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CHARACTERIZATION AND MOBILITY ENHANCEMENT OF IRON NANOPOWDERS SUSPENSIONS FOR GROUNDWATER REMEDIATION

机译:地下水修复铁纳米油悬浮液的特征和流动性提高

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In the context of groundwater remediation, the use of zero-valent metals has been shown promising for the degradation of a wide range of contaminants. In particular, granular iron filings in permeable reactive barriers (PRBs) are a consolidated technology applied on a number of sites. Nanoscale zerovalent iron is characterized by tiny particles (1-100 nm) and by a specific surface area that is up to a hundred times higher than millimetric iron, thus also its reactivity is much higher. These particles can be suspended into a slurry and injected directly into the source of contamination in order to treat a wide variety of contaminants and bypassing most of the limitation related to PRBs. However, very limited or no mobility of the nanoparticles has been shown in both laboratory studies and field-scale tests. In the present study, after a description of the characterization of a commercial NZVI, the stabilizing effects and mobility enhancements deriving from dosing of biodegradable hydrocolloids on nanoscale iron suspensions will be investigated.
机译:在地下水修复的背景下,已经表明使用零价金属的使用,以降解各种污染物。特别地,可渗透的反应屏障(PRB)中的颗粒状铁涂层是应用于许多位点的综合技术。纳米级Zerovalent Iron的特征在于微小的颗粒(1-100nm),并且通过比毫秒高的比表面积高于毫秒,因此其反应性高得多。这些颗粒可以悬浮到浆液中并直接注入污染源,以便治疗各种污染物并绕过与PRB相关的大部分限制。然而,在实验室研究和场尺度试验中已经显示了纳米颗粒的非常有限或纳米颗粒的迁移率。在本研究中,在描述商业NZVI的表征的描述之后,研究了从可生物降解的水胶体给药上的稳定效果和迁移率增强将进行纳米级铁悬浮液中的可生物降解的水胶体。

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