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20 - Pathways to a more sustainable electricity sector in India

from Part II - Sustainable Development: Challenges and Opportunities

Published online by Cambridge University Press:  23 December 2021

Pak Sum Low
Affiliation:
Xiamen University Malaysia
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Summary

India is the third-largest emitter of greenhouse gases in the world, and its coal-dominated electricity sector contributes approximately half of these. In addition, air pollution from burning coal is a serious challenge for public health. India also has approximately 200 million people without access to electricity and therefore has low per capita electricity consumption. These are unflattering realities when India is also expected to be among the fastest-growing economies in the world for the next few decades.

At the Paris summit in 2015, India committed to increasing the share of non-fossil electric generation capacity to 40% by 2030. The recent decline in the cost of solar photovoltaic systems and wind generation, and strong policy support for renewables-based distributed generation and micro-grids, make this target achievable. While the role of nuclear power in meeting this goal is uncertain, India’s re-entry in global nuclear trade and commerce following the 2008 civilian nuclear agreement with the United States and negotiation of a partial safeguards agreement with the International Atomic Energy Agency (IAEA) have revived interest in a major expansion programme. Reducing coal’s share in the Indian electricity sector, expanding electrification of transport, and improving efficiency can reduce India’s urban air pollution problems. At the same time, improving access and quality of service are key components of the United Nations’ Sustainable Development Goals (SDG). In this chapter, we analyse the challenges and benefits of increasing the share of renewables and nuclear power in India’s electricity system.

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Publisher: Cambridge University Press
Print publication year: 2022

