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Effects of a Nutrient-Surfactant Compound on Solubilization Rates of TCE

机译:营养表面活性剂化合物对TCE增溶速率的影响

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BioTreat~(TM), a commercially available nutrient-surfactant compound, was investigated for its ability to solubilize TCE. Potential mechanisms for enhancing biodegradation rates by the use of nutrient-surfactant mixtures are: increased solubilization of TCE into the aqueous phase, and increased nutrients for the bacteria and greater numbers of colony forming units (CFUs). In aqueous systems, no measured solubilization of 0.1 and 1.0 ppm TCE from the headspace into the liquid phase was observed with BioTreat added at concentrations <0.5%. However, at BioTreat concentrations in excess of the CMC (≥0.5%), increased solubilization of TCE was measured. A second question was the nutrient effect of BioTreat on the growth of the TCE-degrading bacterium, Burkholderia cepacia G4 PR1_(301). The added nutrients provided by BioTreat was evident and lead to increased cell numbers. The effect of BioTreat on the expression of ortho-monooxgenase, the enzyme necessary for TCE degradation by B. cepacia was also investigated. Enzyme expression as detected by a colorimetric assay was inhibited for BioTreat concentrations >0.05%.
机译:研究了可商购的营养表面活性剂化合物BioTreatTM溶解TCE的能力。通过使用营养表面活性剂混合物来提高生物降解速度的潜在机制是:将TCE增溶到水相中,以及增加细菌的养分和增加菌落形成单位(CFU)的数量。在水性系统中,添加浓度<0.5%的BioTreat时,未观察到0.1和1.0 ppm TCE从顶空到液相的溶解度。但是,在BioTreat浓度超过CMC(≥0.5%)的情况下,TCE的溶解度增加。第二个问题是BioTreat对降解TCE的细菌伯克霍尔德菌洋葱伯克霍尔德菌G4 PR1_(301)的营养作用。 BioTreat提供的营养补充很明显,并导致细胞数量增加。还研究了BioTreat对原单氧合酶表达的影响,原单氧合酶是洋葱伯克霍尔德菌降解TCE所必需的酶。通过比色测定检测到的酶表达在BioTreat浓度> 0.05%时被抑制。

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