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Immobilization of Zn and Pb in Polluted Soil by In Situ Crystallization Zeolites from Fly Ash

机译:粉煤灰原位结晶沸石固定锌和铅在污染土壤中的作用

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In the last few years, a great deal of research on soil has been carried out in order to develop a low-cost remediation method for reducing the environmental risks due to the pollution caused by heavy metals. In the light of this, the zeolitization achieved in soils mixed with coal fly ash could be a useful answer to reduce the amount and the mobility of metals in polluted areas. In this study, a selected soil treated with coal fly ash and artificially contaminated with Zn or Pb was used to synthesize zeolite at low temperature in laboratory and on a bench-scale experiments. Mineralogical data showed that the synthesis of zeolite X took place readily after the first month, and the amount of the newly formed mineral increased during the entire 1-year-long incubation period. The presence of toxic elements does not interfere with zeolite crystallization, whereas the chemical analysis indicated that a reduction in heavy metal availability takes place in the samples characterized by the presence of zeolite.
机译:在过去的几年中,已经进行了大量的土壤研究,以便开发出一种低成本的修复方法,以减少由于重金属引起的环境风险。有鉴于此,在与粉煤灰混合的土壤中实现的沸石化可能是减少污染区中金属的含量和迁移率的有用方法。在这项研究中,用粉煤灰处理过的人工污染了Zn或Pb的土壤被选为实验室和实验室规模的低温合成沸石。矿物学数据表明,沸石X的合成在第一个月后就很容易进行,并且在整个1年的潜伏期中,新形成的矿物的数量均增加了。有毒元素的存在不会干扰沸石的结晶,而化学分析表明,以沸石的存在为特征的样品中重金属的利用率会降低。

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