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References

Banerjee, S. (2010) Towards a sustainable nuclear energy future. 35th Annual Symposium of the World Nuclear Association, 15–17 September, London. https://www.hcilondon.in/indiadigest/Issue320/pdf/6.pdfGoogle Scholar
BEE (Bureau of Energy Efficiency) (2017) Annual Report 2016–2017. https://beeindia.gov.in/content/annual-reportGoogle Scholar
Bhabha, H. J. and Prasad, N. B. (1958) A study of the contribution of atomic energy to a power programme in India. Proceedings of the Second United Nations International Conference on the Peaceful Uses of Atomic Energy, Geneva, pp. 89101.Google Scholar
Bhaskar, U. (2018a) After power in all villages, next step is all households. Thursday, 3 May. https://www.livemint.com/Politics/cmw5WuVGTrDRexEqiet7uL/After-power-in-all-villages-next-step-is-all-households.htmlGoogle Scholar
Bhaskar, U. (2018b) Electricity reached all Indian villages on Saturday. Saturday, 28 April 2018. https://www.livemint.com/Industry/ORuZWrj6czTef21a2dIHGK/Electricity-reached-all-Indian-villages-on-Saturday.htmlGoogle Scholar
Bhaskar, U. (2018c) Wind power tariffs stay near record low of Rs 2.44/unit in SECI auction. 15 February. https://www.livemint.com/Industry/w1YII5apaYDLhM4jW5LaAO/Firms-bid-Rs244-per-unit-in-Indias-wind-power-auction.htmlGoogle Scholar
CEA (Central Electricity Authority) (2003) The Electricity Act, 2003. http://www.cercind.gov.in/Act-with-amendment.pdfGoogle Scholar
CEA (Central Electricity Authority) (2016) Report (Part A) on Advance National Transmission Plan for 2021–22. http://www.cea.nic.in/reports/others/ps/pspa2/ptp.pdfGoogle Scholar
CEA (Central Electricity Authority) (2018a) National Electricity Plan (Volume I), Generation. January. http://www.cea.nic.in/reports/committee/nep/nep_jan_2018.pdfGoogle Scholar
CEA (Central Electricity Authority) (2018b) Growth of the Electricity Sector in India from 1947–2017. http://www.cea.nic.in/reports/others/planning/pdm/growth_2017.pdfGoogle Scholar
CEA (Central Electricity Authority) (2018c) Monthly Executive Summary 2018. March. http://www.cea.nic.in/reports/monthly/executivesummary/2018/exe_summary-03.pdfGoogle Scholar
CEA (Central Electricity Authority) (2018d) Renewable Energy Generation Report. http://www.cea.nic.in/reports/monthly/renewable/2018/renewable-03.pdfGoogle Scholar
CEA (Central Electricity Authority) (2018e) Monthly Executive Summary 2018. July. http://www.cea.nic.in/reports/monthly/executivesummary/2018/exe_summary-07.pdfGoogle Scholar
CEEW (Council on Energy, Environment and Water) (2015) Access to clean cooking energy and electricity: Survey of States. http://ceew.in/pdf/CEEW-ACCESS-Report-29Sep15.pdfGoogle Scholar
Chakravarty, S. and Ahuja, D. R. (2016) Bridging the gap between intentions and contributions requires determined effort. Invited Guest Editorial in Current Science, 110(4), 475476.Google Scholar
DAE (Department of Atomic Energy) (2015) Government of India. http://www.dae.nic.in/writereaddata/parl/winter2015/rsus487.pdfGoogle Scholar
EESL (Energy Efficiency Services Limited) (2018) https://eeslindia.orgGoogle Scholar
FOWIND (Facilitating Offshore Wind in India Consortium) (2017) From zero to five GW: Offshore wind outlook for Gujarat and Tamil Nadu (2018–2032). http://gwec.net/wp-content/uploads/2017/12/FOWIND_2017_Final_Outlook_2032.pdfGoogle Scholar
GBD MAPS (Global Burden of Disease Major Air Pollution Sources Working Group) (2018) Burden of Disease Attributable to Major Air Pollution Sources in India. Health Effects Institute. https://www.healtheffects.org/publication/gbd-air-pollution-indiaGoogle Scholar
GIZ (GIZ Indo-German Energy Programme) (2017) Green Energy Corridors – Large-Scale Integration of Renewable Energy: Summary of findings and key recommendations. https://www.energyforum.in/fileadmin/user_upload/india/media_elements/publications/20190909_GEC_report/GIZ_Summary_Report.pdfGoogle Scholar
IEA (International Energy Agency) (2015) India Energy Outlook. OECD/IEA, Paris.Google Scholar
IRENA (International Renewable Energy Agency) (2017) Renewable energy prospects for India: A working paper based on Remap, 2017. http://www.irena.org/publications/2017/May/Renewable-Energy-Prospects-for-IndiaGoogle Scholar
IRENA (International Renewable Energy Agency) (2018) Renewable power generation costs in 2017. http://www.irena.org/publications/2018/Jan/Renewable-power-generation-costs-in-2017Google Scholar
Kittner, N., Lill, F. and Kammen, D. M. (2017) Energy storage deployment and innovation for the clean energy transition. Nature Energy, 2, article no. 17125, July. http://dx.doi.org/10.1038/nenergy.2017.125CrossRefGoogle Scholar
Kraemer, S. (2017) Solar thermal power prices have dropped an astonishing 50% in six months. SolarPACES, October. http://www.solarpaces.org/solar-thermal-energy-prices-drop-half/Google Scholar
LiveMint (2017) Westinghouse: Bankruptcy in US won’t impact India nuclear power project. 27 October. https://www.livemint.com/Companies/nSIQTsQq5cSMb5omo8BQFN/Westinghouse-Bankruptcy-in-US-wont-impact-India-nuclear-po.htmlGoogle Scholar
MAE (Ministry of Atomic Energy) (2014) Unstarred Question No. 1655 in the Lok Sabha, answered on 3 December 2014 by the Minister of Atomic Energy, Government of India. http://164.100.47.194/Loksabha/Questions/QResult15.aspx?qref=7804&lsno=16Google Scholar
