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首页> 外文期刊>Separation and Purification Technology >Fabrication of dynamic zero-valent iron/MnO2 nanowire membrane for efficient and recyclable selenium separation
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Fabrication of dynamic zero-valent iron/MnO2 nanowire membrane for efficient and recyclable selenium separation

机译:动态零价铁/ MNO2纳米线膜的制备高效和可回收硒分离

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摘要

Controllable selenium separation processes are essential from the viewpoint of human health, electronics industry and environmental protection due to the vital role of selenium in the human body and photovoltaic devices, and the adverse impacts emanating from selenium pollution in surface and groundwater by the highly toxic and high lethal at higher selenium concentrations. Herein, a dynamic zero-valent iron/MnO2 nanowire hybrid membranes (ZVINM) with high chemical activity and excellent recoverability have been developed based on in situ chemical deposition nanoscale zero-valent iron (NZVI) on the surface of ultralong MnO2 nanowires to self-assemble into to hybrid membrane, and the applicability of this hybrid membrane for selenium separation was evaluated. To investigate the retention efficiency, the selenium separation behavior on ZVINM was examined by various separation conditions such as operating pressures, selenium concentrations and NZVI content, solution pH, interfering ions and penetration times. The as-prepared ZVINM shows excellent separation performance with the maximum retention efficiency of 95%. The appropriate selenium separation on ZVINM was obtained at an acidic pH range of 2-6 with a high separation efficiency (over 85%), and the rejection rate was decreased by increasing solution pH, indicating that the selenium separation process was promoted under strong acid conditions and inhibited under strong alkali environment. In addition, it was found that the carbonate ions and higher selenium concentration have a strong inhibitory effect on selenium separation. More importantly, the ZVINM is demonstrated to have excellent selenium recoverability and regenerative because of its dynamic coating characteristics. Therefore, the high selenium retention efficiency and excellent recycling capabilities of ZVINM make the hybrid membrane as a potential candidate for practical application in selenium separation.
机译:从人体健康,电子工业和环境保护的角度来看,可控硒分离过程是必不可少的,因为硒在人体和光伏器件中的重要作用,以及通过高毒性和地下水从表面和地下水中发出的不利影响高致命浓度高致命浓度。在此,基于在超龙MNO2纳米线的表面上的原位化学沉积纳米级零价铁(NZVI)开发了具有高化学活性和优异的可回收性的动态零级铁/ mnO2纳米线杂交膜(Zvinm)。组装成杂化膜,并评估该杂化膜的适用性进行硒分离。为了研究保持效率,通过各种分离条件,例如操作压力,硒浓度和NZVI含量,溶液pH,干扰离子和渗透时间来检查ZvinM上的硒分离行为。制备的Zvinm显示出优异的分离性能,最大保持效率为95%。在2-6的酸性pH范围内获得ZvinM上的适当硒分离,具有高分离效率(超过85%),通过增加溶液pH降低抑制率,表明在强酸下促进了硒分离过程在强碱环境下的病症和抑制。此外,发现碳酸盐离子和更高的硒浓度对硒分离具有很强的抑制作用。更重要的是,ZvinM被证明是由于其动态涂层特性,具有优异的硒可回收性和再生性。因此,Zvinm的高硒保持效率和优异的再循环能力使杂化膜作为硒分离实际应用的潜在候选者。

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