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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Operation optimization of a photo-sequencing batch reactor for wastewater treatment: Study on influencing factors and impact on symbiotic microbial ecology
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Operation optimization of a photo-sequencing batch reactor for wastewater treatment: Study on influencing factors and impact on symbiotic microbial ecology

机译:废水处理光测序批量反应器的操作优化:对影响因素的研究与对共生微生物生态的影响

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摘要

Wastewater treatment technology with better energy efficiency and recyclability is in urgent demand. Photo-Sequencing batch reactor (SBR), which introduces microalgae into conventional SBR, is considered to have more potential for resource recycling. In this study, a photo-SBR was evaluated through the manipulation of several key operational parameters, i.e., aeration strength, light supply intensity and time per cycle, and solid retention time (SRT). The algal-bacterial symbiotic system had the potential of removing COD, NH4+-N and TN with limited aeration, representing the advantage of energy-saving by low aeration requirement. Maintaining appropriate proportion of microalgae in the symbiotic system is critical for good system performance. Introducing microalgae into conventional SBR has obvious impact on the original microbial ecology. When the concentration of microalgae is too high (> 4.60 mg Chl/L), the inhibition on certain phyla of bacteria, e.g., Bacteroidetes and Actinobacteria, would become prominent and not conducive to the stable operation.
机译:污水处理技术具有更好的能效和可回收性的迫切需求。将微藻的光学序分批反应器(SBR)引入常规SBR,被认为具有更多的资源回收潜力。在该研究中,通过操纵若干关键操作参数,即曝气强度,每周期光源强度和时间和固体保留时间(SRT)来评估光学SBR。藻类 - 细菌共生体系的潜力能够去除COD,NH4 + -N和TN,其具有有限的通气,代表通过低通量要求节能的优点。在共生系统中保持适当比例的微藻对良好的系统性能至关重要。将微藻引入常规SBR对原始微生物生态的影响显而易见。当微藻浓度过高(> 4.60mg CHL / L)时,对细菌的某些噬菌体的抑制作用,例如菌体和抗菌菌,将变得突出并且不利于稳定的操作。

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