Martinez, J., Marti-Herrero, J., Villacis, S., Riofrio, A. J. and Vaca, D. (2017) Analysis of energy, CO2 emissions and economy of the technological migration for clean cooking in Ecuador. Energy Policy, 107, 182187.CrossRefGoogle Scholar
MNRE (Ministry of New and Renewable Energy) (2010) Jawaharlal Nehru National Solar Mission. https://mnre.gov.in/file-manager/UserFiles/mission_document_JNNSM.pdfGoogle Scholar
MNRE (Ministry of New and Renewable Energy) (2018) Annual Report, 2017–18. https://mnre.gov.in/file-manager/annual-report/2017–2018/EN/index.htmlGoogle Scholar
MOEFCC (Ministry of Environment, Forest and Climate Change) (2008) India’s National Action Plan on Climate Change (NAPCC). http://www.moef.nic.in/ccd-napccGoogle Scholar
Mohan, A. (2016) The future of nuclear energy in India. ORF Occasional Paper #98. Observer Research Foundation. August. https://www.orfonline.org/wp-content/uploads/2016/08/OccasionalPaper_98_NuclearEnergy.pdfGoogle Scholar
NEA and IAEA (Nuclear Energy Agency and the International Atomic Energy Agency) (2016) Uranium 2016: Resources, Production and Demand. https://www.oecd-nea.org/jcms/pl_15004#:~:text=It%20offers%20updated%20information%20on,uranium%20supply%20and%20demand%20issues.Google Scholar
NREL (National Renewable Energy Laboratory, USA) (2017) Power System Operation Corporation Limited (India) and Lawrence Berkeley National Laboratory (USA). Greening the Grid: Pathways to Integrate 175 Gigawatts of Renewable Energy into India’s Electric Grid, Vol. I and Vol. II. https://www.nrel.gov/analysis/india-renewable-integration-study.htmlGoogle Scholar
PC (Planning Commission, Government of India) Five Year Plans I through XII (1951, 1956, 1961, 1969, 1974, 1980, 1985, 1997, 2002, 2007, 2012) (chapters dealing with energy). New Delhi. https://niti.gov.in/planningcommission.gov.in/docs/plans/planrel/index.phpGoogle Scholar
PMO (Prime Minister’s Office) (2015) Revision of cumulative targets under National Solar Mission from 20,000 MW by 2021–22 to 1,00,000 MW. https://www.pmindia.gov.in/en/news_updates/revision-of-cumulative-targets-under-national-solar-mission-from-20000-mw-by-2021-22-to-100000-mw/Google Scholar
PMO(Prime Minister’s Office) (2017) Cabinet approves construction of 10 units of India’s indigenous Pressurized Heavy Water Reactors (PHWR). 17 May. https://www.pmindia.gov.in/en/news_updates/cabinet-approves-construction-of-10-units-of-indias-indigenous-pressurized-heavy-water-reactors-phwr/#:~:text=In%20a%20significant%20decision%20to,Heavy%20Water%20Reactors%20(PHWR).Google Scholar
POSOCO (Power System Corporation) (2017) Corporate Plan 2017–18. https://posoco.in/wp-content/uploads/2017/05/Corporate-Plan-2017–18.pdfGoogle Scholar
Prayas (Prayas Energy Group) (2017) Many sparks but little light: The rhetoric and practice of electricity sector reforms in India. http://www.prayaspune.org/peg/publications/item/332-many-sparks-but-little-light-the-rhetoric-and-practice-of-electricity-sector-reforms-in-india.htmlGoogle Scholar
PRIS (Power Reactor Information System) (2018) India: Power reactor information system. International Atomic Energy Agency. https://www.iaea.org/pris/CountryStatistics/CountryDetails.aspx?current=INGoogle Scholar
Private communication (2006) Private conversation of the second author with A. Gopalakrishnan, former Chairman of India’s Atomic Energy Regulatory Board (AERB), in January in Singapore.Google Scholar
Private communication (2012) Private conversation of the second author with Rémy Autebert, Senior Executive Vice President (Asia), AREVA, on 2 September in Singapore.Google Scholar
Saubhagya (Pradhan Mantri Sahaj Bijli Har Ghar Yojana – ‘Saubhagya’) (2017) http://saubhagya.gov.in/Google Scholar
Sen, S. and Murali, A. (2018) The story of India’s flip-flops on its electric vehicle policy – and how it will hurt. The Factor Daily, 19 March. https://factordaily.com/india-u-turn-on-electric-vehicles-policy/Google Scholar
Sengupta, A. (2016) India’s nuclear liability regime is still up in the air. https://thewire.in/diplomacy/indias-nuclear-liability-regime-is-still-up-in-the-airGoogle Scholar
SIAM (Society of Indian Automobile Manufacturers) (2018) Adopting pure electric vehicles: Key policy enablers. December 2017. http://www.siam.in/uploads/filemanager/114SIAMWhitePaperonElectricVehicles.pdfGoogle Scholar
Srinivasan, T. N. and Rethinaraj, T. S. Gopi (2013) Fukushima and thereafter: reassessment of risks of nuclear power. Energy Policy. 52, 726–736. January.Google Scholar
SRPC (Solar Rooftop Policy Coalition) (2016) Unleashing private investment in rooftop solar in India. http://shaktifoundation.in/report/solar-rooftop-policy-coalition/Google Scholar
UNFCCC (United Nations Framework Convention on Climate Change) (2015) India’s Intended Nationally Determined Contribution. http://www4.unfccc.int/ndcregistry/PublishedDocuments/India%20First/INDIA%20INDC%20TO%20UNFCCC.pdfGoogle Scholar
Wolfram, S. (2018) Mathematica 11.3 returns a geographical plot with locations of historically recorded seismic activities for a given country using a free-form input. https://www.wolframalpha.com/input/?source=frontpage-immediate-access&i=earthquakes+in+india+greater+than+6+last+30+yearsGoogle Scholar

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