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Effect of Perozonation on Biodegradability and Toxicity of a Penicillin Formulation Effluent

机译:过氧化物酶对青霉素制剂废水的生物降解性和毒性的影响

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The pretreatment of synthetic penicillin formulation effluent containing Procain Penicillin G (PPG) with the O_3/H_2O_2 process (applied ozone dose = 1440 mg h~(-1) treatment time = 60 minutes; pH 7; H_2O_2 = 10 mM) was investigated. The effect of chemical pretreatment was assessed on the basis of acute toxicity and biodegradability with activated sludge using water flea Daphnia magna toxicity and activated sludge inhibition tests. Biological treatability studies were performed with a mixture of untreated or pretreated PPG effluent (25% on volume basis) and synthetic domestic wastewater simulating readily biodegradable organic substrate to simulate the characteristics of domestic wastewater (75% on volume basis). Pretreatment of PPG effluent the O_3/H_2O_2 process resulted in more than 70% chemical oxygen demand (COD) removal and a 50% decrease in the acute toxicity towards Daphnia magna. On the other hand, biodegradation of untreated PPG effluent needed prolonged acclimation periods to obtain a significant biological COD removal (= 80%). Pretreatment employing the O_3/H_2O_2 process not only decreased the ultimate biodegradability of PPG effluent but also increased its inhibitory effects on activated sludge treatment speculatively due to the formation of less biodegradable oxidation by-products.
机译:研究了用O_3 / H_2O_2工艺(施加的臭氧剂量= 1440 mg h〜(-1)处理时间= 60分钟; pH 7; H_2O_2 = 10 mM)预处理含有普鲁卡因青霉素G(PPG)的合成青霉素制剂废水。基于水蚤蚤蚤的毒性和活性污泥抑制试验,基于活性污泥的急性毒性和生物降解性,评估了化学预处理的效果。使用未经处理或预处理的PPG废水(占体积的25%)和模拟易于生物降解的有机底物的合成生活废水的混合物进行生物可处理性研究,以模拟生活废水的特征(占体积的75%)。对PPG废水进行O_3 / H_2O_2预处理可导致去除70%以上的化学需氧量(COD),并将对大型蚤(Daphnia magna)的急性毒性降低50%。另一方面,未经处理的PPG废水的生物降解需要延长适应时间才能获得明显的生物COD去除率(= 80%)。采用O_3 / H_2O_2工艺进行的预处理不仅降低了PPG废水的最终生物降解能力,而且由于形成了生物降解性较低的氧化副产物,推测性地提高了其对活性污泥处理的抑制作用。

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