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Microbial Inoculants Development for Bioremediation of Gasoline and Diesel Contaminated Soil

机译:开发用于微生物修复汽油和柴油污染土壤的微生物孕育剂

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In this study, we describe the development of microbial inoculants for the bioremediation of hydrocarbon-contaminated soils through the enrichment of hydrocarbonoclastic populations in municipal solid waste compost (MSWC). Respirometric analyses were performed along with quantification of total heterotrophic bacteria and ester-linked fatty acid methyl ester (EL-FAME) profiling of the microbial communities o f the inoculants. CO 2) -emission rate increased sharply when the compost received application of water plus gasoline or diesel. After 8 (compost diesel) and 12 days (compost gasoline), we observed a significant increase in the number of heterotrophic bacteria. In inoculants receiving gasoline, FAME markers of fungi predominated throughout the incubation period (18 days). By the end of the incubation period, an increase in FAMEmarker for gram-positive bacteria and a decrease for gram-negative bacteria and actinobacteria were observed. In biodegradation trials (data not shown), the inoculants were very efficient, removing over 99% of hydrocarbons from a heavy soil (73% clay) contaminated with either diesel or gasoline (17,000 mg·Kg ﹣1) and 15,000 mg·Kg ﹣1) , respectively). Inoculants based on MSWC enriched in hydrocarbonoclastic microorganisms may be an effective alternative to improve bioremediation in hydrocarbon-contaminated soils.
机译:在这项研究中,我们描述了通过在城市固体废物堆肥(MSWC)中富集烃碎屑种群的生物修复剂来开发烃污染土壤的生物修复剂。进行了呼吸测定以及定量总异养细菌和接种物微生物群落的酯连接脂肪酸甲酯(EL-FAME)分析。当堆肥接受水加汽油或柴油的施用时,CO 2的排放速率急剧增加。在8天(堆肥柴油)和12天(堆肥汽油)之后,我们观察到异养细菌的数量显着增加。在接种汽油的接种物中,真菌的FAME标志在整个培养期间(18天)中占主导地位。在潜伏期结束时,观察到革兰氏阳性菌的FAMEmarker有所增加,而革兰氏阴性菌和放线菌的FAMEmarker有所减少。在生物降解试验中(数据未显示),孕育剂非常有效,可以从被柴油或汽油(17,000 mg·Kg ﹣1)和15,000 mg·Kg ﹣污染的重土壤(73%粘土)中去除99%以上的碳氢化合物。 1)。基于MSWC的富含碳氢化合物碎屑微生物的孕育剂可能是改善碳氢化合物污染土壤中生物修复的有效替代方法。

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