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Operating conditions on the optimization and water quality analysis on the advanced treatment of papermaking wastewater by coagulation/Fenton process

机译:混凝/ Fenton法深度处理造纸废水的优化操作条件及水质分析

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A coagulation/Fenton process was used for the advanced treatment of papermaking wastewater. Optimal reaction conditions were proposed based on the removal efficiency and the operating costs. The overall removal efficiency of chemical oxygen demand (COD) reached 86.5% for polyaluminium chloride and polyacrylamide concentrations of 120 and 1mg/L, H2O2 dosage of 4mmol/L, and [H2O2]/[Fe2+] molar ratio of 1. The distribution and transformation of the polarity and molecular weight of the organic matter in raw wastewater, in the coagulation process effluent, and in the Fenton process effluent were also studied. The coagulation process efficiently removed the hydrophobic fraction, which comprised 60% of the fractions in the raw wastewater. The decrease in COD during the coagulation process reduced the required H2O2 dosage in the subsequent Fenton process. The cost of the coagulation/Fenton process amounted to 0.78 RMB/m(3), which was lower than that of the classic Fenton process alone (1.39 RMB/m(3)). Thus, this study offered an efficient and cost-effective method for the advanced treatment of papermaking wastewater.
机译:混凝/芬顿工艺用于造纸废水的深度处理。根据去除效率和操作成本,提出了最佳反应条件。当聚氯化铝和聚丙烯酰胺浓度分别为120和1mg / L,H2O2剂量为4mmol / L,[H2O2] / [Fe2 +]摩尔比为1时,总化学需氧量(COD)的去除效率达到86.5%。还研究了原废水,混凝工艺废水和Fenton工艺废水中有机物的极性和分子量的变化。混凝过程可有效去除疏水部分,该部分占原废水中60%的部分。凝结过程中COD的减少降低了随后的Fenton过程中所需的H2O2剂量。混凝/ Fenton工艺的成本为0.78元/ m(3),低于仅传统的Fenton工艺的成本(1.39元/ m(3))。因此,本研究为造纸废水的深度处理提供了一种有效且具有成本效益的方法。

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