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To what extent can zero tillage lead to a reduction in greenhouse gas emissions from temperate soils?

机译:零耕种可以在多大程度上减少温带土壤的温室气体排放?

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摘要

Soil tillage practices have a profound influence on the physical properties of soil and the greenhouse gas (GHG) balance. However there have been very few integrated studies on the emission of carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O) and soil biophysical and chemical characteristics under different soil management systems. We recorded a significantly higher net global warming potential under conventional tillage systems (26–31% higher than zero tillage systems). Crucially the 3-D soil pore network, imaged using X-ray Computed Tomography, modified by tillage played a significant role in the flux of CO2 and CH4. In contrast, N2O flux was determined mainly by microbial biomass carbon and soil moisture content. Our work indicates that zero tillage could play a significant role in minimising emissions of GHGs from soils and contribute to efforts to mitigate against climate change.
机译:土壤耕作方法对土壤的物理性质和温室气体(GHG)平衡具有深远的影响。然而,关于不同土壤管理系统下二氧化碳(CO2),甲烷(CH4)和一氧化二氮(N2O)的排放以及土壤生物物理和化学特性的综合研究很少。在传统的耕作制度下,我们记录到的全球变暖潜势明显更高(比零耕作制度高26-31%)。至关重要的是,使用X射线计算机断层扫描成像技术对3D土壤孔隙网络进行了耕作,在耕作过程中对CO2和CH4的通量起着重要作用。相反,N2O通量主要由微生物生物量碳和土壤水分含量决定。我们的工作表明,零耕作法在最大程度减少土壤温室气体排放方面可能发挥重要作用,并有助于减轻气候变化的影响。

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