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Enhanced biodegradability of coking wastewater by gas phase dielectric barrier discharge plasma

机译:气相电介质阻挡放电等离子体增强了焦化废水的生物降解性

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In the present study, gas phase dielectric barrier discharge (GPDBD) was used for pretreatment of coking wastewater with the objective of improving its biodegradability. The effects of some operational parameters including initial concentration, pH value of coking wastewater and air flow rate in GPDBD reactor on the COD removal were investigated. The removal efficiency of main compounds (total phenol, PAHs and NH3-N) and biodegradability (BOD3/COD) of coking wastewater were evaluated. The results show that the removal of COD by GPDBD fitted well with the second-order kinetics. The raw pH of coking wastewater was beneficial for COD removal. The optimal air flow rate was observed as 2 L min(-1). Approximately 100% of total phenol and PAHs (benzoquinone, naphthalenol, dimethyl phthalate, etc.) removal was achieved at a reaction time of 120 min, and the removal efficiency of NH3-N reached 21%. The BOD5/COD ratio increased from 0.14 to 0.52 within 100 min of discharge treatment, suggesting the biodegradability of the coking wastewater was significantly improved. The GPDBD system is an effective pretreatment method for enhancing the biodegradability of coking wastewater. (C) 2015 Published by Elsevier B.V.
机译:在本研究中,气相介电势垒放电(GPDBD)用于焦化废水的预处理,以提高其生物降解性。研究了一些操作参数,包括初始浓度,焦化废水的pH值和GPDBD反应器中的空气流速对COD去除的影响。评价了焦化废水中主要化合物(总酚,PAHs和NH3-N)的去除效率和生物降解性(BOD3 / COD)。结果表明,GPDBD去除COD符合二级动力学。焦化废水的原始pH值有助于去除COD。最佳空气流速为2 L min(-1)。在120分钟的反应时间下,总苯酚和PAHs(苯醌,萘酚,邻苯二甲酸二甲酯等)的去除率约为100%,NH3-N的去除率达到21%。 BOD5 / COD比在排放处理的100分钟内从0.14增加到0.52,表明焦化废水的生物降解性得到了显着改善。 GPDBD系统是提高焦化废水生物降解能力的有效预处理方法。 (C)2015由Elsevier B.V.发布

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