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Degradation of EDTA and novel complexing agents in pulp and paper mill process and waste waters by Fenton's reagent

机译:用Fenton试剂降解纸浆和造纸厂过程中的EDTA和新型络合剂以及废水

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摘要

Fenton's process was used in oxidative degradation of ethylediaminetetraacetic acid (EDTA) and novel complexing agents, namely BCA5 and BCA6, in distilled water and spiked samples of integrated pulp and paper mill waste water and ECF-pulp bleaching effluent. In waste water, over 90% of EDTA was degraded within 3min when temperature was 60℃, pH 4, and molecular ratio of H_2O_2:Fe~(2+):EDTA was 70:2:1 (0.26mM EDTA) or higher. In spiked ECF bleaching effluent up to 42% of EDTA was degraded in similar reaction conditions, still higher than published results indicate biological waste water treatment of pulp and paper mill waste water being capable of. In pH 3, EDTA proved readily degradable by Fenton's process in otherwise similar conditions. According to these results, Fenton's process could be used as a pre-treatment method for EDTA-containing bleaching effluents prior to the biological waste water treatment. In addition, BCA5 and BCA6 proved their superiority in terms of degradability also by Fenton's process in both pH 3 and 4.
机译:Fenton的方法用于蒸馏水中的乙二胺四乙酸(EDTA)和新型络合剂BCA5和BCA6的氧化降解以及纸浆和造纸厂废水和ECF纸浆漂白废水的加标样品中。在废水中,温度为60℃,pH为4时,在3分钟内EDTA的降解率超过90%,H_2O_2:Fe〜(2 +):EDTA的分子比为70:2:1(0.26mM EDTA)。在加标的ECF漂白废水中,高达42%的EDTA在相似的反应条件下降解,但仍高于已发表的结果,表明纸浆和造纸厂废水的生物废水处理能力。在pH为3的情况下,EDTA被Fenton法证明很容易在其他条件下降解。根据这些结果,Fenton的方法可以用作生物废水处理之前含EDTA的漂白废水的预处理方法。此外,BCA5和BCA6也在Fenton的pH 3和4工艺中证明了其在降解性方面的优越性。

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