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双功能膜修复废水中六价铬的定量评估与优化。

Quantitative assessment and optimization of bi-functional membrane for remediation of Cr(VI) from wastewater.

机构信息

Chemical Engineering Department, Harcourt Butler Technical University, Nawabganj, Kanpur, UP, India E-mail:

Department of Chemical Engineering and Technology, Indian Institute of Technology (BHU) Varanasi, Varanasi, UP, India.

出版信息

Water Sci Technol. 2022 Oct;86(8):1991-2007. doi: 10.2166/wst.2022.319.

Abstract

This paper explores the innovative approach of using a green route synthesized cost-effective bi-functional to eliminate toxic hexavalent chromium commonly found in tannery wastewater by using an integrated application of membrane and photocatalyst. Contaminated wastewater is firstly passed through bi-functional ultrafiltration membranes to retain hexavalent chromium and further reducing the toxicity of rejected water having high concentrations of Cr(VI) by photocatalytic reduction into Cr(III) in the presence of sunlight using the same membrane as photocatalyst film. Conditions governing the separation process such as solution pH, nanoparticle loading in polymer matrix, and concentration of Cr(VI) have been optimized to maximize the % rejection and photocatalytic reduction to Cr(III). The purpose of this work was to optimize the process condition through the use of the response surface method (RSM) that governs the process. RSM analysis concludes that excellent rejection of 91.58% and reduction of 87.02% is possible at the predicted pH (5.55), particle loading (2.14%) and Cr(VI) concentration (25 mg/L).

摘要

本论文探讨了一种创新方法,即使用绿色路线合成具有成本效益的双功能催化剂,通过膜和光催化剂的综合应用来去除制革废水中常见的有毒六价铬。将受污染的废水首先通过双功能超滤膜来保留六价铬,并进一步减少废水中高浓度 Cr(VI)的毒性,在阳光存在下,使用相同的膜作为光催化剂膜,通过光催化还原将其转化为 Cr(III)。优化了分离过程的条件,如溶液 pH 值、聚合物基质中的纳米颗粒负载量和 Cr(VI)的浓度,以最大程度地提高 % 去除率和光催化还原为 Cr(III)的效率。这项工作的目的是通过使用响应面法 (RSM) 来优化工艺条件,该方法可以控制整个过程。RSM 分析得出,在预测的 pH 值(5.55)、颗粒负载量(2.14%)和 Cr(VI)浓度(25mg/L)下,可以实现 91.58%的优异去除率和 87.02%的还原率。

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