复合膜过滤法回收纺织品丝光过程中的烧碱

J.-E. Yang, Chulhwan Park, Jin-Ku Cho, Sangyong Kim
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引用次数: 7

摘要

本研究旨在建立纺织丝光中碱(NaOH)溶液回收的最佳操作条件。以纳滤/反渗透(NF/RO)膜应用的陶瓷膜淤泥密度指数(SDI)评价、聚合物膜应用的苛性溶液回收率测定、膜再生的最佳化学清洗条件、陶瓷膜/聚合物膜联合工艺去除总有机碳(TOC)、浊度、颜色和渗透通量的最佳条件为主要因素进行了研究。结果表明,第一步陶瓷超滤(UF)和第二步纳滤(NF)适用于丝光过程中总悬浮物(TSS)、残留有机物、浊度及色度的去除和碱液的回收。仅使用陶瓷超滤膜时,对TSS和浑浊度的去除率均大于99.0%,对色度和TOC的去除率分别为74.7%和49.2%。同时,超滤膜和纳滤膜联合处理的去除率更高,TSS和浊度去除率达99.9%,色度去除率达87.7%,TOC去除率达78.2%。其中,复合膜工艺成功回收了91.3%的NaOH,回收率为83.7%。在此基础上,获得了纯度高、干净的烧碱溶液,该溶液可重复用于丝光工艺,有望取得经济效益。
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Recovery of Caustic Soda in Textile Mercerization by Combined Membrane Filtration
This study sought to establish the optimum operating condition for the recovery of caustic (NaOH) solution from mercerization in textile process. As main factors, the silt density index (SDI) evaluation of ceramic membrane for the application of nanofiltration/reverse osmosis (NF/RO) membrane, the recovery yield measurement of caustic solution for the application of polymeric membrane, the optimum condition of chemical cleaning for the membrane regeneration, the optimum removal condition of total organic carbon (TOC), turbidity, color, and the permeate flux of ceramic membrane/polymeric membrane combined process were investigated. As results, ceramic ultrafiltration (UF) in the first step and nanofiltration (NF) in the second step were found to be suitable for the removal of total suspended solid (TSS), residual organics, turbidity including color, and the recovery of caustic solution from caustic wastewater stream in mercerization process. When only the ceramic UF membrane was used, the rejection efficiency of both of TSS and turbidity was more than 99.0%, and the color and TOC were rejected about 74.7% and 49.2%, respectively. Meanwhile, the combined membrane precess of UF and NF membranes showed even more efficient removal abilities and thus more than 99.9% of TSS and turbidity, 87.7% of color, and 78.2% of TOC were removed. In particular, 91.3% of NaOH was successfully recovered with 83.7% of total volume in the combined membrane process. With this regard, a clean caustic solution was obtained in a high purity, which can be reused for mercerization process, expecting to offer economical benefits.
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