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Effect of IX dosing on polypropylene and PVDF membrane fouling control

机译:IX计量对聚丙烯和PVDF膜结垢控制的影响

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摘要

The performance of ion exchange (IX) resin for organics removal from wastewater was assessed using advanced characterisation techniques for varying doses of IX. Organic characterisation using liquid chromatography with a photodiode array (PDA) and fluorescence spectroscopy (Method A), and UV_(254), organic carbon and organic nitrogen detectors (Method B), was undertaken on wastewater before and after magnetic IX treatment. Results showed partial removal of the biopolymer fraction at high IX doses. With increasing concentration of IX, evidence for nitrogen-containing compounds such as proteins and amino acids disappeared from the LC-OND chromatogram, complementary to the fluorescence response. A greater fluorescence response of tryptophan-like proteins (278 nm/ 343 nm) for low IX concentrations was consistent with aggregation of tryptophan-like compounds into larger aggregates, either by self-aggregation or with polysaccharides. Recycling of IX resin through multiple adsorption steps without regeneration maintained the high level of humics removal but there was no continued removal of biopolymer. Subsequent membrane nitration of the IX treated waters resulted in complex fouling trends. Filtration tests with either polypropylene (PP) or polyvinylidene fluoride (PVDF) membranes showed higher rates of initial fouling following treatment with high IX doses (10 mL/L) compared to nitration of untreated water, while treatment with lower IX doses resulted in decreased fouling rates relative to the untreated water. However, at longer filtration times the rate of fouling of IX treated waters was lower than untreated water and the relative fouling rates corresponded to the amount of biopolymer material in the feed. It was proposed that the mode of fouling changed from pore constriction during the initial nitration period to filter cake build up at longer filtration times. The organic composition strongly influenced the rate of fouling during the initial filtration period due to competitive adsorption processes, while at longer filtration times the rate of fouling appeared to depend upon the amount of biopolymer material in the feed water.
机译:使用先进的表征技术,针对不同剂量的IX评估了离子交换(IX)树脂从废水中去除有机物的性能。在进行磁IX处理之前和之后,对废水进行了有机表征,所述液相色谱具有光电二极管阵列(PDA)和荧光光谱法(方法A),UV_(254),有机碳和有机氮检测器(方法B)。结果显示在高IX剂量下部分去除了生物聚合物部分。随着IX浓度的增加,蛋白质和氨基酸等含氮化合物的证据从LC-OND色谱图中消失,与荧光响应互补。对于低IX浓度,色氨酸样蛋白(278 nm / 343 nm)的更大荧光响应与色氨酸样化合物通过自聚集或与多糖的聚集成更大的聚集体是一致的。通过多个吸附步骤而不再生的IX树脂的再循环保持了高水平的腐殖质去除,但是没有继续去除生物聚合物。 IX处理水的随后膜硝化导致复杂的结垢趋势。用聚丙烯(PP)或聚偏二氟乙烯(PVDF)膜进行的过滤测试显示,与未处理水硝化相比,高IX剂量(10 mL / L)处理后的初始结垢率更高,而低IX剂量的处理导致结垢的减少相对于未处理水的比率。然而,在较长的过滤时间下,IX处理水的结垢率低于未处理水,并且相对结垢率对应于进料中生物聚合物材料的量。有人提出,污垢的模式从最初的硝化阶段的孔收缩转变为在更长的过滤时间积累的滤饼。由于竞争性吸附过程,有机成分在初始过滤期间强烈影响结垢速率,而在更长的过滤时间下,结垢速率似乎取决于给水中生物聚合物材料的量。

著录项

  • 来源
    《Water Research》 |2013年第11期|3827-3834|共8页
  • 作者单位

    Institute for Sustainability and Innovation (ISI), Victoria University, Melbourne, VIC 8001, Australia;

    Orica Watercare, Melbourne, VIC 3000, Australia;

    Orica Watercare, Melbourne, VIC 3000, Australia;

    Institute for Sustainability and Innovation (ISI), Victoria University, Melbourne, VIC 8001, Australia;

    Institute for Sustainability and Innovation (ISI), Victoria University, Melbourne, VIC 8001, Australia,College of Engineering and Science, Victoria University, Melbourne, VIC 8001, Australia;

    Water Reuse and Desalination Center, King Abdullah University of Science and Technology, Thuiual 23955-6900,Saudi Arabia;

    Water Reuse and Desalination Center, King Abdullah University of Science and Technology, Thuiual 23955-6900,Saudi Arabia;

    Institute for Sustainability and Innovation (ISI), Victoria University, Melbourne, VIC 8001, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Organic fouling; Microfiltration; Liquid chromatography; Effluent organic matter; Ion exchange;

    机译:有机污垢;微滤;液相色谱;出水有机物;离子交换;
  • 入库时间 2022-08-17 13:45:41

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