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首页> 外文期刊>Japanese Geotechnical Journal >複合リサイクル材料による六価クロム?カドミウム?鉛の不溶化
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複合リサイクル材料による六価クロム?カドミウム?鉛の不溶化

机译:复合回收材料使六价铬,镉和铅不溶

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The authors investigated a composite recycling material in which coal ash and blast furnace slag are blended so that the amount of ettringite produced is chemically equivalent to bassanite produced from waste gypsum board in the past study, and the material it is clarified that the ettringite formed in this is extremely effective for insolubilization of fluorine derived from bassanite. In this study, specimens were prepared by adding simulated contaminated water adjusted to an arbitrary concentration by dissolving heavy metal compounds such as hexavalent chromium, cadmium, lead in distilled water to the composite recycled material. We examined the relation between the curing time and elution concentration of these heavy metals and demonstrated the effectiveness of the geotechnical engineering on the insolubilization of heavy metals of composite recycled materials.
机译:作者研究了一种混合回收材料,其中掺入了煤灰和高炉矿渣,从而使钙矾石的产生量在化学上与过去的废石膏板中产生的重钙铝石化学相当,并且澄清了这种钙钛矿的形成过程。这对于使重钙铝石衍生的氟不溶非常有效。在这项研究中,通过将重金属化合物(如六价铬,镉,铅)溶解在蒸馏水中的模拟污染水添加到复合回收材料中,来制备标本,以将其调节至任意浓度。我们研究了固化时间与这些重金属的洗脱浓度之间的关系,并论证了岩土工程对复合再生材料中重金属不溶化的有效性。

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