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Air quality impacts of crop residue burning in India and mitigation alternatives

Author

Listed:
  • Ruoyu Lan

    (Massachusetts Institute of Technology
    Massachusetts Institute of Technology)

  • Sebastian D. Eastham

    (Massachusetts Institute of Technology
    Massachusetts Institute of Technology)

  • Tianjia Liu

    (Harvard University)

  • Leslie K. Norford

    (Massachusetts Institute of Technology)

  • Steven R. H. Barrett

    (Massachusetts Institute of Technology
    Massachusetts Institute of Technology)

Abstract

Crop residue burning contributes to poor air quality and imposes a health burden on India. Despite government bans and other interventions, this practice remains widespread. Here we estimate the impact of changes in agricultural emissions on air quality across India and quantify the potential benefit of district-level actions using an adjoint modeling approach. From 2003 to 2019, we find that agricultural residue burning caused 44,000–98,000 particulate matter exposure-related premature deaths annually, of which Punjab, Haryana, and Uttar Pradesh contribute 67–90%. Due to a combination of relatively high downwind population density, agricultural output, and cultivation of residue-intensive crops, six districts in Punjab alone contribute to 40% of India-wide annual air quality impacts from residue burning. Burning two hours earlier in Punjab alone could avert premature deaths up to 9600 (95% CI: 8000–11,000) each year, valued at 3.2 (95% CI: 0.49–7.3) billion US dollars. Our findings support the use of targeted and potentially low-cost interventions to mitigate crop residue burning in India, pending further research regarding cost-effectiveness and feasibility.

Suggested Citation

  • Ruoyu Lan & Sebastian D. Eastham & Tianjia Liu & Leslie K. Norford & Steven R. H. Barrett, 2022. "Air quality impacts of crop residue burning in India and mitigation alternatives," Nature Communications, Nature, vol. 13(1), pages 1-13, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-34093-z
    DOI: 10.1038/s41467-022-34093-z
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    References listed on IDEAS

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    1. Robinson, Lisa A., 2017. "Estimating the Values of Mortality Risk Reductions in Low- and Middle-Income Countries 1," Journal of Benefit-Cost Analysis, Cambridge University Press, vol. 8(2), pages 205-214, July.
    2. Balwinder-Singh & Andrew J. McDonald & Amit K. Srivastava & Bruno Gerard, 2019. "Tradeoffs between groundwater conservation and air pollution from agricultural fires in northwest India," Nature Sustainability, Nature, vol. 2(7), pages 580-583, July.
    3. Sourangsu Chowdhury & Sagnik Dey & Kirk R. Smith, 2018. "Ambient PM2.5 exposure and expected premature mortality to 2100 in India under climate change scenarios," Nature Communications, Nature, vol. 9(1), pages 1-10, December.
    4. Irene C. Dedoussi & Sebastian D. Eastham & Erwan Monier & Steven R. H. Barrett, 2020. "Premature mortality related to United States cross-state air pollution," Nature, Nature, vol. 578(7794), pages 261-265, February.
    5. S. Bhuvaneshwari & Hiroshan Hettiarachchi & Jay N. Meegoda, 2019. "Crop Residue Burning in India: Policy Challenges and Potential Solutions," IJERPH, MDPI, vol. 16(5), pages 1-19, March.
    6. Lohan, Shiv Kumar & Jat, H.S. & Yadav, Arvind Kumar & Sidhu, H.S. & Jat, M.L. & Choudhary, Madhu & Peter, Jyotsna Kiran & Sharma, P.C., 2018. "Burning issues of paddy residue management in north-west states of India," Renewable and Sustainable Energy Reviews, Elsevier, vol. 81(P1), pages 693-706.
    7. Luke Conibear & Edward W. Butt & Christoph Knote & Stephen R. Arnold & Dominick V. Spracklen, 2018. "Residential energy use emissions dominate health impacts from exposure to ambient particulate matter in India," Nature Communications, Nature, vol. 9(1), pages 1-9, December.
    8. J. Lelieveld & J. S. Evans & M. Fnais & D. Giannadaki & A. Pozzer, 2015. "The contribution of outdoor air pollution sources to premature mortality on a global scale," Nature, Nature, vol. 525(7569), pages 367-371, September.
    9. Srinivas Bikkina & August Andersson & Elena N. Kirillova & Henry Holmstrand & Suresh Tiwari & A. K. Srivastava & D. S. Bisht & Örjan Gustafsson, 2019. "Air quality in megacity Delhi affected by countryside biomass burning," Nature Sustainability, Nature, vol. 2(3), pages 200-205, March.
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    Cited by:

    1. Shukla, Sumedha & Arora, Gaurav, 2023. "Soil quality perceptions: Characterizing bias and linkage with farming decisions for rice- growers in India," 2023 Annual Meeting, July 23-25, Washington D.C. 336014, Agricultural and Applied Economics Association.
    2. B. Kelsey Jack & Seema Jayachandran & Namrata Kala & Rohini Pande, 2022. "Money (Not) to Burn: Payments for Ecosystem Services to Reduce Crop Residue Burning," NBER Working Papers 30690, National Bureau of Economic Research, Inc.

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