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Microbiological and physicochemical treatments applied to metallurgic industry aiming water reuse

机译:微生物和理化处理应用于冶金工业,旨在回用水

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摘要

A study was conducted on the reuse of the water in a system composed of a sewage treatment plant (STP) using prolonged aeration with activated sludge and a compact water treatment plant (CWTP) in a metallurgic industry. The processes for obtaining the water for reuse were microbiological and physicochemical. The domestic sewage was then pumped to the STP, where biological flocks were formed and clarified water was obtained. The efficiency of the microbiological process in the STP was evaluated for removal of biochemical oxygen demand (BOD), chemical oxygen demand (COD) and sedimentary solids (SS). The efficiency of physicochemical processes for clarifying the water and disinfection was evaluated through analysis of pH, turbidity, color, aerobic heterotrophic bacterial count, free chlorine, hardness, alkalinity, chlorides, sulfates and dissolved total solids (DTS). In the reuse of the water, acute toxicity for the microcrustaceans Daphnia similis was also evaluated.
机译:在冶金工业中,对由污水处理厂(STP)组成的系统中的水的再利用进行了研究,该系统使用了带有活性污泥的长时间曝气和紧凑型水处理厂(CWTP)。获得回用水的过程是微生物学和物理化学学。然后将生活污水泵送到STP,在那里形成生物群并获得澄清的水。对STP中微生物过程的效率进行了评估,以去除生化需氧量(BOD),化学需氧量(COD)和沉积固体(SS)。通过分析pH值,浊度,颜色,好氧异养细菌计数,游离氯,硬度,碱度,氯化物,硫酸盐和溶解的总固体(DTS)来评估理化水和消毒过程的物理化学过程的效率。在水的再利用中,还评估了对小甲壳类水蚤(Daphnia similis)的急性毒性。

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