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AOX removal from industrial wastewaters using advanced oxidation processes: Assessment of a combined chemical-biological oxidation

机译:使用高级氧化工艺从工业废水中去除AOX:化学-生物氧化联合评估

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In this paper, the abatement of adsorbable halogenated organic compounds (AOX) from an industrial wastewater containing relatively high chloride concentrations by a combined chemical and biological oxidation is assessed. For chemical oxidation, the O_3/UV, H_2O_2/UV and photo-Fenton processes are evaluated on pilot scale. Biological oxidation is simulated in a 4 h respirometry experiment with periodic aeration. The results show that a selective degradation of AOX with respect to the matrix compounds (expressed as chemical oxygen demand) could be achieved. For O_3/UV, lowering the ratio of O3 dosage to UV intensity leads to a better selectivity for AOX. During O_3-based experiments, the AOX removal is generally less than during the H_2O_2-based experiments. However, after biological oxidation, the AOX levels are comparable. For H_2O_2/UV, optimal operating parameters for UV and H_2O_2 dosage are next determined in a second run with another wastewater sample.
机译:在本文中,通过化学和生物氧化相结合的方法,评估了从氯化物浓度相对较高的工业废水中可吸附的卤代有机化合物(AOX)的消除效果。对于化学氧化,以中试规模评估O_3 / UV,H_2O_2 / UV和光芬顿工艺。在4小时的定期曝气呼吸测定实验中模拟了生物氧化。结果表明,相对于基质化合物(表示为化学需氧量),可以实现AOX的选择性降解。对于O_3 / UV,降低O3剂量与UV强度的比率可导致对AOX更好的选择性。在基于O_3的实验中,AOX的去除率通常小于基于H_2O_2的实验。但是,经过生物氧化后,AOX的水平是可比的。对于H_2O_2 / UV,接下来在第二次运行中与另一个废水样品一起确定UV和H_2O_2剂量的最佳操作参数。

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