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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Discharge of weathering products from acid sulfate soils after a rainfall event, Tweed River, eastern Australia
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Discharge of weathering products from acid sulfate soils after a rainfall event, Tweed River, eastern Australia

机译:降雨事件后,从酸性硫酸盐土壤中排放风化产物,澳大利亚东部特威德河

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The oxidation of the iron sulfide, pyrite, in acid sulfate soil floodplains generate substantial acidity and this acid has caused further weathering of the soil profile. The movement of groundwater from these soils is an important geochemical control on surface water quality. The flux of acidified and metal-rich water during a wet season rainfall event has been examined at two study catchments on the Tweed River in eastern Australia. At the sites, 81 kg/ha and 60 kg/ha of oxidisable acidity are exported, along with At, Fe and Zn during the flood event. The main contributors to the acid flux are H+, Fe and Al at the first site and whilst Fe and Al are present in the drainage waters at the second site, the main contributor is likely to be H+. The different flux characteristics at the sites may be caused by different surface soil hydraulic conductivities and oxidation history. Crown Copyright (c) 2007 Published by Elsevier Ltd. All rights reserved.
机译:酸性硫酸盐土壤洪泛区中硫化铁,黄铁矿的氧化产生大量的酸度,这种酸已使土壤剖面进一步风化。这些土壤中地下水的流动是对地表水质量的重要地球化学控制。在澳大利亚东部特威德河的两个研究集水区,对雨季降雨期间酸化和富含金属的水通量进行了研究。在洪水发生期间,这些地点将输出81 kg / ha和60 kg / ha的可氧化酸度,以及At,Fe和Zn。导致酸通量的主要因素是第一地点的H +,Fe和Al,而第二地点的排水中存在Fe和Al,但主要因素可能是H +。场地上不同的通量特性可能是由不同的表层土壤水力传导率和氧化历史引起的。 Crown版权所有(c)2007,由Elsevier Ltd.发行。保留所有权利。

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