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Start-up performance and granular sludge features of an improved external circulating anaerobic reactor for algae-laden water treatment

机译:改进的外部循环厌氧反应器用于含藻水处理的启动性能和颗粒污泥特性

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摘要

The microbial characteristics of granular sludge during the rapid start of an enhanced external circulating anaerobic reactor were studied to improve algae-laden water treatment efficiency. Results showed that algae laden water was effectively removed after about 35 d, and the removal rates of chemical oxygen demand (COD) and algal toxin were around 85% and 92%, respectively. Simultaneously, the gas generation rate was around 380 mL/gCOD. The microbial community structure in the granular sludge of the reactor was complicated, and dominated by coccus and filamentous bacteria. Methanosphaera, Methanolinea, Thermogymnomonas, Methanoregula, Methanomethylovorans, and Methanosaeta were the major microorganisms in the granular sludge. The activities of protease and coenzyme F420 were high in the granular sludge. The intermittent stirring device and the reverse-flow system were further found to overcome the disadvantage of the floating and crusting of cyanobacteria inside the reactor. Meanwhile, the effect of mass transfer inside the reactor can be accelerated to help give the reactor a rapid start.
机译:研究了增强型外部循环厌氧反应器快速启动过程中颗粒污泥的微生物特性,以提高含藻水处理效率。结果表明,载有藻类的水在约35天后被有效去除,化学需氧量(COD)和藻类毒素的去除率分别约为85%和92%。同时,气体产生速率约为380 mL / gCOD。反应器颗粒污泥中的微生物群落结构复杂,且以球菌和丝状细菌为主。甲烷菌,甲醇,嗜热菌,甲烷八叠球,甲烷甲基甲硫醚和甲烷菌是颗粒污泥中的主要微生物。颗粒污泥中蛋白酶和辅酶F420的活性较高。还发现间歇搅拌装置和逆流系统克服了反应器内部蓝细菌浮起和结cru的缺点。同时,可以加速反应器内部的传质效果,以帮助使反应器快速启动。

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