.08.055
Yasmin, 2019, Teacher-directed learning to self-directed learning transition barriers in Pakistan, Stud. Educ. Eval., 61, 34, 10.1016/j.stueduc.2019.02.003
Yasmin, 2018, Adapting to engineering education vision 2020, Proceedings, 2, 1365, 10.3390/proceedings2211365
Yasmin, 2016, Exploring English language needs in the hotel industry in Pakistan: an evaluation of existing teaching material, J. Hosp. Tour. Educ., 28, 202, 10.1080/10963758.2016.1226846
Yasmin, 2018, Socio-cultural barriers in promoting learner autonomy in Pakistani universities: English teachers’ beliefs, Cogent Educ., 5, 10.1080/2331186X.2018.1501888
Yasmin, 2018, A creative alliance between learner autonomy and english language learning: Pakistani university teachers’ beliefs, Creat. Stud., 11, 1, 10.3846/23450479.2017.1406874
Yasmin, 2015, Myths broken or sustained: representation of women victims in Pakistani media, Open J. Soc. Sci., 03, 209
Yasmin, 2017, Creative methods in transforming education using human resources/kūrybiniai metodai pertvarkant švietimą pasitelkus žmogiškuosius išteklius, Creat. Stud., 10, 145, 10.3846/23450479.2017.1365778
Zhang, 2017, The water-food-energy nexus optimization approach to combat agricultural drought: a case study in the United States, Appl. Energy
Zhang, 2018, Water-energy-food nexus: concepts, questions and methodologies, J. Cleaner Prod., 195, 625, 10.1016/j.jclepro.2018.05.194
Zhang, 2018, Impacts of climate change, policy and Water-Energy-Food nexus on hydropower development, Renewable Energy, 116, 827, 10.1016/j.renene.2017.10.030
