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Emission and Sink of Greenhouse Gases in Soils of Moscow

机译:莫斯科土壤中温室气体的排放和汇

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摘要

The first inventory and zoning of the emission and sink of methane and carbon dioxide in the urban structure of greenhouse gases from soils and surface technogenic formations (STFs) (Technosols) on technogenic, recrementogenic, and natural sediments have been performed with consideration for the global warming potential under conditions of different formation rate of these gases, underflooding, and sealing. From gas geochemical criteria and anthropogenic pedogenesis features, the main sources of greenhouse gases, their intensity, and mass emission were revealed. The mass fractions of emissions from the sectors of waste and land use in the inventories of greenhouse gas emissions have been determined. New sources of gas emission have been revealed in the first sector, the emissions from which add tens of percent to the literature and state reports. In the second sector, emissions exceed the available data in 70 times. Estimation criteria based on the degree of manifestation and chemical composition of soil-geochemical anomalies and barrier capacities have been proposed. The sink of greenhouse gases from the atmosphere and the internal (latent) sink of methane in soils and STFs have been determined. Ecological functions of soils and STFs have been shown, and the share of latent methane sink has been calculated. The bacterial oxidation of methane in soils and STFs exceeds its emission to the atmosphere in almost hundred times.
机译:甲烷排放量和甲烷和二氧化碳排放和分区的培养基和表面介绍(STF)(Techosols)(Techosols)的城市结构中的甲烷和二氧化碳的排放和分区已经考虑到全球化在这些气体的不同形成速率的条件下温暖潜力,地下结束和密封。从气体地球化学标准和人为基础特征,揭示了温室气体,强度和大规模排放的主要来源。确定了垃圾和土地利用部门的排放量的质量分数已经确定。在第一部门中揭示了新的气体排放来源,其排放量增加了数十百分点对文献和国家报告。在第二个部门,排放量超过70次可用数据。提出了基于土壤 - 地球化学异常和阻挡能力的表现程度和化学成分的估计标准。确定了来自大气的温室气体和土壤中甲烷的内部(潜伏)水槽和STF的水槽。已经显示了土壤和STF的生态功能,并计算了潜伏的甲烷水槽的份额。土壤中甲烷和STF的细菌氧化超过了近百次的气氛的排放。

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