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Evaluation of the aerobic biodegradation of trichloroethylene via response surface methodology

机译:响应面法评估三氯乙烯的好氧生物降解

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Response surface methodology (RSM) was used to evaluate the effect of additives for enhancing the aerobic biodegradation of trichloroethylene (TCE). The parameters investigated include the initial TCE concentration, addition of extra bacteria, use of toluene as an inducer and hydrogen peroxide as terminal electron acceptor (TEA). Without additive, degradation efficiencies of ≥ 80% were obtained for TCE concentrations < 700 mg/L. According to the second-order polynomial RSM and biodegradation results, the use of toluene to induce enzyme production inhibited degradation at TCE concentrations < 300 mg/L. The addition of hydrogen peroxide did improve the overall degradation efficiency but decreased the degradation rate. The RSM model for toluene, extra bacteria and TEA predicted that the best approach to optimize degradation of high TCE concentrations is to ensure adequate population in conjunction with supplemental TEA.
机译:使用响应表面方法(RSM)评估添加剂对增强三氯乙烯(TCE)有氧生物降解的作用。研究的参数包括初始TCE浓度,添加额外细菌,使用甲苯作为诱导剂和使用过氧化氢作为末端电子受体(TEA)。在没有添加剂的情况下,当TCE浓度<700 mg / L时,降解效率≥80%。根据二阶多项式RSM和生物降解结果,在TCE浓度<300 mg / L时,使用甲苯诱导酶的产生可抑制降解。过氧化氢的添加确实提高了整体降解效率,但是降低了降解速率。甲苯,多余细菌和TEA的RSM模型预测,优化高TCE浓度降解的最佳方法是与补充TEA一起确保足够的种群。

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