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Cumulative metal leaching from utilisation of secondary building materials in river engineering

机译:在河流工程中利用二次建材进行的累积金属浸出。

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The present paper estimates the utilisation of bulky wastes (minestone, steel slag, phosphorus slag and demolition waste) in hydraulic engineering structures in Dutch parts of the rivers Rhine, Meuse and Scheldt over the period 1980-2025. Although they offer several economic, technical and environmental benefits, these secondary building materials contain various metals that may leach into river water. A leaching model was used to predict annual emissions of arsenic, cadmium, copper, chromium, lead, mercury, nickel and zinc. Under the current utilisation and model assumptions, the contribution of secondary building materials to metal pollution in Dutch surface waters is expected to be relatively low compared to other sources (less than 0.1% and 0.2% in the years 2000 and 2025, respectively). However, continued and widespread large-scale applications of secondary building materials will increase pollutant leaching and may require further cuts to be made in emissions from other sources to meet emission reduction targets and water quality standards. It is recommended to validate available leaching models under various field conditions. Complete registration of secondary building materials will be required to improve input data for leaching models. [References: 26]
机译:本文估计了1980年至2025年期间莱茵河,默兹河和谢尔德河的荷兰部分水利工程结构中的大块废物(矿石,钢渣,磷渣和拆除废物)的利用。这些辅助建筑材料虽然具有多种经济,技术和环境效益,但它们所含的各种金属可能会浸入河水中。浸出模型用于预测砷,镉,铜,铬,铅,汞,镍和锌的年排放量。根据目前的利用率和模型假设,与其他来源相比,二手建筑材料对荷兰地表水中金属污染的贡献预计相对较低(2000年和2025年分别不到0.1%和0.2%)。但是,二次建材的持续和广泛大规模应用将增加污染物的淋滤,并可能需要进一步削减其他来源的排放量,以达到减排目标和水质标准。建议在各种现场条件下验证可用的浸出模型。二级建筑材料的完整注册将需要以改进浸出模型的输入数据。 [参考:26]

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