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Wastewater treatment with biomass attached to porous geotextile baffles

机译:附着在多孔土工织物挡板上的生物质处理废水

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摘要

A bench-scale study used nonwoven geotextiles as a compact biomass host media to treat wastewater from a combined sewer system. The geotextile coupons were used as baffles and suspended in an aerated reactor. Each baffle was offset in succession to form a sinuous channel with permeable boundaries. Filtering the total suspended solids (TSS) and micro-organisms formed a biomass floc in the interior of the baffles, which grew to emerge on the Surface. Suspended and nonsettleable colloidal solids in the influent wastewater were captured by both filtration and adsorption from the channel flow. This bench-scale setup, named the geotextile baffle contact system, consistently provided secondary treatment to influent concentrations up to 318 mg/1 of TSS and 114 mg/l of biological oxygen demand. Ammonia (NH3-N) concentrations were reduced over 90%, and mineralization of the nitrate (NO3-N) was also observed when the biofilm aged and thickened. Some of the influent TSS and sloughed biomass from the baffles settled to the bottom of the tank.
机译:一项基准规模的研究使用非织造土工布作为紧凑的生物质宿主介质来处理联合下水道系统的废水。土工织物试样被用作挡板并悬浮在充气反应器中。每个挡板相继偏移以形成具有可渗透边界的弯曲通道。过滤掉总悬浮固体(TSS)和微生物后,在挡板内部形成了生物质絮凝物,并逐渐浮出水面。通过过滤和吸附从通道流中捕获进水废水中的悬浮和不可沉降的胶体固体。这种台式规模的设备被称为土工织物折流板接触系统,始终如一地提供了高达318 mg / 1 TSS的进水浓度和114 mg / l生物需氧量的二级处理。当生物膜老化并增厚时,氨(NH3-N)的浓度降低了90%以上,并且还观察到硝酸盐(NO3-N)的矿化。来自挡板的一些进水TSS和掉落的生物质沉降到池底。

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