Influence of NF membrane properties on water recovery from the dairy industry wastewater

A. Kowalik-Klimczak
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引用次数: 1

Abstract

In the paper, the use of three types of polymer nanofiltration (NF) membranes, i.e. the TS80, DL and NP010, to recover water from the dairy industry wastewater is described. The most desired results were obtained for the TS80 membrane with the skin layer made of polyamide. This membrane significantly contributed to the recovery of water to be reused for external cleaning of tank parts, road tankers, and floors. All tested NF membranes were characterised by a relatively low fouling index. This is due to the preliminary treatment of wastewater as part of an integrated system of bag filtration and microfiltration. However, the decrease in the permeate flux for all tested polymer membranes was observed during the NF process, which was mainly caused by an increase in the concentration factor of the dairy industry wastewater components. The presented results are part of the prospective trends in the development of the bioeconomy, especially in a closed circuit.
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NF膜性能对乳品废水回用的影响
本文介绍了三种类型的聚合物纳滤膜(NF),即TS80、DL和NP010,用于回收乳制品工业废水中的水。对于具有由聚酰胺制成的表层的TS80膜获得了最期望的结果。这种膜对回收水做出了重大贡献,可重新用于储罐部件、油罐车和地板的外部清洁。所有测试的NF膜都以相对较低的结垢指数为特征。这是由于废水的初步处理是袋式过滤和微滤一体化系统的一部分。然而,在NF过程中观察到所有测试的聚合物膜的渗透通量降低,这主要是由乳制品工业废水成分的浓度因子增加引起的。上述结果是生物经济发展的前瞻性趋势的一部分,尤其是在闭合回路中。
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
Journal of Membrane Science and Research
Journal of Membrane Science and Research Materials Science-Materials Science (miscellaneous)
CiteScore
4.00
自引率
0.00%
发文量
1
审稿时长
8 weeks
期刊介绍: The Journal of Membrane Science and Research (JMSR) is an Open Access journal with Free of Charge publication policy, which provides a focal point for academic and industrial chemical and polymer engineers, chemists, materials scientists, and membranologists working on both membranes and membrane processes, particularly for four major sectors, including Energy, Water, Environment and Food. The journal publishes original research and reviews on membranes (organic, inorganic, liquid and etc.) and membrane processes (MF, UF, NF, RO, ED, Dialysis, MD, PV, CDI, FO, GP, VP and etc.), membrane formation/structure/performance, fouling, module/process design, and processes/applications in various areas. Primary emphasis is on structure, function, and performance of essentially non-biological membranes.
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