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Delivery and activation of nano-iron by DC electric field

机译:直流电场输送和活化纳米铁

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This study demonstrates that by integrating electrokinetics with nanotechnology, the transport of nano-particles can be electrokinet-ically enhanced for subsurface remediation of tight clay soils where transport time and process efficiency may be an issue. Polymer coated dispersed nano-iron developed at Lehigh University, were used in the experiments reported here. The particles possessed positive zeta-potential below pH 8.3 and remained suspended in solution rather than settling or agglomerating over time as it may occur with bare nano-iron. The injection of nano-iron particles in the lab tests showed a positive shift in the oxidation-reduction potential (ORP) where the effectiveness of nano-iron as an environmental catalyst was demonstrated. The presence of nano-iron and applied electric field together pushed the system ORP to higher positive values than the electrokinetic effects or nano-iron alone. The diffusion of nano-iron without the electrical field showed no activation of the iron, as indicated by little or no change in the ORP. These results showed that nano-iron was both transported and activated by the applied electrical field. The enhanced reaction was analyzed in terms of possible Faradaic processes in clay diffuse double layer, DDL, in presence of electric field.
机译:这项研究表明,通过将电动学与纳米技术相结合,可以电动方式增强纳米颗粒的运输,以解决在黏土中的地下修复问题,因为运输时间和工艺效率可能是一个问题。 Lehigh大学开发的聚合物涂覆的分散纳米铁被用于此处报道的实验中。颗粒在低于pH 8.3时具有正的zeta电位,并保持悬浮在溶液中,而不是随着时间的流逝而沉降或结块,因为使用裸露的纳米铁可能会发生。在实验室测试中注入纳米铁粒子显示出氧化还原电位(ORP)的正向变化,其中证明了纳米铁作为环境催化剂的有效性。纳米铁的存在和施加的电场共同推动系统ORP达到比电动势或单独使用纳米铁更高的正值。纳米铁在没有电场的情况下的扩散没有显示出铁的活化,如ORP几乎没有变化。这些结果表明,纳米铁被所施加的电场既传输又被激活。根据存在电场的情况下在粘土扩散双层DDL中可能的法拉第过程对增强的反应进行了分析。

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