微生物攻法(MEOR)研究の現状と展望 技術開発の将来展望と課題
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Published in | 石油技術協会誌 Vol. 73; no. 6; pp. 531 - 540 |
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Main Authors | , , |
Format | Journal Article |
Language | Japanese |
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石油技術協会
01.11.2008
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Online Access | Get full text |
ISSN | 0370-9868 1881-4131 |
DOI | 10.3720/japt.73.531 |
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Author | 藤原, 和弘 榎本, 兵治 菅井, 裕一 |
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References | Townsend, G. T.; Prince, R. C.; Suflita, J. M., 2003 : Anaerobic Oxidation of Crude Oil Hydrocarbons by the Resident Microorganisms of a Contaminated Anoxic Aquifer, Environ. Sci. Technol. 37(22), 5213-5218. Ono, K., Maezumi, S., Sarma, H. K., Enomoto, H., Hong, C-X., Zhou S-C. and Fujiwara, K, 1999 : Implementation and Performance of a Microbial Enhanced Oil Recovery Field Pilot in Fuyu Oilfield, Chaina, Society of Petroleum Engineers, 54328. 野村暢彦, 2006 : 微生物による石油成分系化合物の代謝研究とその多角的応用研究, 生物工学会誌, 84(4), 127-132. Maezumi, S., Sarma, H. K., Yazawa, N., Zhou, S-C., Fujiwara, K., Enomoto H. and Hong. C-X.,1999 : Performance of Microbial Huff-n-Puff Tests and Preparation for a Microbial Flood in Fuyu Oilfield, China, Proceeding of 20th Workshop of the International Energy Agency. 藤原和弘・菅井裕一・榎本兵冶, 2008a : 微生物攻法 (MEOR) 研究の研究と展望―その概要と有用微生物について―, 石技誌, 73(3), 244-253. Telang, A. J., Ebert, S., Foght, J. M., Westlake, D. W. S., Jenneman, G. E., Gevertz, D. and Voordouw, G., 1997 : Effect of Nitrate Injection on the Microbial Community in an Oil Field as Monitored by Reverse Sample Genome Probing, Appl. Envir. Microbiol. 63: 1785-1793. Fujiwara, K., Tanaka, S., Ohtsuka, M., Ichimura, N., Yonebayashi, H., Hong C-X. and Enomoto, H., 1999 : Evaluation of the Use of Amplified 16S rRNA Gene-Restriction Fragment Length Polymorphism Analysis to Detect Enterobacter cloacae and Bacillus licheniformis for Microbial Enhanced Oil Recovery Field Pilot. Sekiyu Gakkaishi, 42 (5), 342-351. 藤原和弘・服部嘉行・鹿野早苗・向谷 司・宮川喜洋・高林克百・伊藤 孝・前田治男, 2008c : 深度地下油層に棲息する油層内地殻微生物群の解析 (第2報), 環境バイオテクノロジー学会要旨. P.14 菅井裕一・木下 睦・湯本徹也・榎本兵治・洪 承燮・藤原和弘・大野健二, 2005 : 非水溶性ポリマー生産微生物CJF-002による油層内流体のプロファイル・モディフィケーション, 石技誌, 70(4), 315-327. 永瀬圭司・張淑涛・浅海博基・矢澤仁徳・藤原和弘・榎本兵治・洪 承燮, 2003 : 中国扶余油田での微生物攻法フィールドテストの成功例, 石技誌, 68(4), 271-281. Yonebayasi, H., Enomoto, H., Chida T. and Fujiwara, K., 1996b : Application of Microbial Enhanced Oil Recovery to Waterflooded Reservoir, Proceeding of 17th Workshop of the International Energy Agency, Sydney Australia, September. Fujiwara, K., Tanaka, S., Ohtsuka, M., Yonebayashi, H. and Enomoto H., 2000a : Identification of Bacteria Used for Microbial Enhanced Oil Recovery Process by Fluorescence In Situ Hybridization Technique. Sekiyu Gakkaishi, 43 (1), 43-15. 