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Rapid degradation, mineralization and detoxification of pharmaceutically active compounds in aqueous solution during pulsed corona discharge treatment

机译:脉冲电晕放电处理过程中水溶液中药物活性化合物的快速降解,矿化和解毒

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In the present study, plasma generated by pulsed corona discharge was used for the degradation of diclofenac, carbamazepine and ciprofloxacin. Pollutants in aqueous solution were plasma treated under two categories: single and mixed pollutant condition. Mixed pollutant condition showed an antagonistic behaviour and thus the degradation time was higher for mixed condition compared to the single condition. At different voltage and frequencies, degradation efficiency followed the trend, diclofenac>carbamazepine>ciprofloxacin. Acidic pH slightly favoured the degradation process whereas in presence of radical scavengers (HCO3-, CO32 and humic acid) the degradation yield was significantly decreased. With an input power of 101.5 W, complete degradation was achieved within 4-16 min of plasma treatment for pharmaceutical's concentrations of 1-10 mg/L. As the pollutant concentration increased from 1 to 10 mg/L, the pseudo first order rate constant decreased, while yield increased. Complete degradation pathway of diclofenac, carbamazepine and ciprofloxacin in plasma treatment process are proposed by identifying the intermediates using LC-MS analysis. TOC analysis confirmed 80% mineralization within 10 min of plasma treatment for higher pharmaceutical's concentrations of 10 mg/L. The microalgae ecotoxicity study and disc diffusion test confirmed the complete detoxification of PACs that took place after 6 min of plasma treatment. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本研究中,脉冲电晕放电产生的血浆被用于双氯芬酸,卡马西平和环丙沙星的降解。水溶液中的污染物按两种类别进行等离子体处理:单一和混合污染物条件。混合污染物条件表现出拮抗行为,因此与单一条件相比,混合条件的降解时间更长。在不同的电压和频率下,降解效率遵循双氯芬酸>卡马西平>环丙沙星的趋势。酸性pH值稍微有利于降解过程,而在存在自由基清除剂(HCO3-,CO32和腐殖酸)的情况下,降解产率明显降低。输入功率为101.5 W时,对于浓度为1-10 mg / L的药物,在等离子处理后4-16分钟内即可完全降解。随着污染物浓度从1增加到10 mg / L,伪一级速率常数减小,而产率增加。通过LC-MS分析鉴定中间体,提出了双氯芬酸,卡马西平和环丙沙星在血浆处理过程中的完全降解途径。 TOC分析证实,对于浓度为10 mg / L的更高浓度的药物,在等离子处理后10分钟内80%的矿化。微藻的生态毒性研究和椎间盘扩散测试证实了等离子处理6分钟后,PAC完全解毒。 (C)2017 Elsevier Ltd.保留所有权利。

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