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Evaluating the role of microbial stress response mechanisms in causing biological treatment system upset

机译:评估微生物应激反应机制在引起生物治疗系统不适中的作用

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It is known that microbial stress mechanisms play a significant role in short-term microbial adaptation to environmental perturbations, and activation of these mechanisms enhance a cell's chance for surviving the perturbation with minimal damage. Although the target of these mechanisms is protective at the cellular level, the effect may be disruptive at the macroscopic level in engineered bioreactor systems. In this paper, it is proposed that these mechanisms are activated in response to wastewater influent perturbations and may be a significant cause of activated sludge treatment process upset. Selected microbial stress responses are reviewed and hypotheses indicating their potential role in treatment process upset are proposed. A research approach that was previously used to identify the mechanistic cause of deflocculation during perturbation by electrophilic chemicals is summarized, and a protocol for future experiments geared toward establishing source-cause-effect relationships for a range of wastewater upset conditions is put forth. Identifying source-cause-effect relationships will provide a basis for development of new monitoring technologies and operational strategies for systems under the influence of influent chemical perturbations. [References: 32]
机译:众所周知,微生物应激机制在短期微生物对环境扰动的适应中起着重要作用,而激活这些机制可提高细胞在最小程度的破坏下生存下来的机会。尽管这些机制的目标是在细胞水平上起保护作用,但在工程化生物反应器系统中,这种作用在宏观水平上可能是破坏性的。在本文中,建议这些机制是响应废水进水扰动而激活的,并且可能是导致活性污泥处理过程不正常的重要原因。审查了选定的微生物应激反应,并提出了表明其在治疗过程异常中可能发挥作用的假设。总结了以前用于确定亲电子试剂在扰动过程中发生絮凝的机理的研究方法,并提出了针对未来实验的协议,该协议旨在建立一系列废水扰动条件的源-因-效应关系。识别源-因-效应关系将为开发新的监测技术和系统的策略提供基础,这些新的监测技术和系统是在受到化学干扰影响的系统中运行的。 [参考:32]

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