Membrane fouling remediation in ultrafiltration of latex contaminated wastewater

IF 2 Q3 Environmental Science Water Quality Research Journal of Canada Pub Date : 2016-08-11 DOI:10.2166/WQRJC.2015.011
A. Abdelrasoul, H. Doan, A. Lohi
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引用次数: 9

Abstract

The current study aimed to remediate membrane fouling by latex effluent by altering membrane surface charge or ionic strength of the effluent. Hydrophilic polysulfone and Ultrafilic flat membranes, with molecular weight cutoff (MWCO) of 60,000 and 100,000, respectively, and hydrophobic polyvinylidene difluoride membrane (PVDF; MWCO 100,000) were used under a constant flow rate and in cross-flow mode for ultrafiltration of latex effluent. The effect of linear alkyl benzene sulfonate (LAS) on the ionic strength of the effluent and the zeta potential of latex particles was investigated. LAS was also used to improve the anti-fouling properties of the membrane surface. The ionic strength of latex effluent was increased by raising its pH from 7 to 12, resulting in an increase of the zeta potential negativity of the latex particles from −26.61 to −42.66 mV. LAS was found to be an ineffective pretreatment for limiting the fouling propensity of latex effluent using hydrophilic membranes even at high concentration and long treatment times. It was concluded that LAS-treated membrane surface is much more favorable than pH changed feed pretreatment. The total mass of fouling decreased by 44.00 and 29.60%, when PVDF membrane surface was treated with LAS at a concentration of 1 × 10−4 g/L, and latex effluent at pH 11 was used, respectively.
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乳胶污染废水超滤膜污染修复研究
本研究旨在通过改变乳胶废水的膜表面电荷或离子强度来修复乳胶废水对膜的污染。亲水性聚砜和超滤膜,分子量分别为6万和10万,疏水性聚偏二氟乙烯膜(PVDF);采用恒流量、横流方式对乳胶出水进行超滤。研究了线性烷基苯磺酸盐(LAS)对出水离子强度和乳胶颗粒zeta电位的影响。LAS还用于提高膜表面的抗污染性能。将乳胶流出液的pH值从7提高到12,可以提高乳胶流出液的离子强度,使乳胶颗粒的zeta负电位从−26.61 mV增加到−42.66 mV。研究发现,在高浓度、长时间处理下,LAS对限制亲水膜乳胶出水的污染倾向是一种无效的预处理方法。结果表明,las处理的膜表面比pH变化的饲料预处理更有利。用浓度为1 × 10−4 g/L的LAS和pH为11的乳胶出水处理PVDF膜表面时,污染总质量分别降低了44.00%和29.60%。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The Water Quality Research Journal publishes peer-reviewed, scholarly articles on the following general subject areas: Impact of current and emerging contaminants on aquatic ecosystems Aquatic ecology (ecohydrology and ecohydraulics, invasive species, biodiversity, and aquatic species at risk) Conservation and protection of aquatic environments Responsible resource development and water quality (mining, forestry, hydropower, oil and gas) Drinking water, wastewater and stormwater treatment technologies and strategies Impacts and solutions of diffuse pollution (urban and agricultural run-off) on water quality Industrial water quality Used water: Reuse and resource recovery Groundwater quality (management, remediation, fracking, legacy contaminants) Assessment of surface and subsurface water quality Regulations, economics, strategies and policies related to water quality Social science issues in relation to water quality Water quality in remote areas Water quality in cold climates The Water Quality Research Journal is a quarterly publication. It is a forum for original research dealing with the aquatic environment, and should report new and significant findings that advance the understanding of the field. Critical review articles are especially encouraged.
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