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用电化学方法通过 Fe/Al 复合水凝胶电极去除茜素红 S 用于电絮凝处理新型废水。

Electrolytic removal of alizarin red S by Fe/Al composite hydrogel electrode for electrocoagulation toward a new wastewater treatment.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes, School of Environmental and Chemical Engineering, Tianjin Polytechnic University, Tianjin, 300160, China.

出版信息

Environ Sci Pollut Res Int. 2016 Nov;23(22):22771-22782. doi: 10.1007/s11356-016-7483-6. Epub 2016 Aug 25.

Abstract

This paper studies Fe/Al composite hydrogel electrode electrocoagulation (EC) and adsorption of alizarin red S (ARS). ARS removal efficiency and degradation mechanism when applying Fe/Al composite hydrogel electrode were investigated. The optimum experimental factors and degradation of ARS were discussed. ARS degradation was optimal operation at initial pH 3 with O.The experimental results showed that the COD removal efficiency was better, reaching to about 90 % when applying the novel electrode system. The discoloration rate also reached the best effect of 99 % in the superior technical conditions. The optimum electrolysis time is about 30 min. Results revealed that the efficiency in the EC process with Fe/Al composite hydrogel electrodes were much better than that in conventional electrode system. In addition, Fe/Al composite hydrogel electrodes are environment-friendly material, which reuse waste and reduce cost. Hydrogel has certain iron exchange capacity to eliminate the residual metal irons. It is found that the application of ultrasonic helps to accelerate the electrocoagulation of ARS. This study not only realizes the ultrasonic, flotation, coagulation, and adsorption of the combination but also gains economy and environment. Consequently, the unique performance of Fe/Al composite hydrogel electrodes opens promising perspectives for fast, high, and economical treatment of wastewater containing dyes or/and organic contaminants.

摘要

本文研究了 Fe/Al 复合水凝胶电极电絮凝(EC)和吸附茜素红 S(ARS)。研究了应用 Fe/Al 复合水凝胶电极时 ARS 的去除效率和降解机理。讨论了最佳实验因素和 ARS 的降解。在初始 pH 值为 3 时,O 下应用新型电极系统时,ARS 的降解效果最佳。实验结果表明,当应用新型电极系统时,COD 的去除效率更好,达到约 90%。在优越的技术条件下,脱色率也达到了最佳的 99%。最佳电解时间约为 30 分钟。结果表明,Fe/Al 复合水凝胶电极在 EC 过程中的效率明显优于传统电极系统。此外,Fe/Al 复合水凝胶电极是一种环保材料,可利用废物并降低成本。水凝胶具有一定的铁交换能力,可以消除残留的金属铁。研究发现,超声的应用有助于加速 ARS 的电絮凝。本研究不仅实现了超声、浮选、混凝和吸附的结合,而且还具有经济性和环境友好性。因此,Fe/Al 复合水凝胶电极的独特性能为快速、高效、经济地处理含染料和/或有机污染物的废水开辟了广阔的前景。

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