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Occurrence, fate, and risk assessment of vancomycin in two typical pharmaceutical wastewater treatment plants in Eastern China

机译:两种典型药物废水处理厂的发生,命运和风险评估在中国东部两种典型的药物废水处理厂

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摘要

Vancomycin (VCM) is an antibiotic, known medically as the deadline for defending against bacteria. In this study, the removal and fate of VCM were investigated in each treatment unit at two pharmaceutical wastewater treatment plants (PWWTPs) in eastern China. VCM was present in all wastewater and sludge samples of both PWWTPs. After the treatment procedure (the moving bed biofilm reactor technology for PWWTP1 and the modified anaerobic-anoxic-oxic technology for PWWTP2), total removal efficiencies were up to 99 %, corresponding to a reduction of two orders of magnitude of the influent concentrations in both PWWTPs. The aerobic tank dominated VCM removal. Mass balance flow analyses indicated that biodegradation (99.15 % for PWWTP1 and 99.51 % for PWWTP2) was the principle mechanism for removing VCM, while the contribution of sorption by sludge for both PWWTPs was negligible. However, the results of the environmental risk assessment of VCM in the effluents showed that the maximum trigger quotient values were much higher than 1 in both PWWTPs, indicating the non-negligible environmental and health risks. This is the first report of the fate and risks of VCM in pharmaceutical wastewater, and underscores the importance of PWWTPs as antibiotic pollution sources, even though wastewater management appeared efficient.
机译:万古霉素(VCM)是一种抗生素,在医学上被称为抗细菌的终止。在该研究中,在中国东部两种药物废水处理厂(PWWTPS)的每个治疗单元中研究了VCM的去除和命运。 VCM存在于所有废水和PWWTPS的污泥样品中。治疗程序(PWWTP1的移动床生物膜反应器技术和PWWTP2的改良厌氧 - 氧化技术),总去除效率高达99%,相当于减少两种影响浓度的两个数量级pwwtps。有氧罐体占据了VCM的去除。质量平衡流动分析表明,生物降解(99.15%对PWWTP1和PWWTP2 99.51%)是除去VCM的原理机制,而吸附的污泥通过两个PWWTPs的贡献可以忽略不计。然而,污水中VCM的环境风险评估结果表明,PWWTPS的最大触发商值远高于1,表明不可忽视的环境和健康风险。这是药物废水中VCM的第一个报告和VCM的风险,并强调PWWTPS作为抗生素污染源的重要性,尽管污水管理效率效率。

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