藤原和弘・田中信治・大塚牧子・中谷一記・前角繁之・矢澤仁徳・洪 承燮・千田 佶・榎本兵治, 2000b : 微生物攻法 (MEOR) のための油層内細菌活動に関する調査, 石油学会誌, 43 (4), 274-285. Clark J. B., Munnecke, D. M., Janneman, G. E., 1981 : Dev. Ind. Microbiol., 22, 695-701. Yonebayasi, H., Enomoto, H., Fujiwara, K., Chida T. and Hong, C-X., 1997b : Laboratory R & D leads to MEOR Field Pilot in Fuyu-oilfield, Chaina, Proceeding of 9th European Symposium on Improved Oil Recovery. 藤原和弘, 2003 : 「セルロースの科学」 第11章5節「油田で働くセルロース」, 149-151, 朝倉書店. 大塚牧子・藤原和弘・菅井裕一・木下 睦・榎本兵治・千田 佶・矢澤仁徳・永瀬圭司・洪 承燮・崔 吉, 2004 : Characterization of a Water-insoluble Polymer Producing Bacterium Enterobacter sp. CJF-002 for MEOR, J. Jpn. Petro. Inst. 47(4), 282-292. Nagase, K., Zhang, S. T., Asami, H., Yazawa, N., Fujiwara, K., Enomoto, H., Hong, C-X. and C. Liang, X., 2001a : Improvement of Sweep Efficiency by Microbial EOR Process in Fuyu Oilfield, China, Society of Petroleum Engineers, 68720. 米林英治・田口 充・藤原和弘・吉田信一郎・榎本兵治・1996a : 微生物攻法に関する研究の現状とフィールドテストへの展望, 石技誌, 61(6), 485-493. Fujiwara, K., 2000c : Monitoring of microorganisms injected into oil reservoir on a Microbial Enhanced Oil Recovery Field Pilot, Proceeding of International Symposium on Research and Education in the 21st Century, Sendai, Japan, 31-37. Maudgalya, S., Knapp, R. M. and Mclnerney M. J., 2007 : Microbial Enhanced-Oil-Recovery Technologies : A Review of the Past, Present, and Future, Society of Petroleum Engineers, 106978. Strous, M, Fuerst, J.A., Kramer, E.H., Logemann, S., Muyzer, G., van de Pas-Schoonen, K.T., Webb, R., Kuenen, J.G. and Jetten, M.S., 1999 :Missing lithotroph identified as new planctomycete, Nature. 400, 446-449. Fujiwara, K. and Ohno, K., 2005a : Microbial design aspects of MIOR/MEOR, Proceeding of 4th International Conference Improved Oil Recovery, Teheran, Iran. Eckforda R.E. and Fedorak P.M., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter 11 Using nitrate to control microbially-produced hydrogen sulfide in oil field waters, 307-340, Elsevier Science B.V. 藤原和弘, 2001b : 技術予測レポート第2巻「エネルギー・地球危機への対応技術編」, 第21節「微生物を利用した石油増進回収技術の研究開発とその将来展望」, 224-232, 日本ビジネスレポート. 菅谷和夫, 2006 : 備蓄原油の生物学的脱窒プロセスに関する研究, 新潟大学工学部研究報告. 藤原和弘, 2001a : 微生物石油増進回収技術の開発研究の現状とセルロース生産微生物の利用, Cellulose Commun., 8 (3), 127-131. Fujiwara, K., Sugai, Y., Yazawa, N., Ohno, K., Hong C.X. and Enomoto, H., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter15 Biotechnological approach for development of microbial enhanced oil recovery technique, 405-445, Elsevier Science B.V. 藤原和弘・菅井裕一・崔 吉・榎本兵冶, 2008d : 微生物攻法 (MEOR) 研究の研究と展望―実用技術化に向けての取り組み―, 石技誌, in press 竹原美佳・齊藤, 2005 : 中国/カナダ : 中国国有石油会社がカナダのオイルサンド事業に進出, 石油・天然ガス資源情報. 