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Implementation of a demand-side approach to reduce aeration requirements of activated sludge systems: Directed acclimation of biomass and its effect at the process level

机译:实施需求方方法以减少活性污泥系统的曝气要求:生物量的直接驯化及其在过程水平上的影响

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Conventionally, increased oxygen requirements of biological wastewater treatment systems have been addressed through supply-side approaches that focus on upgrading the oxygen mass transfer capabilities of aeration devices. Such approaches entail high aeration energy penalties for relatively low performance improvements, as well as causing decreased oxygen mass transfer efficiencies. In this study, a nitrifying community acclimated to low dissolved oxygen (DO) conditions has been demonstrated to yield similar treatment performance as a conventional nitrifying process with 20% less aeration requirements and 20% improvement in mass transfer efficiency. Such a demand-side approach has been shown to be successful due to an improvement of the half saturation constant of the acclimated biomass that has, in turn, been linked to the expression of hemoglobin proteins. Directed acclimation of nitrifying communities could help address the operational requirement to carry out ammonia oxidation at consistently low DO conditions in the mainstream anammox and simultaneous nitrification-denitrification processes.
机译:常规上,已经通过侧重于提高曝气装置的氧气传质能力的供应方方法来解决生物废水处理系统对氧气的需求增加。这种方法需要较高的曝气能量损失,以实现相对较低的性能改进,并导致氧气传质效率降低。在这项研究中,已证明适应低溶解氧(DO)条件的硝化群落可产生与常规硝化过程相似的处理性能,其中曝气量减少20%,传质效率提高20%。由于对适应的生物质的半饱和常数的改善,该需求侧方法已被证明是成功的,而该半饱和常数又与血红蛋白的表达有关。硝化群落的直接驯化可以帮助解决在主流厌氧氨化反应中在持续低溶解氧条件下进行氨氧化和同时进行硝化-反硝化过程的操作要求。

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