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Tubular nanofiltration of highly concentrated C.I. Acid Black 210 dye

机译:高浓度C.I.的管式纳滤酸性黑210染料

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Tubular nanofiltration membrane performance to treat water for reuse was carried out by choosing C.I. Acid Black 210 dye as a model dye. It has been shown that increasing pH causes reduction in irreversible fouling factor (IFF) and the dye removal is also affected by solution pH. The total organic carbon removal for pH 4, pH 7, pH 8 and pH 10 is 97.9, 92.3, 94.5 and 94.6%, respectively. The conductivity removal for pH 4, pH 7, pH 8 and pH 10 is 85.1, 88.3, 87.8 and 90.7% respectively. The increase in the initial dye concentration causes rapid increase in fouling until 100 mg/l. Then the fouling increases gradually as it reaches a maximum IFF around 13%. This study also shows that the colour of permeate changes from colourless to light greenish/yellowish (initial concentration of 2,000 and 4,000 mg/l) as the initial dye concentration increases. The conductivity removal was also reduced as the initial dye concentration increased due to screening of the Donnan effect with the presence of salt.
机译:通过选择C.I.进行了管式纳滤膜处理水回用的性能。酸性黑210染料作为模型染料。已经表明,增加pH值会导致不可逆结垢因子(IFF)的降低,并且溶液pH值也会影响染料的去除。 pH 4,pH 7,pH 8和pH 10的总有机碳去除率分别为97.9、92.3、94.5和94.6%。 pH 4,pH 7,pH 8和pH 10的电导率去除分别为85.1、88.3、87.8和90.7%。初始染料浓度的增加会导致结垢迅速增加,直至100 mg / l。然后,当结垢达到最大IFF约13%时,结垢逐渐增加。该研究还表明,随着初始染料浓度的增加,渗透液的颜色从无色变为浅绿色/黄色(初始浓度为2,000和4,000 mg / l)。由于在存在盐的情况下筛选了唐南效应,随着初始染料浓度的增加,电导率的去除也降低了。

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