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Particulate matter emissions from biochar-amended soils as a potential tradeoff to the negative emission potential

机译:从生物炭改良过的土壤中排放的颗粒物作为对负排放潜力的潜在权衡

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摘要

Novel carbon sequestration strategies such as large-scale land application of biochar may provide sustainable pathways to increase the terrestrial storage of carbon. Biochar has a long residence time in the soil and hence comprehensive studies are urgently needed to quantify the environmental impacts of large-scale biochar application. In particular, black carbon emissions from soils amended with biochar may counteract the negative emission potential due to the impacts on air quality, climate, and biogeochemical cycles. We investigated, using wind tunnel experiments, the particulate matter emission potential of a sand and two agriculturally important soils amended with different concentrations of biochar, in comparison to control soils. Our results indicate that biochar application considerably increases particulate emissions possibly by two mechanisms–the accelerated emission of fine biochar particles and the generation and emission of fine biochar particles resulting from abrasion of large biochar particles by sand grains. Our study highlights the importance of considering the background soil properties (e.g., texture) and geomorphological processes (e.g., aeolian transport) for biochar-based carbon sequestration programs.
机译:新型的碳固存策略,例如生物炭的大规模土地应用,可能会提供可持续的途径来增加陆地的碳存储。生物炭在土壤中的停留时间很长,因此迫切需要进行全面的研究以量化大规模生物炭应用对环境的影响。特别是,由于对空气质量,气候和生物地球化学循环的影响,经过生物炭改良的土壤中的黑碳排放可能抵消了负排放潜力。我们使用风洞实验研究了与对照土壤相比,用不同浓度的生物炭修正的沙子和两种农业重要土壤的颗粒物排放潜力。我们的结果表明,生物炭的应用可能通过两种机制极大地增加了颗粒物的排放-细生物炭颗粒的加速排放以及沙粒磨损大生物炭颗粒导致的细生物炭颗粒的产生和排放。我们的研究强调了在基于生物炭的碳固存计划中考虑背景土壤特性(例如质地)和地貌过程(例如风沙运输)的重要性。

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