The Experts below are selected from a list of 119286 Experts worldwide ranked by ideXlab platform
Gaoming Yu - One of the best experts on this subject based on the ideXlab platform.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
Fan Zhang - One of the best experts on this subject based on the ideXlab platform.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
Shaojing Yi - One of the best experts on this subject based on the ideXlab platform.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
Ibrahim M. Banat - One of the best experts on this subject based on the ideXlab platform.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
Lujun Chai - One of the best experts on this subject based on the ideXlab platform.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.
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potential microorganisms for prevention of paraffin precipitation in a hypersaline oil reservoir
Energy & Fuels, 2014Co-Authors: Fan Zhang, Lujun Chai, Shaojing Yi, Ibrahim M. Banat, Gaoming YuAbstract:Based on 454 pyrosequencing of 16S rRNA gene amplicons, Microbial communities in samples collected from seven wells, six of which had positive paraffin deposition reduction and one with negative paraffin deposition reduction upon a Microbial Treatment designed for the prevention of paraffin precipitation, were analyzed. Microbial communities' structures were significantly different for the samples from the negative well and the positive wells. Microbes affiliated with Diaphorobacter belonging to β-Proteobacteria were predominant in the negative well, While γ-Proteobacteria-affiliated microbes of Pseudomonas and Enterobacter and Firmicute-affiliated Bacillus were shared and dominant in the positive wells. Microbes shared in the positive wells could be considered as potential candidates for investigations into Microbial paraffin control. In addition, Microbial activity of hydrocarbon-degradation and Microbial products such as biosurfactants were proposed to be the main potential mechanisms for the Microbial Treatment for the prevention of paraffin precipitation.