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Current status and future prospects of sewer biofilms: Their structure, influencing factors, and substance transformations

机译:下水道生物膜的现状和未来展望:其结构,影响因素和物质转化

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With rapid urbanization, sewer systems are extensively being constructed for the collection and transportation of sewage to minimize the severe environmental and health issues, especially relating to the spread diseases. The existence of abundant biofilms on the inner walls of sewers could lead to potential risks such as sewer explosions, poisonous gas leaks, and pipe corrosions with the transformations of various kinds of pollutants. Therefore, it is urgent to clarify their inner mechanisms to safely govern sewer systems. In this study, the characteristics of sewer biofilms including their structure, influencing factors, and substance transformations were analyzed in-depth. The results reveal that sewer biofilms (1.0 mm depth approximately) consist of large quantities of inorganic and some organic substances, while the abundant functional genus of the bacteria and archaea are summarized. Sewer biofilms influencing factors were determined to be sewer operation mode, sewage characteristics, and shear stress. Further, the transformation of organics, sulfur, and nitrogen as well as emerging micropollutants (such as, biomarkers, antibiotic resistance genes, and engineered nanoparticles) was investigated to guarantee sewer security and public health. Therefore, the current review could be considered as guidance for researchers and decision-makers. (C) 2019 Elsevier B.V. All rights reserved.
机译:随着城市化的迅速发展,正在广泛建设下水道系统以收集和运输污水,以最大程度地减少严重的环境和健康问题,特别是与疾病传播有关的问题。下水道内壁上存在丰富的生物膜,可能会导致潜在风险,例如下水道爆炸,有毒气体泄漏以及各种污染物转化产生的管道腐蚀。因此,迫切需要弄清它们的内部机制,以安全地管理下水道系统。在这项研究中,深入分析了下水道生物膜的特征,包括其结构,影响因素和物质转化。结果表明,下水道生物膜(约1.0毫米深)由大量的无机物和一些有机物组成,同时总结了细菌和古细菌的丰富功能属。确定下水道生物膜的影响因素为下水道的运行方式,下水道特性和剪切应力。此外,还对有机物,硫和氮以及新兴的微污染物(例如生物标志物,抗生素抗性基因和工程化的纳米颗粒)的转化进行了研究,以确保下水道安全和公共卫生。因此,当前的审查可以被视为对研究人员和决策者的指导。 (C)2019 Elsevier B.V.保留所有权利。

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