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Reactivity Characteristics of Nanoscale Zerovalent Iron-Silica Composites for Trichloroethylene Remediation

机译:纳米级零价铁硅复合材料的三氯乙烯修复反应活性

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Spherical silica particles containing nanoscale zerovalent iron were synthesized through an aerosol-assisted process. These particles are effective for groundwater remediation, with the environmentally benign silica particles serving as effective carriers for nanoiron transport. Incorporation of iron into porous sub-micrometer silica particles protects ferromagnetic iron nanoparticles from aggregation and may increase their subsurface mobility. Additionally, the presence of surface silanol groups on silica particles allows control of surface properties via silanol modification using organic functional groups. Aerosolized silica particles with functional alkyl moieties, such as ethyl groups on the surface, clearly adsorb solubilized trichloroethylene (TCE) in water. These materials may therefore act as adsorbents which have coupled reactivity characteristics. The nanoscale iron/silica composite particles with controlled surface properties have the potential to be efficiently applied for in situ source depletion and in the design of permeable reactive barriers.
机译:通过气溶胶辅助工艺合成了含有纳米级零价铁的球形二氧化硅颗粒。这些颗粒对地下水修复有效,而对环境无害的二氧化硅颗粒可作为有效的载体进行纳米铁的运输。将铁掺入多孔的亚微米级二氧化硅颗粒中可保护铁磁性铁纳米颗粒免于聚集,并可增加其表面下的迁移率。另外,二氧化硅颗粒上表面硅烷醇基的存在允许通过使用有机官能团的硅烷醇改性来控制表面性质。具有功能性烷基部分(例如表面上的乙基)的气雾化二氧化硅颗粒明显吸附了水中的可溶性三氯乙烯(TCE)。因此,这些材料可以充当具有偶合反应性特征的吸附剂。具有受控表面性质的纳米级铁/二氧化硅复合颗粒具有被有效地用于原位源耗尽和可渗透反应性势垒设计的潜力。

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