首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >CuO nanoparticle-humic acid (CuONP-HA) composite contaminant removal by coagulation/ultrafiltration process: The application of sodium alginate as coagulant aid
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CuO nanoparticle-humic acid (CuONP-HA) composite contaminant removal by coagulation/ultrafiltration process: The application of sodium alginate as coagulant aid

机译:凝结/超滤过程去除CuO纳米级腐殖酸(CuONP-HA)复合污染物:海藻酸钠作为助凝剂的应用

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摘要

In order to remove CuO nanoparticle-humic acid composite contaminant (CuONP-HA) and reduce the membrane fouling in coagulation/ultrafiltraion process, sodium alginate (SA) was used as a coagulant aid of polyaluminum chloride (PAC) to pre-treat CuONP-HA in synthetic water. The effect of SA on floc properties and membrane fouling was investigated by a laser diffraction instrument and ultrafiltration fouling model. The results showed that SA, as coagulant aid, could improve the removal efficiency of CuONP-HA by coagulation/ultrafiltration process. CuONP was completely removed, and the removal efficiency of HA was over 80% at PAC dosage = 3.0 mg/L and SA dosage >= 0.2 mg/L Besides, PAC with SA (PAC + SA) could form larger flocs with better recoverability than PAC alone. The average size of CuONP-HA flocs formed by PAC + SA exceeded 1000 um which was about 66% larger than flocs formed by PAC, and the small CuONP-HA aggregation also increased to about 280 um. Moreover, membrane fouling was effectively reduced by pre-treating of SA, and membrane fouling index (MFI) was decreased with the dosage of SA increasing. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了去除CuO纳米颗粒-腐殖酸复合污染物(CuONP-HA)并减少凝结/超滤过程中的膜污染,藻酸钠(SA)被用作聚氯化铝(PAC)的凝结助剂,对CuONP-进行预处理HA在合成水中。用激光衍射仪和超滤结垢模型研究了SA对絮凝性能和膜结垢的影响。结果表明,作为凝结助剂的SA可通过凝结/超滤过程提高CuONP-HA的去除效率。 CuONP被完全去除,在PAC剂量= 3.0 mg / L和SA剂量> = 0.2 mg / L时,HA的去除率超过80%。此外,具有SA的PAC(PAC + SA)可以形成较大的絮凝物,回收率比仅PAC。 PAC + SA形成的CuONP-HA絮凝物的平均尺寸超过1000 um,比PAC形成的絮凝物大约66%,小的CuONP-HA聚集体也增加到280 um。而且,通过SA的预处理有效地减少了膜的结垢,并且随着SA剂量的增加,膜的结垢指数(MFI)降低。 (C)2015 Elsevier B.V.保留所有权利。

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