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Simulating the effect of tillage practices with the global ecosystem model LPJmL (version 5.0-tillage)

机译:模拟耕作实践与全球生态系统模型LPJML的影响(版本5.0耕作)

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The effects of tillage on soil properties, crop productivity, and global greenhouse gas emissions have been discussed in the last decades. Global ecosystem models have limited capacity to simulate the various effects of tillage. With respect to the decomposition of soil organic matter, they either assume a constant increase due to tillage or they ignore the effects of tillage. Hence, they do not allow for analysing the effects of tillage and cannot evaluate, for example, reduced tillage or no tillage (referred to here as “no-till”) practises as mitigation practices for climate change. In this paper, we describe the implementation of tillage-related practices in the global ecosystem model LPJmL. The extended model is evaluated against reported differences between tillage and no-till management on several soil properties. To this end, simulation results are compared with published meta-analyses on tillage effects. In general, the model is able to reproduce observed tillage effects on global, as well as regional, patterns of carbon and water fluxes. However, modelled N fluxes deviate from the literature values and need further study. The addition of the tillage module to LPJmL5 opens up opportunities to assess the impact of agricultural soil management practices under different scenarios with implications for agricultural productivity, carbon sequestration, greenhouse gas emissions, and other environmental indicators.
机译:过去几十年来讨论了耕作对土壤性质,作物生产力和全球温室气体排放的影响。全球生态系统模型能够模拟耕作的各种效果的容量有限。关于土壤有机物质的分解,它们要么承受由于耕作而持续增加,或者它们忽略了耕作的影响。因此,它们不允许分析耕作的影响,并且不能评估,例如减少耕作或没有耕作(此处称为“No-Till”)实践,作为气候变化的缓解实践。在本文中,我们描述了全球生态系统模型LPJML中的耕作相关实践的实施。在几种土壤特性上评估扩展模型的报告差异和耕作管理的差异。为此,将仿真结果与耕作效应的公开荟萃分析进行了比较。通常,该模型能够再现对全局的耕作效应,以及区域,碳和水通量的区域。然而,建模的N助焊剂偏离文献值并需要进一步研究。将耕作模块添加到LPJML5开辟了利用不同情景下评估农业土壤管理实践的影响的机会,为农业生产力,碳封存,温室气体排放和其他环境指标的影响。

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