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Treatment of High Concentration Organic Wastewater with a Sequencing Batch Reactor (SBR) Process Combined with Electro-flotation as a Solids-liquid Separation Method

机译:顺序分批反应器(SBR)结合电浮法固液分离法处理高浓度有机废水

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摘要

Operation characteristics of the sequencing batch reactor (SBR) process with electro-flotation (EF) as a solid liquid separation method (EF-SBR) were investigated. EF-SBR process showed excellent solid-liquid separation performance which enabled to separate biosolids from liquid phase within 30 min and to extend cyclic reaction time. Although influent organic loading rate was increased stepwise from 5 to 15 g COD/day, food to microorganisms (F/M) ratio could be maintained about 0.3 g COD/g VSS/day in EF-SBR because biomass concentration could be easily controlled at desired level by EF. However, it was impossible to increase biomass concentration at the same level in control SBR (C-SBR) process because solid-liquid separation by gravity settling showed a limitation at higher mixed liquor suspended solids (MLSS) concentration with 60 min of settling time. Total chemical oxygen demand (TCOD) removal efficiency of EF-SBR process was not decreased although influent organic loading rate became 3 times higher than initial value. However, it was seriously deteriorated in C-SBR process after increasing the rate over 10 g COD/day, which was accounted for insufficient organic removal by relatively higher food to microorganisms (F/M) ratio as well as biosolids wash-out by a limitation of gravity sedimentation.
机译:研究了使用电浮法(EF)作为固液分离方法(EF-SBR)的测序间歇反应器(SBR)工艺的操作特性。 EF-SBR工艺显示出优异的固液分离性能,能够在30分钟内从液相中分离出生物固体,并延长了循环反应时间。尽管进水有机物负荷率从5克COD /天逐步增加到EF-SBR,食物与微生物(F / M)的比例可以保持在0.3克COD / g VSS /天,因为生物量浓度可以轻松控制在EF所需的水平。但是,在控制SBR(C-SBR)过程中,无法在相同水平上增加生物质浓度,因为通过重力沉降进行固液分离显示,在60分钟的沉降时间下,较高的混合液悬浮固体(MLSS)浓度受到限制。尽管进水有机负荷率比初始值高3倍,但EF-SBR工艺的总化学需氧量(TCOD)去除效率并未降低。但是,在将C-SBR工艺的日处理量提高到10 g / d以上后,其严重恶化,这是由于相对较高的食品与微生物(F / M)比以及有机固相去除率较高而导致有机物去除不足的原因。重力沉降的限制。

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