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土壤中锌的归宿:人为影响、土壤形成和土壤-植物循环的稳定同位素研究方法。

The Fate of Zn in Agricultural Soils: A Stable Isotope Approach to Anthropogenic Impact, Soil Formation, and Soil-Plant Cycling.

机构信息

Institute of Geography , University of Bern , Hallerstrasse 12 , 3012 Bern , Switzerland.

Institute of Agricultural Sciences , ETH Zurich , Eschikon 33 , 8315 Lindau , Switzerland.

出版信息

Environ Sci Technol. 2019 Apr 16;53(8):4140-4149. doi: 10.1021/acs.est.8b03675. Epub 2019 Apr 5.

Abstract

The supplementation of Zn to farm animal feed and the excretion via manure leads to an unintended Zn input to agricultural systems, which might compromise the long-term soil fertility. The Zn fluxes at three grassland sites in Switzerland were determined by a detailed analysis of relevant inputs (atmospheric deposition, manure, weathering) and outputs (seepage water, biomass harvest) during one hydrological year. The most important Zn input occurred through animal manure (1076-1857 g ha yr) and Zn mass balances revealed net Zn accumulations (456-1478 g ha yr). We used Zn stable isotopes to assess the importance of anthropogenic impacts and natural long-term processes on the Zn distribution in soils. Soil-plant cycling and parent material weathering were identified as the most important processes, over the entire period of soil formation (13 700 years), whereas the soil pH strongly affected the direction of Zn isotopic fractionation. Recent anthropogenic inputs of Zn only had a smaller influence compared to the natural processes of the past 13 700 years. However, this will probably change in the future, as Zn stocks in the 0-20 cm layer will increase by 22-68% in the next 100 years, if Zn inputs remain on the same level as today.

摘要

向动物饲料中添加锌以及通过粪便排泄,会导致农业系统中出现非预期的锌输入,从而可能影响土壤的长期肥力。本研究通过详细分析一个水文年内相关的输入(大气沉降、粪便、风化)和输出(渗漏水、生物量收获),确定了瑞士三个草地地点的锌通量。最重要的锌输入来自动物粪便(1076-1857 g ha yr),锌收支平衡显示净锌积累(456-1478 g ha yr)。我们使用锌稳定同位素来评估人为影响和自然长期过程对土壤中锌分布的重要性。在整个土壤形成时期(13700 年),土壤-植物循环和母质风化被确定为最重要的过程,而土壤 pH 值强烈影响锌同位素分馏的方向。与过去 13700 年的自然过程相比,最近人为输入的锌的影响较小。然而,如果未来锌的输入保持在当前水平,那么在未来 100 年内,0-20cm 土层中的锌储量将增加 22-68%,这种情况可能会发生变化。

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