Preparation of a CPVC composite loose nanofiltration membrane based on plant polyphenols for effective dye wastewater treatment

IF 4.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
RSC Advances Pub Date : 2024-07-24 DOI:10.1039/D4RA03570D
Noor Khatoon, Nadir Ali, Sagar Ali, Zhang Chen, Wang Jun and Honghai Yang
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Abstract

The textile industry's high-salinity wastewater presents a significant difficulty for fractioning salts and dyes. To fractionate the dyes and salts, a high-performance CPVC composite loose nanofiltration membrane (LNM) was fabricated by interfacial polymerization. The organic phase was obtained by crosslinking polyethylenimine (PEI) with tannic acid (TA) and gallic acid (GA) using TMC. The resultant composite LNM performance was enhanced by adjusting the coating parameters, which included TA and GA concentrations as well as coating time. The study examined the effects of the total content of TA/PEI and GA/PEI concentrations on the chemical structure, surface roughness, and microstructure of the selective layer of LNM using SEM, AFM, FTIR, and water contact angle measurements. It also investigated the filtration performance of the membrane's selective layer, including pure water flux, PEG800 rejection rate, and membrane fouling analysis. However, the resultant membrane treated simulated reactive black 5 (RB5) dye wastewater. When the total content of TA/PEI is 4 kg L−1, the permeability of pure water flux is high at 7.5 L per m2 per h per bar when the total content of GA/PEI is 14 kg L−1 and the pure water flux is high at 8.8 L per m2 per h per bar. The overall PEG800 rejection rates were 97–98.98%. The optimal TA : PEI ratios reached a good pure water permeability up to 6.4 L per (m2 per h per bar) with a high rejection rate of 99.69% for a ratio 1/3 to dye, and GA : PEI ratios reached a good water permeability at 5.5 and 6.5 L per (m2 per h per bar) with rejection rates of 99.21% and 98.88% for ratio 1/3 and 3.5/10.5 for simulated RB5 dye, and the NaCl retention rate gradually decreased from 4% to 3%. The resultant LNM demonstrated promising applications in dye and salt fractionation.

Abstract Image

Abstract Image

制备基于植物多酚的 CPVC 复合松散纳滤膜,用于有效处理染料废水。
纺织工业的高含盐废水给分馏盐分和染料带来了很大困难。为了分馏染料和盐分,采用界面聚合法制造了一种高性能 CPVC 复合松散纳滤膜(LNM)。有机相是通过使用 TMC 将聚乙烯亚胺(PEI)与单宁酸(TA)和没食子酸(GA)交联得到的。通过调整涂覆参数(包括 TA 和 GA 的浓度以及涂覆时间),提高了所得到的复合 LNM 性能。研究利用扫描电镜、原子力显微镜、傅立叶变换红外光谱和水接触角测量法,考察了 TA/PEI 总含量和 GA/PEI 浓度对 LNM 选择性层的化学结构、表面粗糙度和微观结构的影响。研究还考察了膜选择层的过滤性能,包括纯水通量、PEG800 阻隔率和膜堵塞分析。然而,所产生的膜处理的是模拟活性黑 5(RB5)染料废水。当 TA/PEI 的总含量为 4 kg L-1 时,纯水通量的渗透率较高,为 7.5 L per m2 per h per bar;当 GA/PEI 的总含量为 14 kg L-1 时,纯水通量较高,为 8.8 L per m2 per h per bar。PEG800 的总体排斥率为 97-98.98%。最佳的 TA :PEI 比率为 1/3 时,纯水渗透率可达 6.4 升/平方米/小时/巴,染料排斥率高达 99.69%;而 GA :GA : PEI 比率在 5.5 和 6.5 升/(平方米/小时/巴)时具有良好的透水性,对模拟 RB5 染料的 1/3 比率和 3.5/10.5 比率的排斥率分别为 99.21% 和 98.88%,NaCl 保留率从 4% 逐渐下降到 3%。由此产生的 LNM 在染料和盐的分馏方面具有广阔的应用前景。
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来源期刊
RSC Advances
RSC Advances chemical sciences-
CiteScore
7.50
自引率
2.60%
发文量
3116
审稿时长
1.6 months
期刊介绍: An international, peer-reviewed journal covering all of the chemical sciences, including multidisciplinary and emerging areas. RSC Advances is a gold open access journal allowing researchers free access to research articles, and offering an affordable open access publishing option for authors around the world.
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