首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Sepiolite-Based Adsorbents for the Removal of Potentially Toxic Elements from Water: A Strategic Review for the Case of Environmental Contamination in Hunan China
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Sepiolite-Based Adsorbents for the Removal of Potentially Toxic Elements from Water: A Strategic Review for the Case of Environmental Contamination in Hunan China

机译:基于海泡石的吸附剂去除水中潜在的有毒元素:湖南省环境污染案例的战略回顾

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摘要

The last few decades have seen rapid industrialization and urban development in many regions globally; with associated pollution by potentially toxic elements; which have become a threat to human health and the food chain. This is particularly prevalent in a number of regions in China that host multiple mineral resources and are important agricultural locations. Solutions to protect contamination of the food chain are more effective and sustainable if locally sourced materials are available; and in this context; we review the potential of local (sepiolite) mineral deposits to treat water contamination in the Hunan Municipality; central south China; widely recognized for significant environmental pollution issues (particularly by Hg; Cd; Pb; and Cr) and the high agricultural productivity of the region. Sepiolite is an abundant fibrous clay mineral with modest to good adsorption properties and extensive industrial process applications. It shows reasonable performance as an adsorbent for element removal. In addition; a number of surface modification strategies are available that improve this capability. We review these studies; focused on sorption reaction mechanisms and regeneration potential; with a view to present options for a localized and effective economic strategy for future application.
机译:在过去的几十年中,全球许多地区的工业化和城市发展迅速。并伴有潜在有毒元素的污染;这些已经威胁到人类健康和食物链。在中国许多拥有多种矿产资源并且是重要农业地点的地区中,这一点尤其普遍。如果有当地来源的材料,保护食物链污染的解决方案将更加有效和可持续;在这方面;我们回顾了湖南市当地(海泡石)矿床处理水污染的潜力;中国中南部因重大环境污染问题(尤其是汞,镉,铅和铬)和该地区农业生产率高而得到广泛认可。海泡石是一种丰富的纤维状粘土矿物,具有中等至良好的吸附性能以及广泛的工业过程应用。它显示出合理的性能,可作为元素去除的吸附剂。此外;可以使用多种表面改性策略来改善此功能。我们回顾这些研究;着重于吸附反应机理和再生潜力;以便为未来应用提供本地化有效的经济战略选择方案。

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