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首页> 外文期刊>Journal of environmental monitoring: JEM >Reduction of hexavalent chromium mediated by micron- and nano-scale zero-valent metallic particles
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Reduction of hexavalent chromium mediated by micron- and nano-scale zero-valent metallic particles

机译:微米级和纳米级零价金属颗粒介导的六价铬还原

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摘要

A variety of zero-valent metals (Al~0, Cu~0, Fe ~0, Mg~0, Ni~0, Si~0 and Zn ~0), and Cu~0 and Fe~0 nano-sized particles were evaluated for reactivity towards the reduction of Cr(VI) in a surfactant preparation (Tween~? 20) under a selection of reaction conditions. At circum neutral pHs, a rapid inactivation of the surface was observed for almost all of the tested metals and complete reduction of Cr(VI) was achieved at acidic pH only by using Cu~0, Fe~0, Mg~0 or Zn~0. A considerable increase in reactivity (up to 100-fold) was observed for reductive remediation with nano-sized particles. The use of a solid support as a dispersant and stabilizer circumvented the tendency of freshly prepared nano-particles to either react with surrounding media or agglomerate, resulting in the formation of much larger flocs and appreciable loss in reactivity. The formation of clusters by polymeric structures provided an extra protection of the nano-particle surface with a striking improvement in their reactivity mainly at more alkaline conditions. Therefore the incorporation of an innocuous stabilizer can substantially enhance the stability of nano-particles for environmental transformations.
机译:各种零价金属(Al〜0,Cu〜0,Fe〜0,Mg〜0,Ni〜0,Si〜0和Zn〜0),以及Cu〜0和Fe〜0纳米颗粒在选择的反应条件下,评价了对表面活性剂制剂(Tween〜20)中Cr(VI)还原的反应性。在环境中性pH值下,几乎所有被测金属均能观察到表面的快速失活,并且仅通过使用Cu〜0,Fe〜0,Mg〜0或Zn〜就可以在酸性pH下完全还原Cr(VI) 0。对于纳米颗粒的还原性修复,观察到反应性显着提高(最高100倍)。固体载体作为分散剂和稳定剂的使用避免了新鲜制备的纳米颗粒与周围介质或附聚物反应的趋势,导致形成了更大的絮凝物和明显的反应性损失。由聚合物结构形成的团簇主要在更碱性的条件下提供了对纳米颗粒表面的额外保护,并显着提高了它们的反应性。因此,无害稳定剂的掺入可以大大增强用于环境转化的纳米颗粒的稳定性。

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