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首页> 外文期刊>Marine & freshwater research >Climate-driven mobilisation of acid and metals from acid sulfate soils
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Climate-driven mobilisation of acid and metals from acid sulfate soils

机译:气候驱动的硫酸盐土壤中的酸和金属的动员

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摘要

The recent drought in south-eastern Australia has exposed to air, large areas of acid sulfate soils within the River Murray system. Oxidation of these soils has the potential to release acidity, nutrients and metals. The present study investigated the mobilisation of these substances following the rewetting of dried soils with River Murray water. Trace metal concentrations were at background levels in most soils. During 24-h mobilisation tests, the water pH was effectively buffered to the pH of the soil. The release of nutrients was low. Metal release was rapid and the dissolved concentrations of many metals exceeded the Australian water quality guidelines (WQGs) in most tests. The concentrations of dissolved Al, Cu and Zn were often greater than 100× the WQGs and strong relationships existed between dissolved metal release and soil pH. Attenuation of dissolved metal concentrations through co-precipitation and adsorption to Al and Fe precipitates was an important process during mixing of acidic, metal-rich waters with River Murray water. The study demonstrated that the rewetting of dried acid sulfate soils may release significant quantities of metals and a high level of land and water management is required to counter the effects of such climate change events.
机译:澳大利亚东南部最近的干旱使墨累河系统中的空气暴露于大面积的酸性硫酸盐土壤中。这些土壤的氧化具有释放酸度,养分和金属的潜力。本研究调查了用河墨瑞河水对干土壤重新润湿后这些物质的动员。在大多数土壤中,痕量金属的浓度处于背景水平。在24小时的动员测试中,水的pH值可以有效地缓冲到土壤的pH值。营养物质的释放很低。金属释放迅速,并且在大多数测试中,许多金属的溶解浓度均超过了澳大利亚水质准则(WQG)。溶解的铝,铜和锌的浓度通常大于WQG的100倍,并且溶解的金属释放与土壤pH值之间存在很强的关系。通过共沉淀和吸附到Al和Fe沉淀物中来降低溶解的金属浓度是在酸性,富含金属的水与Murray河水混合过程中的一个重要过程。该研究表明,干燥的酸性硫酸盐土壤重新湿润可能释放出大量金属,并且需要高水平的土地和水管理来应对这种气候变化事件的影响。

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