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Mimicking biochar-albedo feedback in complex Mediterranean agricultural landscapes

机译:模拟复杂的地中海农业景观中的生物碳-反照率反馈

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Incorporation of charcoal produced by biomass pyrolysis (biochar) in agricultural soils is a potentially sustainable strategy for climate change mitigation. However, some side effects of large-scale biochar application need to be investigated. In particular a massive use of a low-reflecting material on large cropland areas may impact the climate via changes in surface albedo. Twelve years of MODIS-derived albedo data were analysed for three pairs of selected agricultural sites in central Italy. In each pair bright and dark coloured soil were identified, mimicking the effect of biochar application on the land surface albedo of complex agricultural landscapes. Over this period vegetation canopies never completely masked differences in background soil colour. This soil signal, expressed as an albedo difference, induced a local instantaneous radiative forcing of up to 4.7 W m?2 during periods of high solar irradiance. Biochar mitigation potential might therefore be reduced up to ~30%. This study proves the importance of accounting for crop phenology and crop management when assessing biochar mitigation potential and provides more insights into the analysis of its environmental feedback.
机译:将生物质热解(biochar)产生的木炭掺入农业土壤中是缓解气候变化的潜在可持续战略。但是,需要研究大规模生物炭应用的一些副作用。特别是在大片农田上大量使用低反射率材料可能会通过表面反照率的变化影响气候。针对意大利中部三对选定的农业地点,分析了MODIS得出的12年反照率数据。在每对土壤中,鉴定出了明亮和深色的土壤,模仿了生物炭施用对复杂农业景观的地表反照率的影响。在此期间,植被冠层从未完全掩盖背景土壤颜色的差异。这种土壤信号以反照率差异表示,在高太阳辐照度期间引起局部瞬时辐射强迫高达4.7 W m?2。因此,减少生物炭的潜力最多可降低约30%。这项研究证明了在评估生物炭缓解潜力时考虑作物物候和作物管理的重要性,并为对其环境反馈的分析提供了更多见识。

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