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生物炭作为一种负排放技术:温室气体排放野外研究的综合评价。

Biochar as a negative emission technology: A synthesis of field research on greenhouse gas emissions.

机构信息

Horticulture and Crop Science, The Ohio State University, Columbus, Ohio, USA.

Department of Earth Sciences, Indiana University Purdue University Indianapolis, Indianapolis, Indiana, USA.

出版信息

J Environ Qual. 2023 Jul-Aug;52(4):769-798. doi: 10.1002/jeq2.20475. Epub 2023 May 5.

Abstract

Biochar is one of the few nature-based technologies with potential to help achieve net-zero emissions agriculture. Such an outcome would involve the mitigation of greenhouse gas (GHG) emission from agroecosystems and optimization of soil organic carbon sequestration. Interest in biochar application is heightened by its several co-benefits. Several reviews summarized past investigations on biochar, but these reviews mostly included laboratory, greenhouse, and mesocosm experiments. A synthesis of field studies is lacking, especially from a climate change mitigation standpoint. Our objectives are to (1) synthesize advances in field-based studies that have examined the GHG mitigation capacity of soil application of biochar and (2) identify limitations of the technology and research priorities. Field studies, published before 2022, were reviewed. Biochar has variable effects on GHG emissions, ranging from decrease, increase, to no change. Across studies, biochar reduced emissions of nitrous oxide (N O) by 18% and methane (CH ) by 3% but increased carbon dioxide (CO ) by 1.9%. When biochar was combined with N-fertilizer, it reduced CO , CH , and N O emissions in 61%, 64%, and 84% of the observations, and biochar plus other amendments reduced emissions in 78%, 92%, and 85% of the observations, respectively. Biochar has shown potential to reduce GHG emissions from soils, but long-term studies are needed to address discrepancies in emissions and identify best practices (rate, depth, and frequency) of biochar application to agricultural soils.

摘要

生物炭是为数不多的具有帮助实现农业净零排放潜力的自然技术之一。这种结果将涉及减少农业生态系统温室气体(GHG)排放和优化土壤有机碳固存。生物炭的几种共同效益提高了人们对其应用的兴趣。几项综述总结了过去对生物炭的研究,但这些综述大多包括实验室、温室和中观实验。缺乏对田间研究的综合分析,特别是从气候变化缓解的角度来看。我们的目标是:(1)综合基于田间的研究进展,这些研究检验了生物炭土壤应用对温室气体减排的能力;(2)确定该技术的局限性和研究重点。综述了发表于 2022 年之前的研究。生物炭对温室气体排放有不同的影响,范围从减少、增加到没有变化。在各项研究中,生物炭减少了一氧化二氮(N O)排放 18%,甲烷(CH )排放 3%,但增加了二氧化碳(CO )排放 1.9%。当生物炭与氮肥结合使用时,它将 61%、64%和 84%的观测中的 CO 、CH 和 N O 排放量降低,生物炭和其他改良剂分别将 78%、92%和 85%的观测中的排放量降低。生物炭显示出减少土壤温室气体排放的潜力,但需要进行长期研究,以解决排放差异,并确定生物炭在农业土壤中的最佳应用(速率、深度和频率)。

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