Submerged Membrane Photo Reactor (SMPR) with Simultaneous Photo Degradation and TiO2 Catalyst Recovery for Efficient Dyes Removal

Q4 Chemical Engineering
D. Ariyanti, F. Wicaksana, Wei Gao
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引用次数: 0

Abstract

In this study, a polyvinylidene difluoride (PVDF) hollow fiber membrane module incorporated with TiO2 was submerged into a photocatalytic reactor to create a hybrid photocatalysis with membrane separation process (a submerged membrane photoreactor, SMPR), for advanced dyes wastewater treatment. The SMPR performance was assessed by the degradation of single component Rhodamine B (RhB) and degradation of mixed dyes (RhB and Methyl orange (MO)) in a binary solution. Several operational parameters such as the amount of catalyst loading, permeate flux, and the effect of aeration were studied. Fouling tendency on the membrane was also investigated to determine the optimum operating conditions. The results show that the synergetic effect of the low catalyst loading and permeate flux creates the environment for optimum light penetration for high photocatalytic activity as the hybrid system with low catalyst loading (0.5 g/L) and 66 L/m2h of flux with aeration at 1.3 L/min has proven to increase the photocatalysis performance by 20% with additional catalyst recovery. In addition, applying the low catalyst loading and flux permeate with aeration brings minimal fouling problems.
同时光降解和TiO2催化剂回收的浸没膜光反应器(SMPR)高效脱除染料
本研究将加入TiO2的聚偏氟乙烯(PVDF)中空纤维膜组件浸入光催化反应器中,建立膜分离混合光催化工艺(浸入式膜光反应器,SMPR),用于染料废水的深度处理。通过对单组分罗丹明B (RhB)和混合染料(RhB和甲基橙)在二元溶液中的降解来评价SMPR的性能。对催化剂用量、渗透通量、曝气效果等操作参数进行了研究。研究了膜的结垢倾向,确定了最佳操作条件。结果表明,低催化剂负载和低渗透通量的协同作用为高光催化活性创造了最佳的光穿透环境,低催化剂负载(0.5 g/L)和66 L/m2h的混合体系以1.3 L/min的曝气速度增加了20%的光催化性能,并增加了催化剂回收率。此外,采用低催化剂负荷和通量渗透的曝气带来最小的污染问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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