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Biodegradation of hexachlorocyclohexane-isomers in contaminated soils.

机译:六氯环己烷异构体在受污染土壤中的生物降解。

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摘要

Several sites that are contaminated with isomers of the chlorinated insecticide hexachlorocyclohexane (HCH) are present across the globe and cause toxicity. For their bioremediation, we studied the degradation of HCH-isomers in contaminated soils by an isolate Pseudomonas aeruginosa ITRC-5. The degradation is optimal at 2 mg technical-HCH (t-HCH)/g soil, 15% water content, pH 8.0, temperature 28 degrees C and inoculum density 106 colony forming unit/g soil. Under these conditions, from 5 kg soil, &98% alpha - and gamma -HCH, 17% beta -HCH and 76% delta -HCH are degraded after 15 days of incubation, which is accompanied with the release of 600 micro g chloride/mg t-HCH. Concomitant to the degradation, a four-fold reduction in the toxicity of HCH-isomers to earthworm, Eisenia foetida, is also observed. Addition of ITRC-5 enhanced the degradation of soil-applied HCH-isomers in 'open field' conditions as well, and 97%, 43%, 94% and 77% of alpha -, beta -, gamma - and delta -HCH, respectively, are degraded after 12 weeks of incubation. Thus, the bacterium causes microbial degradation and detoxification of HCH-isomers, and can be used for the bioremediation of contaminated soils..
机译:全球有数个被氯化杀虫剂六氯环己烷(HCH)的异构体污染的场所。对于它们的生物修复,我们研究了分离的铜绿假单胞菌ITRC-5对HCH异构体在污染土壤中的降解。在2 mg工业六氯环己烷(t-HCH)/克土壤,15%水分,pH 8.0,温度28摄氏度和接种密度106菌落形成单位/克土壤时,降解效果最佳。在这些条件下,孵育15天后,从5 kg的土壤中,> 98%的α-和γ-六氯环己烷,17%的β-六氯环己烷和76%的δ-六氯环己烷被降解,并伴有600微克氯化物的释放/毫克六氯环己烷。伴随降解,还观察到六氯环己烷异构体对worm(Eisenia foetida)的毒性降低了四倍。加入ITRC-5也会促进在“露天”条件下土壤施用的六氯环己烷异构体的降解,α-,β-,γ-和δ-HCH的比例分别为97%,43%,94%和77%,孵育12周后,它们分别降解。因此,该细菌可引起HCH异构体的微生物降解和解毒,并可用于受污染土壤的生物修复。

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