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

Thesis: S.M. in Building Technology, Massachusetts Institute of Technology, Department of Architecture, September, September, 2020 === Cataloged from the official PDF of thesis. === Includes bibliographical references (pages 49-55). === Crop residue burning is a leading contributor to air pollution...

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Main Author: Lan, Ruoyu, S.M. Massachusetts Institute of Technology.
Other Authors: Massachusetts Institute of Technology. Department of Architecture.
Format: Others
Language:English
Published: Massachusetts Institute of Technology 2021
Subjects:
Online Access:https://hdl.handle.net/1721.1/138578
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spelling ndltd-MIT-oai-dspace.mit.edu-1721.1-1385782021-12-19T05:16:43Z Air quality impacts of crop residue burning in India and mitigation alternatives Lan, Ruoyu, S.M. Massachusetts Institute of Technology. Massachusetts Institute of Technology. Department of Architecture. Massachusetts Institute of Technology. Department of Architecture Architecture. Thesis: S.M. in Building Technology, Massachusetts Institute of Technology, Department of Architecture, September, September, 2020 Cataloged from the official PDF of thesis. Includes bibliographical references (pages 49-55). Crop residue burning is a leading contributor to air pollution and ill health in India. Despite current bans to curtail agricultural fires, burning persists because of a lack of alternatives that are both effective and politically viable. This thesis applies adjoint of the GEOS-Chem regional chemistry-transport model in combination with epidemiological and economic models to inform rational decision-making. First, this thesis estimates the premature deaths as 43,000-73,000 valued at 10-23 billion USD in India attributable to exposure to ambient fine particulate matter (PM2.5) from crop residue burning, and finds Punjab, Haryana, and Uttar Pradesh contribute the majority (83%-95%) over 2005-2016, with 35-40% of impacts occurring in densely populated areas downwind. Second, this thesis quantifies the sensitivity of net impacts to potential changes in space and time, suggesting that relatively significant air quality benefits across India could be achieved in southeast Punjab; promoting burning earlier in the morning in November in Punjab alone could prevent up to 8,700 (95% CI: 5,700-12,000) premature deaths annually, valued at 2.2 (95% CI: 0.22-7.0) million USD. Third, this thesis compares the cost and benefit of mitigation alternatives for both the public and private sectors. The findings support the use of targeted and potentially low-cost alternatives rather than bans. by Ruoyu Lan. S.M. in Building Technology S.M. in Building Technology Massachusetts Institute of Technology, Department of Architecture 2021-12-17T18:24:03Z 2021-12-17T18:24:03Z 2020 2020 Thesis https://hdl.handle.net/1721.1/138578 1288582516 eng MIT theses may be protected by copyright. Please reuse MIT thesis content according to the MIT Libraries Permissions Policy, which is available through the URL provided. http://dspace.mit.edu/handle/1721.1/7582 67 pages application/pdf Massachusetts Institute of Technology
collection NDLTD
language English
format Others
sources NDLTD
topic Architecture.
spellingShingle Architecture.
Lan, Ruoyu, S.M. Massachusetts Institute of Technology.
Air quality impacts of crop residue burning in India and mitigation alternatives
description Thesis: S.M. in Building Technology, Massachusetts Institute of Technology, Department of Architecture, September, September, 2020 === Cataloged from the official PDF of thesis. === Includes bibliographical references (pages 49-55). === Crop residue burning is a leading contributor to air pollution and ill health in India. Despite current bans to curtail agricultural fires, burning persists because of a lack of alternatives that are both effective and politically viable. This thesis applies adjoint of the GEOS-Chem regional chemistry-transport model in combination with epidemiological and economic models to inform rational decision-making. First, this thesis estimates the premature deaths as 43,000-73,000 valued at 10-23 billion USD in India attributable to exposure to ambient fine particulate matter (PM2.5) from crop residue burning, and finds Punjab, Haryana, and Uttar Pradesh contribute the majority (83%-95%) over 2005-2016, with 35-40% of impacts occurring in densely populated areas downwind. Second, this thesis quantifies the sensitivity of net impacts to potential changes in space and time, suggesting that relatively significant air quality benefits across India could be achieved in southeast Punjab; promoting burning earlier in the morning in November in Punjab alone could prevent up to 8,700 (95% CI: 5,700-12,000) premature deaths annually, valued at 2.2 (95% CI: 0.22-7.0) million USD. Third, this thesis compares the cost and benefit of mitigation alternatives for both the public and private sectors. The findings support the use of targeted and potentially low-cost alternatives rather than bans. === by Ruoyu Lan. === S.M. in Building Technology === S.M. in Building Technology Massachusetts Institute of Technology, Department of Architecture
author2 Massachusetts Institute of Technology. Department of Architecture.
author_facet Massachusetts Institute of Technology. Department of Architecture.
Lan, Ruoyu, S.M. Massachusetts Institute of Technology.
author Lan, Ruoyu, S.M. Massachusetts Institute of Technology.
author_sort Lan, Ruoyu, S.M. Massachusetts Institute of Technology.
title Air quality impacts of crop residue burning in India and mitigation alternatives
title_short Air quality impacts of crop residue burning in India and mitigation alternatives
title_full Air quality impacts of crop residue burning in India and mitigation alternatives
title_fullStr Air quality impacts of crop residue burning in India and mitigation alternatives
title_full_unstemmed Air quality impacts of crop residue burning in India and mitigation alternatives
title_sort air quality impacts of crop residue burning in india and mitigation alternatives
publisher Massachusetts Institute of Technology
publishDate 2021
url https://hdl.handle.net/1721.1/138578
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