Harnessing Biogas in India: A Sustainable Pathway for Sustainable Energy Development

Authors

  • Dinesh Kumar Madheswaran School of Mechanical Engineering, SRM Institute of Science and Technology (Kattankulathur Campus), India https://orcid.org/0000-0002-8393-4815
  • Jegadheeshwari Saravanan School of Bioengineering, SRM Institute of Science and Technology (Kattankulathur Campus), India https://orcid.org/0000-0001-9248-4759
  • Selvaraj Jegadheeswaran School of Mechanical Sciences, Bannari Amman Institute of Technology, India https://orcid.org/0000-0002-2540-0487
  • Vengatesan Subramanian School of Mechanical Engineering, SRM Institute of Science and Technology (Kattankulathur Campus), India https://orcid.org/0000-0002-5435-1047

DOI:

https://doi.org/10.47852/bonviewGLCE42021762

Keywords:

sanitation, hygiene, ecosystem preservation, biogas sector, sustainable development, circular economy

Abstract

The review underscores the pivotal role of the Indian biogas sector in addressing the challenges posed by inadequate sanitation practices, exploring how the biogas sector is a potentially transformative force for waste management and energy production. Decentralized biogas facilities utilizing various organic materials, including agricultural waste, kitchen waste, organic industrial waste, sewage sludge, and floral waste, have reshaped rural landscapes. These facilities electrify remote villages, benefiting over 5 million residents and reducing energy expenses by 40%. Critically, these efforts preserve vital ecosystems, exemplified by the rejuvenation of 10,000 hectares of mangroves in the Sundarbans, sequestering an impressive 500,000 metric tons of CO2 annually. Innovative technologies, such as the anaerobic digestion process and advanced biogas production systems featuring improved gas purification techniques, two-stage digesters, and optimized feedstock mixtures, play a crucial role in this sustainability journey. These advancements boost biogas yields by 20%. Importantly, byproducts like digestate are efficiently upcycled into 500 Mt of high-quality biofertilizers annually, significantly enhancing crop yield, particularly wheat and maize, by 15%. Moreover, the transformative impact extends to environmental sustainability by converting digestate into 1,000 Mt of biodegradable plastics, leading to a 30% reduction in traditional plastics usage. Government support and well-crafted policies have been instrumental, with subsidies driving the adoption of biogas digesters in 50,000 households, creating 5,000 jobs, and reducing methane emissions by 2 MMt annually. Biogas catalyzes integrated sustainability, accompanying cleaner environments, improved livelihoods, and resilient ecosystems by harmonizing sanitation, energy, and ecosystem preservation.

 

Received: 20 September 2023 | Revised: 27 December 2023 | Accepted: 26 February 2024

 

Conflicts of Interest

The authors declare that they have no conflicts of interest to this work.

 

Data Availability Statement

The data that support the findings of this study are openly available upon reasonable request to the corresponding author.


Author Biography

Dinesh Kumar Madheswaran, School of Mechanical Engineering, SRM Institute of Science and Technology (Kattankulathur Campus), India

Dinesh Kumar Madheswaran, pursuing career as doctoral research scholar at SRM University, Chennai. His research work is focused on incorporation of additive manufacturing technology to fabricate PEM fuel cells for sustainable mobility applications. Additionally, Dinesh is working on various energy based and mobility projects to meet the Sustainable Development Goals-7 (SDG-7) for the future.

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Published

2024-03-01

How to Cite

Madheswaran, D. K., Saravanan, J., Jegadheeswaran, S., & Subramanian, V. (2024). Harnessing Biogas in India: A Sustainable Pathway for Sustainable Energy Development. Green and Low-Carbon Economy. https://doi.org/10.47852/bonviewGLCE42021762

Issue

Section

Review