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评估生命周期评估中自然资源土壤的影响:压实和水蚀的方法。

Assessing Impacts on the Natural Resource Soil in Life Cycle Assessment: Methods for 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. 2020 Jun 2;54(11):6496-6507. doi: 10.1021/acs.est.0c01553. Epub 2020 May 15.

Abstract

There are currently limited life cycle impact assessment methods existing for assessing impacts on the natural resource soil. In this paper, we develop methods for the assessment of compaction and water erosion impacts within one framework, which can be expanded with additional degradation processes in the future. Our methods assess potential long-term impacts from agricultural activities on the production capacity of soils and are able to distinguish between different management choices such as machinery selection and tillage practices. Characterization factors are provided as global raster data sets at high spatial resolution (∼1 km) and for larger geographic units including uncertainties of spatial aggregation. Uncertainties due to variability of climate and weather are provided where possible. The application of the methods is demonstrated and discussed in a simplified case study. Results show that in a highly mechanized scenario of global agriculture without any conservation measures, long-term yearly soil productivity losses due to compaction and water erosion can amount to up to double-digit percentages for major crops. This confirms the relevance of compaction and water erosion impacts for agricultural LCAs.

摘要

目前,用于评估自然资源土壤影响的生命周期影响评估方法有限。在本文中,我们开发了一种在一个框架内评估土壤紧实度和水蚀影响的方法,该方法将来可以扩展到更多的退化过程。我们的方法评估了农业活动对土壤生产力的潜在长期影响,并能够区分不同的管理选择,如机械选择和耕作实践。特征化因子以高空间分辨率(约 1 公里)的全球栅格数据集的形式提供,并为包括空间聚集不确定性在内的较大地理区域提供。在可能的情况下,还提供了由于气候和天气变化而产生的不确定性。该方法的应用在简化的案例研究中进行了演示和讨论。结果表明,在没有任何保护措施的全球农业高度机械化情景下,由于土壤紧实和水蚀造成的主要作物长期每年土壤生产力损失可能高达两位数。这证实了土壤紧实和水蚀对农业生命周期评价的重要性。

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