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Sludge Pollution Control from Crude Oil Tank Cleaning 被引量:1
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作者 Christopher C. Adigwe Ify L. Nwaogazie +2 位作者 ejikeme ugwoha Adekunle O. David Ndubuisi G. Elemuo 《Journal of Water Resource and Protection》 CAS 2022年第9期632-649,共18页
This study investigated the use of microbial analysis as a bioremediation option for remediating petroleum sludge, which is part of the waste stream generated in the petroleum industry. The aim is to reduce environmen... This study investigated the use of microbial analysis as a bioremediation option for remediating petroleum sludge, which is part of the waste stream generated in the petroleum industry. The aim is to reduce environmental burden caused by the discharge of untreated sludge. Sludge sample was cultured in other to isolate microorganisms for the sludge treatment. The selected strain of the organisms after screening were Aspergillus flavus, Aspergillus niger, Verticillus sp, Penicillum sp, and Microsporium audouinii. Bioreactors (labeled A, B, C, D and O) were designed for the treatment of petroleum sludge. These reactors contain 2.0 × 10<sup>-2</sup> m<sup>3</sup> of the diluted sludge samples and the isolated organisms for the treatment process. On a weekly basis, the control reactors received 1.5 × 10<sup>-3</sup> m<sup>3</sup> of fresh and saline water respectively. After 12 weeks of treatment, sludge physicochemical characteristics showed distinct variations. From the result, reactor D was the best in terms of remediating the sludge as compared to other reactors. Friedman non-parametric test was performed to check if the weeks of treatment affected the reduction of the total hydrocarbon content (THC) in the five reactors and also checked for significant differences in the THC after treatments. The drop in the THC of the treated sludge ranged from 56.0% to 67.3%. These results showed the possibility of enhanced biodegradation of petroleum sludge by hydrocarbon utilizing microorganisms (fungi). 展开更多
关键词 Petroleum Sludge Sludge Pollution Control Crude Oil Tank Cleaning Microbial Analysis BIOREMEDIATION BIOREACTOR
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Sorption and phase distribution of ethanol and butanol blended gasoline vapours in the vadose zone after release 被引量:2
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作者 ejikeme ugwoha John M. Andresen 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第3期608-616,共9页
The sorption and phase distribution of 20% ethanol and butanol blended gasoline(E20 and B20) vapours have been examined in soils with varying soil organic matter(SOM) and water contents via laboratory microcosm experi... The sorption and phase distribution of 20% ethanol and butanol blended gasoline(E20 and B20) vapours have been examined in soils with varying soil organic matter(SOM) and water contents via laboratory microcosm experiments. The presence of 20% alcohol reduced the sorption of gasoline compounds by soil as well as the mass distribution of the compounds to soil solids. This effect was greater for ethanol than butanol. Compared with the sorption coefficient(Kd) of unblended gasoline compounds, the Kd of E20 gasoline compounds decreased by 54% for pentane, 54% for methylcyclopentane(MCP) and 63% for benzene, while the Kd of B20 gasoline compounds decreased by 39% for pentane, 38% for MCP and 49% for benzene. The retardation factor(R) of E20 gasoline compounds decreased by 53% for pentane, 53% for MCP and 48% for benzene, while the R of B20 gasoline compounds decreased by 39% for pentane, 37% for MCP and 38% for benzene. For all SOM and water contents tested, the Kd and R of all gasoline compounds were in the order of unblended gasoline > B20 > E20, indicating that the use of high ethanol volume in gasoline to combat climate change could put the groundwater at greater risk of contamination. 展开更多
关键词 吸附系数 丁醇 乙醇 分布混合 包气带 油蒸汽 土壤有机质 甲基环戊烷
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