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Influence of Metal Ions on Biodegradation of High Organic Load Wastewater by Photosynthetic Bacteria

机译:金属离子对光合细菌生物降解高有机负荷废水的影响

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Laboratory simulated brewery wastewater with chemical oxygen demand (COD) and total phosphorus (TP) of 10,000 and 685.6mg/L was used to study the effects of metal ions supplement on pollutants biodegradation by phototrophic bacteria named Rhodobacter sphaeroides Z08. The results showed that the process, when operated microaerobically at 20ȁ3;30°C, influent supplemented with ferrous 50mg/L, molybdenum 200mg/L, and magnesium 400mg/L yielded 55 on6; 38; 43 on6;36; 41 on6; 36% reductions of COD and TP respectively at three day hydraulic retention time. Binary addition of ferrous and molybdenum increased the cell growth without any significant effect on the pollutants removal. Best impact was binary addition of ferrous and magnesium which yielded still 55% COD reduction but with higher bacterial biomass (1536mg/L DCW). Chemical analysis of the treated wastewater and the harvested biomass showed that majority of the inorganic constituents of the wastewater were assimilated by the bacteria which is an indication of its metal tolerance ability.
机译:实验室模拟的啤酒废水的化学需氧量(COD)和总磷(TP)分别为10,000和685.6mg / L,用于研究补充金属离子对球形营养细菌Sphaeroides Z08的生物降解污染物的影响。结果表明,该工艺在20°3; 30°C下微氧操作时,补充亚铁50mg / L,钼200mg / L和镁400mg / L的进水可产生55 on6。 38; 43分6; 36; 41 on6;在三天的水力停留时间内,COD和TP分别降低了36%。二元铁和钼的二元添加增加了细胞的生长,而对污染物的去除没有任何显着影响。最好的影响是二价添加亚铁和镁,仍然可以减少55%的COD,但细菌生物量更高(1536mg / L DCW)。对处理后的废水和收获的生物质的化学分析表明,废水中的大部分无机成分被细菌吸收,这表明其对金属的耐受能力。

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