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In situ remediation technologies for mercury-contaminated soil

机译:汞污染土壤的原位修复技术

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Mercury from anthropogenic activities is a pollutant that poses significant risks to humans and the environment. In soils, mercury remediation can be technically challenging and costly, depending on the subsurface mercury distribution, the types of mercury species, and the regulatory requirements. This paper introduces the chemistry of mercury and its implications for in situ mercury remediation, which is followed by a detailed discussion of several in situ Hg remediation technologies in terms of applicability, cost, advantages, and disadvantages. The effect of Hg speciation on remediation performance, as well as Hg transformation during different remediation processes, was detailed. Thermal desorption, electrokinetic, and soil flushing/washing treatments are removal technologies that mobilize and capture insoluble Hg species, while containment, solidification/stabilization, and vitrification immobilize Hg by converting it to less soluble forms. Two emerging technologies, phytoremediation and nanotechnology, are also discussed in this review.
机译:人为活动产生的汞是一种污染物,对人类和环境构成重大风险。在土壤中,汞的修复在技术上具有挑战性且成本高昂,具体取决于地下汞的分布,汞种类的类型和法规要求。本文介绍了汞的化学性质及其对原位汞修复的影响,然后从适用性,成本,优点和缺点方面详细讨论了几种原位汞修复技术。详细介绍了汞形态对修复性能以及不同修复过程中汞转化的影响。热脱附,电动和土壤冲洗/冲洗处理是去除技术,可移动和捕获不溶性汞,而围堵,固化/稳定化和玻璃化可通过将汞转化为难溶性形式来使其固定化。本文还讨论了两种新兴技术,即植物修复技术和纳米技术。

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