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制药工业排放产生的富含新兴污染物的废水生物处理的最新进展。

Recent advances in the biological treatment of wastewater rich in emerging pollutants produced by pharmaceutical industrial discharges.

作者信息

Khalidi-Idrissi A, Madinzi A, Anouzla A, Pala A, Mouhir L, Kadmi Y, Souabi S

机构信息

Laboratory of Process Engineering and Environment, Faculty of Science and Technology, Mohammedia, University Hassan II of Casablanca, BP. 146, Mohammedia, Morocco.

Environmental Research and Development Center (CEVMER), Dokuz Eylul University, Izmir, Turkey.

出版信息

Int J Environ Sci Technol (Tehran). 2023 Mar 16:1-22. doi: 10.1007/s13762-023-04867-z.

Abstract

Pharmaceuticals and personal care products present potential risks to human health and the environment. In particular, wastewater treatment plants often detect emerging pollutants that disrupt biological treatment. The activated sludge process is a traditional biological method with a lower capital cost and limited operating requirements than more advanced treatment methods. In addition, the membrane bioreactor combines a membrane module and a bioreactor, widely used as an advanced method for treating pharmaceutical wastewater with good pollution performance. Indeed, the fouling of the membrane remains a major problem in this process. In addition, anaerobic membrane bioreactors can treat complex pharmaceutical waste while recovering energy and producing nutrient-rich wastewater for irrigation. Wastewater characterizations have shown that wastewater's high organic matter content facilitates the selection of low-cost, low-nutrient, low-surface-area, and effective anaerobic methods for drug degradation and reduces pollution. However, to improve the biological treatment, researchers have turned to hybrid processes in which all physical, chemical, and biological treatment methods are integrated to remove various emerging contaminants effectively. Hybrid systems can generate bioenergy, which helps reduce the operating costs of the pharmaceutical waste treatment system. To find the most effective treatment technique for our research, this work lists the different biological treatment techniques cited in the literature, such as activated sludge, membrane bioreactor, anaerobic treatment, and hybrid treatment, combining physicochemical and biological techniques.

摘要

药品和个人护理产品对人类健康和环境存在潜在风险。特别是,污水处理厂经常检测到会干扰生物处理的新型污染物。活性污泥法是一种传统的生物方法,与更先进的处理方法相比,其资本成本较低且运行要求有限。此外,膜生物反应器将膜组件和生物反应器结合在一起,作为一种处理制药废水的先进方法被广泛应用,具有良好的污染处理性能。事实上,膜污染仍是该过程中的一个主要问题。此外,厌氧膜生物反应器可以处理复杂的制药废水,同时回收能量并产生富含养分的废水用于灌溉。废水特性表明,废水的高有机物含量有利于选择低成本、低营养、低表面积且有效的厌氧方法进行药物降解并减少污染。然而,为了改进生物处理,研究人员转向了混合工艺,即将所有物理、化学和生物处理方法整合起来,以有效去除各种新型污染物。混合系统可以产生生物能源,这有助于降低制药废水处理系统的运营成本。为了找到我们研究中最有效的处理技术,这项工作列出了文献中引用的不同生物处理技术,如活性污泥法、膜生物反应器、厌氧处理以及结合物理化学和生物技术的混合处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f465/10019435/d3728fd49698/13762_2023_4867_Fig1_HTML.jpg

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