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Remediating Polluted Soils Using Nanotechnologies: Environmental Benefits and Risks

机译:使用纳米技术修复污染的土壤:环境效益和风险

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Since engineering nanoparticles (ENP) have been developed for using in industry and human commodities, is common to find their wastes and by-products from industrial chemical reactions, and it is also possible to find incidental nanoparticles in the environment. Currently, the remediation of polluted soils using nanotechnologies has become an emerging area with a huge potential to improve the performance of traditional remediation technologies. However, environmental concerns have also emerged regarding human and environmental health when nanotechnologies are released to ecosystems. The goal of this manuscript is to highlight the environmental benefits and risks that arise when nanotechnologies are used to remediate polluted soils. We searched Web of Science and Scopus in order to get latest updated information and patents pertaining to developments in the field of nanotechnologies for decontaminating soils. It has been determined that soil nanoremediation has some advantages, but it also has some disadvantages related to the final disposal of nanoparticles, nanomaterials, or nanodevices. Will some nanotechnologies be our pitfall? Nanoparticle toxicity has to be assessed and the standardization of techniques should be set by scientists and decision-makers worldwide. Cutting-edge knowledge regarding the use of nanoparticles to decontaminate soils has to move forward, but environmental quality, human health, and social welfare should also be ensured.
机译:由于已经开发出工程纳米颗粒(ENP)用于工业和人类商品,因此很常见的是从工业化学反应中发现它们的废物和副产品,并且还可能在环境中发现附带的纳米颗粒。当前,使用纳米技术修复污染土壤已成为新兴领域,具有改善传统修复技术性能的巨大潜力。然而,当纳米技术被释放到生态系统中时,关于人类和环境健康的环境问题也出现了。该手稿的目的是强调使用纳米技术修复污染土壤时所产生的环境效益和风险。我们搜索了Web of Science和Scopus,以获得有关净化土壤的纳米技术领域的最新信息和专利。已经确定,土壤纳米修复具有一些优点,但是也具有与纳米颗粒,纳米材料或纳米装置的最终处置有关的一些缺点。某些纳米技术会成为我们的陷阱吗?纳米粒子的毒性必须进行评估,技术的标准化应该由全球的科学家和决策者来制定。关于使用纳米颗粒对土壤进行净化的前沿知识必须向前发展,但也应确保环境质量,人类健康和社会福利。

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