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Method for the removal of heavy metals from aqueous solution by means of silica as an adsorbent in counter-flow selective dialysis

机译:在逆流选择性透析中借助于二氧化硅作为吸附剂从水溶液中去除重金属的方法

摘要

The process of heavy metals removal from the waste water using silica dispersion without mixing silica dispersion with the waste water. This is achieved due to the membrane device where silica dispersion and waste water stream are separated by membrane with pore sizes smaller that size of the silica particles. The process is organized as counter-flow, which means that silica dispersion and waste water flow in the opposite directions. This provides the maximum utilization of the adsorption capacity corresponding to the adsorbent being in equilibrium with the high initial concentration of the contaminant in distinction from the low utilization when adsorbent works in equilibrium with the low output concentration. In the particular instance the membrane device comprises a lumen of a bundle of hollow fibers with silica dispersion flowing either inside or outside of the fibers and wastewater flowing on the opposite side of the fiber membrane. This process eliminates step of separating silica from the wastewater. It opens way to use colloidal silica as adsorbent with highly developed surface area. Continuous monitoring of the silica particles zeta potential yields information for preventing colloidal silica solidification within the device. Solidification of the colloidal silica afterwards solves problem of untreated residual discharge.
机译:使用二氧化硅分散体从废水中去除重金属的过程,无需将二氧化硅分散体与废水混合。这是由于通过膜装置实现的,在该装置中,二氧化硅分散液和废水流被孔径小于二氧化硅颗粒尺寸的膜分离。该过程组织为逆流,这意味着二氧化硅分散液和废水沿相反的方向流动。与当吸附剂在低输出浓度下平衡工作时的低利用率不同,这提供了与吸附剂在高污染物初始浓度下处于平衡的吸附能力的最大利用。在特定情况下,膜装置包括一束中空纤维的管腔,其中二氧化硅分散液在纤维的内部或外部流动,废水在纤维膜的相反侧流动。该过程消除了从废水中分离二氧化硅的步骤。它为使用胶态二氧化硅作为具有高表面积的吸附剂开辟了道路。连续监测二氧化硅颗粒的Zeta电位会产生信息,以防止设备中的胶体二氧化硅固化。之后,胶体二氧化硅的固化解决了未处理的残留放电的问题。

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