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首页> 外文期刊>Waste Management >Application of computer modelling to predict the leaching behaviour of heavy metals from MSWl fly ash and comparison with a sequential extraction method
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Application of computer modelling to predict the leaching behaviour of heavy metals from MSWl fly ash and comparison with a sequential extraction method

机译:应用计算机建模预测MSWl粉煤灰中重金属的浸出行为并与顺序萃取法进行比较

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摘要

Combustion residues in general and MSWI fly ashes in particular form a major environmental problem as they are polluted with heavy metals. The heavy metals can be removed from the fly ash by leaching with e.g. the acid wastewater obtained in the wet scrubber of the air pollution control system. The remaining fly ash can be landfilled or valorized e.g., a construction material. An understanding of the leaching reactions and of the factors that influence leaching is very important for the treatment of fly ash. Therefore, the composition of the fly ash was determined and the influence of pH was examined. In this paper, the results of experimental leaching tests of fly ash are compared with computer calculations of the thermodynamic equilibrium of the leaching solution-fly ash system. The computer program MINTEQA2, used for this purpose, allows to predict the metal concentrations in the leaching solution, the minerals that precipitate, and the pH of the leaching solution at equilibrium. Also a sequential extraction procedure was performed on the fly ash. The procedure can be used to investigate which leaching conditions are necessary to obtain a good extraction of the heavy metals. Comparison of the experimental and calculated leaching data with the results from the sequential extraction procedure allowed verifying the accuracy of the sequential extraction procedure.
机译:燃烧残渣和特别是MSWI飞灰特别是一个严重的环境问题,因为它们被重金属污染。重金属可以通过例如用浸提法从飞灰中除去。在空气污染控制系统的湿式洗涤器中获得的酸性废水。剩余的粉煤灰可以填埋或增值,例如建筑材料。了解沥滤反应和影响沥滤的因素对于粉煤灰的处理非常重要。因此,确定了粉煤灰的组成并检查了pH的影响。本文将粉煤灰的浸出试验结果与计算机计算的浸出液-粉煤灰系统的热力学平衡进行了比较。用于此目的的计算机程序MINTEQA2允许预测浸出溶液中的金属浓度,沉淀的矿物质以及浸出溶液的pH处于平衡状态。还对粉煤灰进行了顺序提取程序。该程序可用于研究为获得良好的重金属提取率而必需的浸提条件。将实验和计算的浸出数据与顺序提取程序的结果进行比较,可以验证顺序提取程序的准确性。

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