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Treatment of welding electrode manufacturing plant wastewater using coagulation/flocculation-nanofiltration as a hybrid process

机译:混凝/絮凝-纳滤混合工艺处理电焊条生产厂废水

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High water consumption and water scarcity make industrial wastewater reuse necessary, especially in those industries characterized by polluted effluents such as welding electrode manufacturing industries. The present paper investigates the coupling of coagulation-flocculation with nanofiltration (NF) to recycle water and reuse it in the process. First, the effect of different concentrations of a mixture of alum (Al2(SO4)3.18H2O) and ferric chloride (FeCl3) on the pretreatment process was closely studied. Then the NF process was applied for complementary treatment. The NF results show that, by increasing both flow rate and transmembrane pressure (TMP), permeate flux is increased. The NF results also show that the COD value decreases below 2 mg/l, TDS rejection approaches 82%, turbidity decreases below 1 NTU and the hardness is lower than the factory constraint (100 mg/l as CaCO3), allowing the reuse of the treated wastewater in the process.
机译:高耗水量和缺水量使得必须对工业废水进行再利用,特别是在那些以废水为特征的工业中,例如焊接电极制造工业。本文研究了混凝-絮凝与纳滤(NF)的耦合以循环水并在过程中对其进行再利用。首先,密切研究了不同浓度的明矾(Al2(SO4)3.18H2O)和氯化铁(FeCl3)的混合物对预处理过程的影响。然后将NF过程应用于补充治疗。 NF结果表明,通过增加流速和跨膜压力(TMP),渗透通量得以增加。 NF结果还表明,COD值降低到2 mg / l以下,TDS排斥率接近82%,浊度降低到1 NTU以下,并且硬度低于工厂限制(CaCO3为100 mg / l),从而可以重复使用处理过程中的废水。

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