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Perspective of new innovative biogas technology policy implementation for sustainable development in India

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  • Aggarwal, R.K.
  • Chandel, Shyam Singh
  • Yadav, Priya
  • Khosla, Atul

Abstract

The energy costs have increased substantially in recent years due to widespread development in India. Vast agro and animal waste resources are available which can easily be harnessed for biogas production economically Recently, there has been a renewed interest to revive the National biogas programme to meet the ever-increasing energy demand. India has set a target of reducing oil imports by 10% through the increased use of natural gas contribution in the current energy mix of 6.5%–15% by 2022. In this study the new Indian biogas policy initiatives for biogas production, new plant designs are presented along with a comparative analysis of the policy with similar policies of selected countries. The flaws in the past implementation of Indian bio-gas programmes, biogas technology as per most recent data along with identifying gaps in the new Indian biogas policy, are presented. A strategy is outlined to utilize large quantities of available food, agro and animal waste resources for a sustainable bio-gas policy as per UN sustainable development goal numbers 1, 7 and 13. The need for a sustainable biogas policy is emphasized to provide a clean fuel for cooking, heating, and lighting with focus on rural poor worldwide.

Suggested Citation

  • Aggarwal, R.K. & Chandel, Shyam Singh & Yadav, Priya & Khosla, Atul, 2021. "Perspective of new innovative biogas technology policy implementation for sustainable development in India," Energy Policy, Elsevier, vol. 159(C).
  • Handle: RePEc:eee:enepol:v:159:y:2021:i:c:s0301421521005310
    DOI: 10.1016/j.enpol.2021.112666
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    1. Nzila, Charles & Dewulf, Jo & Spanjers, Henri & Tuigong, David & Kiriamiti, Henry & van Langenhove, Herman, 2012. "Multi criteria sustainability assessment of biogas production in Kenya," Applied Energy, Elsevier, vol. 93(C), pages 496-506.
    2. Cheng, Shikun & Li, Zifu & Mang, Heinz-Peter & Huba, Elisabeth-Maria & Gao, Ruiling & Wang, Xuemei, 2014. "Development and application of prefabricated biogas digesters in developing countries," Renewable and Sustainable Energy Reviews, Elsevier, vol. 34(C), pages 387-400.
    3. Ravindranath, N.H. & Balachandra, P., 2009. "Sustainable bioenergy for India: Technical, economic and policy analysis," Energy, Elsevier, vol. 34(8), pages 1003-1013.
    4. Lohan, Shiv Kumar & Dixit, Jagvir & Kumar, Rohitashw & Pandey, Yogesh & Khan, Junaid & Ishaq, Mohd. & Modasir, Sheikh & Kumar, Dinesh, 2015. "Biogas: A boon for sustainable energy development in India׳s cold climate," Renewable and Sustainable Energy Reviews, Elsevier, vol. 43(C), pages 95-101.
    5. Kumar, Anil & Kumar, Nitin & Baredar, Prashant & Shukla, Ashish, 2015. "A review on biomass energy resources, potential, conversion and policy in India," Renewable and Sustainable Energy Reviews, Elsevier, vol. 45(C), pages 530-539.
    6. Sunil Mani & Abhishek Jain & Saurabh Tripathi & Carlos F. Gould, 2020. "The drivers of sustained use of liquified petroleum gas in India," Nature Energy, Nature, vol. 5(6), pages 450-457, June.
    7. Cheng, Shikun & Li, Zifu & Mang, Heinz-Peter & Huba, Elisabeth-Maria, 2013. "A review of prefabricated biogas digesters in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 28(C), pages 738-748.
    8. Yang, Liangcheng & Ge, Xumeng & Wan, Caixia & Yu, Fei & Li, Yebo, 2014. "Progress and perspectives in converting biogas to transportation fuels," Renewable and Sustainable Energy Reviews, Elsevier, vol. 40(C), pages 1133-1152.
    9. Erika Winquist & Michiel Van Galen & Simon Zielonka & Pasi Rikkonen & Diti Oudendag & Lijun Zhou & Auke Greijdanus, 2021. "Expert Views on the Future Development of Biogas Business Branch in Germany, The Netherlands, and Finland until 2030," Sustainability, MDPI, vol. 13(3), pages 1-20, January.
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    1. Sun, Yufeng & Yang, Bin & Wang, Yapeng & Zheng, Zipeng & Wang, Jinwei & Yue, Yaping & Mu, Wenlong & Xu, Guangyin & Jilai Ying,, 2023. "Emergy evaluation of biogas production system in China from perspective of collection radius," Energy, Elsevier, vol. 265(C).
    2. Bai, Dongbei & Jain, Vipin & Tripathi, Mamta & Ali, Syed Ahtsham & Shabbir, Malik Shahzad & Mohamed, Mady A.A. & Ramos-Meza, Carlos Samuel, 2022. "Performance of biogas plant analysis and policy implications: Evidence from the commercial sources," Energy Policy, Elsevier, vol. 169(C).

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