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Biodegradation of trichloroethylene and toluene by indigenous microbial populations in soil.

机译:土壤中土著微生物种群对三氯乙烯和甲苯的生物降解。

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The biodegradation of trichloroethylene (TCE) and toluene, incubated separately and in combination, by indigenous microbial populations was measured in three unsaturated soils incubated under aerobic conditions. Sorption and desorption of TCE (0.1 to 10 micrograms ml-1) and toluene (1.0 to 20 micrograms ml-1) were measured in two soils and followed a reversible linear isotherm. At a concentration of 1 micrograms ml-1, TCE was not degraded in the absence of toluene in any of the soils. In combination, both 1 microgram of TCE ml-1 and 20 micrograms of toluene ml-1 were degraded simultaneously after a lag period of approximately 60 to 80 h, and the period of degradation lasted from 70 to 90 h. Usually 60 to 75% of the initial 1 microgram of TCE ml-1 was degraded, whereas 100% of the toluene disappeared. A second addition of 20 micrograms of toluene ml-1 to a flask with residual TCE resulted in another 10 to 20% removal of the chemical. Initial rates of degradation of toluene and TCE were similar at 32, 25, and 18 degrees C; however, the lag period increased with decreasing temperature. There was little difference in degradation of toluene and TCE at soil moisture contents of 16, 25, and 30%, whereas there was no detectable degradation at 5 and 2.5% moisture. The addition of phenol, but not benzoate, stimulated the degradation of TCE in Rindge and Yolo silt loam soils, methanol and ethylene slightly stimulated TCE degradation in Rindge soil, glucose had no effect in either soil, and dissolved organic carbon extracted from soil strongly sorbed TCE but did not affect its rate of biodegradation.
机译:在有氧条件下温育的三种不饱和土壤中,对三氯乙烯(TCE)和甲苯的生物降解,分别进行了单独培养和联合培养,进行了土著微生物种群的测量。在两种土壤中测量TCE(0.1至10微克ml-1)和甲苯(1.0至20微克ml-1)的吸附和解吸,并遵循可逆的线性等温线。在1微克ml-1的浓度下,任何土壤中在没有甲苯的情况下,TCE都不会降解。在大约60至80小时的滞后时间后,同时降解1微克TCE ml-1和20微克甲苯ml-1,降解时间持续70至90 h。通常最初的1微克TCE ml-1中有60%到75%被降解,而100%的甲苯消失了。向具有残留TCE的烧瓶中第二次添加20微克甲苯ml-1,导致又去除了10%至20%的化学物质。甲苯和TCE的初始降解速率在32、25和18摄氏度下相似;但是,滞后时间随温度降低而增加。在土壤含水量为16、25和30%时,甲苯和TCE的降解几乎没有差异,而在含水量为5%和2.5%时,没有可检测到的降解。添加苯酚而不是苯甲酸酯会刺激Rindge和Yolo淤泥质壤土的TCE降解,甲醇和乙烯会轻微刺激Rindge土壤的TCE降解,葡萄糖对两种土壤均无影响,并且从土壤中提取的溶解有机碳被强烈吸附TCE,但不影响其生物降解率。

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