Author
Listed:
- Sana Basheer
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
- Xiuquan Wang
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada
School of Climate Change and Adaptation, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
- Aitazaz A. Farooque
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada
School of Climate Change and Adaptation, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
- Rana Ali Nawaz
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
- Tianze Pang
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
School of Climate Change and Adaptation, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
- Emmanuel Okine Neokye
(Canadian Centre for Climate Change and Adaptation, University of Prince Edward Island, St. Peter’s Bay, PE C0A 2A0, Canada
School of Climate Change and Adaptation, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada)
Abstract
Greenhouse gases (GHGs) like nitrous oxide (N 2 O), carbon dioxide (CO 2 ), and methane (CH 4 ) are both emitted and removed by soils. Accurate worldwide allocations of carbon budget are essential for land use planning, global climate change, and climate-related research. Precise measurements, drivers, and mitigation strategies are necessary, given agricultural soil’s significant potential storage and emission capacities. Different agricultural management practices cause greenhouse gas (GHG) emissions into the atmosphere and contribute to anthropogenic emissions. Agricultural soils can generate 70% of the world’s manmade N 2 O emissions and also behave as a CO 2 sink and a source of organic carbon and as producers and consumers of CH 4 . When it comes to agronomic management, the source and sink of all these GHGs are distinct. Therefore, several approaches to measuring GHG emissions from agricultural soils are available and can be categorized into chamber systems and remote sensing approaches. Sustainable agriculture stands out as a viable and transformative approach to increase agricultural efficiency while addressing the challenge of GHG emissions. Incorporating advanced technologies, precise data analytics, and site-specific management practices can offer a pathway to mitigate GHG emissions, thereby reducing the global warming potential (GWP). Therefore, this review paper focuses solely on the drivers influencing and involving soil emissions and on quantification approaches for GHG emissions. In addition, mitigation practices aimed at optimizing GHG emissions from agricultural soils are highlighted.
Suggested Citation
Sana Basheer & Xiuquan Wang & Aitazaz A. Farooque & Rana Ali Nawaz & Tianze Pang & Emmanuel Okine Neokye, 2024.
"A Review of Greenhouse Gas Emissions from Agricultural Soil,"
Sustainability, MDPI, vol. 16(11), pages 1-19, June.
Handle:
RePEc:gam:jsusta:v:16:y:2024:i:11:p:4789-:d:1408658
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Citations
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Cited by:
- Paweł Zadrożny & Paweł Nicia & Tomasz Wojewodzic & Mariusz Dacko & Łukasz Paluch & Aleksandra Płonka & Jarosław Janus & Jacek Pijanowski & Romualda Bejger & Aleksandra Ukalska-Jaruga & Bożena Smreczak, 2024.
"Cause–Effect Modelling of Soil Liming in Poland,"
Sustainability, MDPI, vol. 16(23), pages 1-14, November.
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