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Will European soil-monitoring networks be able to detect changes in topsoil organic carbon content

机译:欧洲土壤监测网络能否检测出表层土壤有机碳含量的变化

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Within the United Nations Framework Convention on Climate Change, articles 3.3 and 3.4 stipulate that some voluntary activities leading to an additional carbon (C) sequestration in soils could be accounted as C sinks in national greenhouse gas inventories. These additional C stocks should be verifiable. In this work, we assess the feasibility of verifying the effects of changes in land use or management practice on soil organic carbon (SOC), by comparing minimum detectable changes in SOC concentration for existing European networks suitable for soil monitoring. Among the tested scenarios, the minimum detectable changes differed considerably among the soil-monitoring networks (SMNs). Considerable effort would be necessary for some member states to reach acceptable levels of minimum detectable change for C sequestration accounting. For SOC, a time interval of about 10 years would enable the detection of some simulated large changes in most European countries. In almost all cases, the minimum detectable change in SOC stocks remains greater than annual greenhouse gases emissions. Therefore, it is unlikely that SMNs could be used for annual national C accounting. However, the importance of organic C in soil functions, and as an indicator of soil condition and trends, underlines the importance of establishing effective national SMNs.
机译:在《联合国气候变化框架公约》中,第3.3和3.4条规定,一些自愿活动导致土壤中更多的碳(C)固存,可被视为国家温室气体清单中的C汇。这些额外的C库存应该是可验证的。在这项工作中,我们通过比较适用于土壤监测的现有欧洲网络的SOC浓度的最小可检测变化,来评估验证土地利用或管理实践对土壤有机碳(SOC)的影响的可行性。在经过测试的方案中,土壤监测网络(SMN)之间的最小可检测变化差异很大。对于某些成员国,为了达到C封存会计的最低可检测变化的可接受水平,将需要付出巨大的努力。对于SOC,大约10年的时间间隔将使大多数欧洲国家/地区能够检测到某些模拟的较大变化。在几乎所有情况下,SOC存量的最小可检测变化仍然大于每年的温室气体排放量。因此,SMN不太可能用于年度国家C核算。但是,有机碳在土壤功能中的重要性以及作为土壤状况和趋势的指标,强调了建立有效的国家SMN的重要性。

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