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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >Kinetic Modelling and Half-Life Study on Enhanced Soil Bioremediation of Bonny Light Crude Oil Amended with Crop and Animal-Derived Organic Wastes
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Kinetic Modelling and Half-Life Study on Enhanced Soil Bioremediation of Bonny Light Crude Oil Amended with Crop and Animal-Derived Organic Wastes

机译:作物和动物源性有机废物改良的Bonny轻质原油增强土壤生物修复的动力学模型和半衰期研究

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摘要

In this study, the potential effects of crop and animal-derived organic wastes as nutrient supplements to biostimulate autochthonous microflora for hydrocarbon biodegradation were investigated. Microcosms containing soil were spiked with weathered Bonny light crude oil (WBLCO) (10 % w/w) and amended with various amounts of groundnut shell, beans shell, melon shell, cassava peels, cow dung and pig dung alone or in combinations. The rates of biodegradation of the crude oil were studied for a remediation period of 42 days under laboratory conditions. The results showed that there was a positive relationship between the rate of petroleum hydrocarbons biodegradation and presence of the crop and animal-derived organic wastes alone or in combination in soil microcosms contaminated with crude oil. The WBLCO biodegradation data fitted well to the first-order kinetic model. The model revealed that WBLCO contaminated-soil microcosms amended with crop and animal-derived organic wastes had higher biodegradation rate constants (k) as well as lower half-life times (t1/2) than soil microcosms amended with NPK fertilizer and unamended soil (natural attenuation) remediation system. The biodegradation rate constant and estimated biostimulation efficiency values showed that among the crop and animal-derived organic wastes used alone and in combinations, pig dung suggest to offer the best biostimulation performance, which was closely followed by the combination of pig dung and cassava peels. The system proposed here is inexpensive, efficient, and environmentally friendly and may thus offer a viable choice for petroleum hydrocarbons-contaminated soil remediation.
机译:在这项研究中,研究了作物和动物来源的有机废物作为营养补充物对生物刺激的自生微生物群落进行烃类生物降解的潜在作用。用风化的Bonny轻质原油(WBLCO)(10%w / w)加标含有土壤的缩微物质,并单独或组合用各种量的花生壳,豆壳,瓜壳,木薯皮,牛粪和猪粪进行改良。在实验室条件下研究了42天的修复期内原油的生物降解率。结果表明,石油烃的生物降解速度与农作物和动物来源的有机废物的单独存在或与原油污染的土壤微观世界结合存在正相关关系。 WBLCO生物降解数据非常适合一阶动力学模型。该模型显示,与农作物和动物来源的有机废物一起修正的WBLCO污染土壤微观世界具有比NPK肥料和未修正的土壤修正的土壤微观世界更高的生物降解速率常数(k)以及更低的半衰期(t1 / 2)。自然衰减)修复系统。生物降解速率常数和估计的生物刺激效率值表明,在单独或组合使用的农作物和动物源性有机废物中,猪粪建议提供最佳的生物刺激性能,紧随其后的是猪粪和木薯皮的组合。这里提出的系统便宜,高效且环保,因此可以为污染石油烃的土壤修复提供可行的选择。

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