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Carbon Sequestration in Agricultural Soils: Separating the Muck from the Magic

机译:农业土壤中的碳封存:将泥块与魔法分开

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Intense interest in soil organic matter (SOM) over its role in the storage of terrestrial carbon (C) and in the release of greenhouse gases to the atmosphere manifests itself in a renewal of research efforts to assess the impacts of different soil management systems on C dynamics. This paper assesses the future role of selected systems for managing agricultural and pastoral land; addressing the global land area, potential to sequester carbon, side effects on other sources of greenhouse gases, and other limitations. Some systems such as organic farming and the use of biochar may have positive impacts over limited areas, but agroforestry, grazing lands and conservation agriculture appear to have the greatest potential to sequester carbon by covering vast areas on which C loss is reduced or positive C sequestration occurs. An over-riding problem is the difficulty of measuring changes in soil C. Isotopic techniques applied in comparative studies of different soil management systems offer new insights that will guide land managers and policy makers.
机译:对土壤有机物(SOM)的强烈兴趣在陆地碳(c)中的作用中,并在温室气体释放到大气中,在更新的研究工作中表现出评估不同土壤管理系统对C的影响的研究努力动力学。本文评估了所选系统管理农业和田园土地的未来作用;解决全球土地面积,潜在的碳碳,对其他温室气体来源的副作用以及其他限制。有机农业和生物炭的使用等一些系统可能对有限地区产生积极影响,但农林素,放牧土地和保护农业似乎通过覆盖碳损失或阳性C封存的巨大区域具有最大的潜在碳的潜力发生。过度骑行的问题是难以测量土壤C.应用在不同土壤管理系统的比较研究中的同位素技术提供了导向土地管理人员和决策者的新见解。

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