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Effects of combined growth of biogenic and xenobiotic substrates on degradation of xenobiotic by activated sludge

机译:生物生物和异种素底物综合生长对活性污泥血管酸降解的影响

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The purpose of this study was to research about supplementation of different concentrations of the substrate on the degradation rate of xenobiotic and to determine the optimal concentrations of the auxiliary substrates that are most beneficial of xenobiotic degradation rate. 2,4-dichlorophenol acid (2,4-D) was used representative xenobiotic organic compounds, while peptone and sugar used for auxiliary substrates. The activated sludge was completely break down 100 mg/l of 2,4-D for three consecutive times. The different concentrations between biogenic substracts of sucrose and peptone were fed separately or combined into the medium containing 200 mg/l of 2,4-D and 140 mg SS/l of activated sludge. The results showed that sugar and peptone could affect 2,4-D degradation rate to several different degree at different concentrations. In separate supplementation, 2,4-D degradation completed within 25 hours, 40 mg/l sugar and 150 mg/l peptone concentrations were found to be the optimal concentrations. In combined case, 2,4-D was consumed totally within 20 hours and the optimal concentration of the combined sugar and peptone concentrations were 40 and 150 mg/l, respectively.
机译:本研究的目的是研究对Xenobiotic的降解率的不同浓度的基材的补充,并确定最有利于异骨降解速率的辅助基材的最佳浓度。使用2,4-二氯苯酚酸(2,4-D)代表性异黄素有机化合物,而蛋白胨和用于辅助衬底的糖。活化的污泥连续三次完全分解为100mg / L的2,4-d。将蔗糖和蛋白胨的生物外除油之间的不同浓度分别或组合到含有200mg / L的2,4-D和140mg SS / L的活性污泥的培养基中。结果表明,糖和蛋白胨可能影响2,4-D的降解速率,以不同浓度的几个不同程度。在单独的补充中,发现在25小时内完成的2,4-D降解,40mg / L糖和150mg / L蛋白胨浓度是最佳浓度。在组合的情况下,在20小时内完全消耗2,4-D,并且合并的糖和蛋白胨浓度的最佳浓度分别为40和150mg / L.

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