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Oxidation and coagulation removal of humic acid using Fenton process

机译:利用Fenton工艺氧化和去除腐殖酸

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The treatment of humic acid (HA) in water with Fenton reagents was carried out and the roles of oxidation and coagulation in removing HA during treatment were investigated. The removal efficiencies of HA by oxidation and coagulation were tested under various operating conditions: reaction time, initial pH, dosages of Fenton reagents, [H_2O_2]/[Fe~(2+)] molar ratio, initial HA concentration and reaction temperature. It is demonstrated that Fenton process can effectively remove HA. The values of 27.6% mineralization of HA and 78.9% reduction of UV absorbance at 254nm (UV_(254)) by oxidation after 120min reaction time indicated that HA was not completely oxidized to carbon dioxide but rather transformed to some organic intermediates. Moreover, the oxidation occurred mainly at the first 60min and predominated the HA removal efficiency. Under the most favorable conditions (initial pH 4.0, H_2O_2 160mM, Fe~(2+) 40mM, reaction time 120min, reaction temperature 30°C), 93.3% of UV_(254) was reduced, the reduction of UV_(254) by oxidation and coagulation were 78.9% and 14.4%, respectively. Results highlighted the synergistic roles of oxidation and coagulation in Fenton treatment of HA.
机译:进行了芬顿试剂处理水中腐殖酸(HA)的研究,并研究了氧化和凝聚在处理过程中去除腐殖酸的作用。在反应时间,初始pH,Fenton试剂用量,[H_2O_2] / [Fe〜(2+)]摩尔比,初始HA浓度和反应温度等多种操作条件下测试了HA通过氧化和凝结的去除效率。事实证明,Fenton工艺可以有效去除HA。 120分钟的反应时间后,氧化导致HA的矿化率为27.6%,在254nm(UV_(254))处的UV吸光度降低了78.9%,表明HA没有完全氧化为二氧化碳,而是转化为某些有机中间体。此外,氧化主要发生在最初的60分钟,并主导了HA去除效率。在最有利的条件下(初始pH 4.0,H_2O_2 160mM,Fe〜(2+)40mM,反应时间120min,反应温度30°C),UV_(254)减少了93.3%,UV_(254)减少了氧化和凝结分别为78.9%和14.4%。结果突出了氧化和凝血在芬顿治疗HA中的协同作用。

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