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全球土壤紧实和水蚀导致的农业生产力损失评估。

Global Assessment of Agricultural Productivity Losses from Soil Compaction and Water Erosion.

机构信息

Chair of Ecological Systems Design, Institute of Environmental Engineering, ETH Zurich, John-von-Neumann-Weg 9, 8093 Zurich, Switzerland.

出版信息

Environ Sci Technol. 2021 Sep 21;55(18):12162-12171. doi: 10.1021/acs.est.1c03774. Epub 2021 Aug 31.

Abstract

To guide us toward a sustainable future, the impacts of human activities on natural resources need to be understood and quantified. In this study on global agriculture, we use a Life Cycle Assessment framework to estimate potential long-term soil productivity losses caused by soil compaction and water erosion due to agricultural crop production. We combine several data sets to model spatially resolved Life Cycle Inventory information at the global level and multiply results with characterization factors from a previous publication. The global picture shows a compaction-stressed "Global North" and an erosion-stressed "Global South", with some countries and regions in between, for example, China and parts of South America. Results show that both compaction and water erosion impacts matter at the global level and that overall potential long-term productivity losses of 10-20% can be expected, with high relative impacts on low input production systems. These losses might limit long-term agricultural productivity and lead to additional land use change. Our work adds to and extends the discussion of global assessments of soil degradation. Furthermore, we prove the suggested framework to be applicable and useful for Life Cycle Assessments and other studies and provide results that can be used in such global assessments.

摘要

为了引导我们走向可持续的未来,需要了解和量化人类活动对自然资源的影响。在这项关于全球农业的研究中,我们使用生命周期评估框架来估计由于农业作物生产导致的土壤压实和水蚀对潜在长期土壤生产力的损失。我们结合了多个数据集,在全球范围内对空间分辨的生命周期清单信息进行建模,并将结果与之前出版物中的特征化因子相乘。全球情况显示,“全球北方”受到压实的压力,“全球南方”受到侵蚀的压力,而介于两者之间的一些国家和地区,例如中国和南美洲的部分地区,情况则更为复杂。研究结果表明,在全球范围内,压实和水蚀的影响都很重要,预计整体潜在的长期生产力损失可达 10-20%,对低投入生产系统的相对影响较大。这些损失可能会限制长期的农业生产力,并导致土地利用的进一步变化。我们的工作增加并扩展了对全球土壤退化评估的讨论。此外,我们证明了所提出的框架对于生命周期评估和其他研究是适用和有用的,并提供了可用于此类全球评估的结果。

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