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BTE-OX biodegradation kinetics with MTBE through bioaugmentation

机译:通过生物增强与MTBE的BTE-OX生物降解动力学

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摘要

The biodegradation kinetics of BTE-oX and MTBE, mixed all together, in the presence of bioaugmented bacterial populations as high as 880 mg/L VSS was evaluated. The effect of soil in aqueous samples and the effect of Tergitol NP-10 on substrate biodegradation rates were also evaluated. Biodegradation kinetics was evaluated for 36 hours, every 6 hours. Benzene and o-xylene biodegradation followed a first-order one-phase kinetic model, whereas toluene and ethylbenzene biodegradation was well described by a first-order two-phase kinetic model in all samples. MTBE followed a zero-order removal kinetic model in all samples. The presence of soil in aqueous samples retarded BTE-oX removal rates, with the highest negative effect on o-xylene. The presence of soil enhanced MTBE removal rate. The addition of Tergitol NP-10 to aqueous samples containing soil had a positive effect on substrate removal rate in all samples. Substrate percent removals ranged from 95.4-99.7% for benzene, toluene and ethylbenzene. O-xylene and MTBE percent removals ranged from 55.9-90.1 % and 15.6-30.1 %, respectively.
机译:评估了在生物强化细菌种群高达880 mg / L VSS的情况下,混合在一起的BTE-oX和MTBE的生物降解动力学。还评估了土壤在水性样品中的作用以及Tergitol NP-10对底物生物降解率的影响。每6小时评估36小时的生物降解动力学。苯和邻二甲苯的生物降解遵循一阶一相动力学模型,而甲苯和乙苯的生物降解可以通过一阶两相动力学模型很好地描述所有样品。 MTBE在所有样品中均遵循零级去除动力学模型。水性样品中土壤的存在会阻碍BTE-oX的去除速率,对邻二甲苯的负面影响最大。土壤的存在提高了MTBE的去除率。将Tergitol NP-10添加到含有土壤的水性样品中,对所有样品的底物去除率都有积极影响。苯,甲苯和乙苯的底物去除百分率在95.4-99.7%之间。邻二甲苯和MTBE的去除百分比分别为55.9-90.1%和15.6-30.1%。

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