藤原和弘・服部嘉行・鹿野早苗・向谷 司・宮川喜洋・高林克百・伊藤 孝・前田治男, 2007 : 深度地下油層に棲息する油層内地殻微生物群の解析, 環境バイオテクノロジー学会要旨. P.21 Yonebayasi, H., Ono, K., Enomoto, H., Chida, T., Hong, C-X. and Fujiwara K., 1997a : ;Microbial enhanced oil recovery field pilot in a waterflooded reservoir, Society of Petroleum Engineers, 38070. Fujiwara, K. and Enomoto H., 2003 : Contribution of biotechnology toward advancing the practical use of MEOR—our experience—, Proceeding of 2nd International Conference of Petroleum Biotechnology, Mexico City, Mexico. Fujiwara, K. and Ohno, K., 2005b : Good design and operation of MIOR/MEOR field test based on the biotechnological approaches, Proceeding of 13th International Oil, Gas and Petrochemicals Congress, Teheran, Iran. Fujiwara, K., Mukaidani, T., Kano, S., Hattori, Y., Maeda, H., Miyagawa, Y., Takabayashi, K., Okatsu, K., 2006 : Research Study for Microbial Restoration of Methane Deposit with Subsurface CO2 Sequestration into Depleted Gas/Oil Fields, Society of Petroleum Engineers, 101248. Nagase, K., Zhang, S. T., Asami, H., Yazawa, N., Fujiwara, K., Enomoto, H., Hong, C-X. and Liang X., 2001b : Introduction of Microbial EOR Process to Plug High-K Layer by Insoluble Polymer, Proceeding of 22th Workshop of the International Energy Agency, Poland. 榎本兵治・藤原和弘・米林英治, 2000 : 微生物攻法 (MEOR) フィールドテストのための基礎的研究, 石油学会誌, 43 (2), 91-104. Bryant R. S., 1990 : U. S. DOE Report, NIPER-478, August, DE91002208. Birkeland, N. K., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter14 The microbial diversity of deep subsurface oil reservoirs, 385-404, Elsevier Science B.V. Nagase, K., Zhang, S. T., Asami, H., Yazawa N., Fujiwara, K., Enomoto, H., Hong C. X. and Liang, X. 2002 : A Successful Field Test of Microbial EOR Process in Fuyu Oilfield China, Society of Petroleum Engineer, 75238. 藤原和弘・鹿野早苗・服部嘉行・向谷 司・前田治男・宮川喜洋・高林克百・岡津弘明, 2008b : 枯渇油田および油層常在微生物を利用した天然ガス鉱床の再生技術の開発, J. Environ. Biotechnol. 8(1), 17-28. |
References_xml | – reference: 菅井裕一・木下 睦・湯本徹也・榎本兵治・洪 承燮・藤原和弘・大野健二, 2005 : 非水溶性ポリマー生産微生物CJF-002による油層内流体のプロファイル・モディフィケーション, 石技誌, 70(4), 315-327. – reference: 榎本兵治・藤原和弘・米林英治, 2000 : 微生物攻法 (MEOR) フィールドテストのための基礎的研究, 石油学会誌, 43 (2), 91-104. – reference: Maezumi, S., Sarma, H. K., Yazawa, N., Zhou, S-C., Fujiwara, K., Enomoto H. and Hong. C-X.,1999 : Performance of Microbial Huff-n-Puff Tests and Preparation for a Microbial Flood in Fuyu Oilfield, China, Proceeding of 20th Workshop of the International Energy Agency. – reference: Yonebayasi, H., Enomoto, H., Chida T. and Fujiwara, K., 1996b : Application of Microbial Enhanced Oil Recovery to Waterflooded Reservoir, Proceeding of 17th Workshop of the International Energy Agency, Sydney Australia, September. – reference: Fujiwara, K., Tanaka, S., Ohtsuka, M., Ichimura, N., Yonebayashi, H., Hong C-X. and Enomoto, H., 1999 : Evaluation of the Use of Amplified 16S rRNA Gene-Restriction Fragment Length Polymorphism Analysis to Detect Enterobacter cloacae and Bacillus licheniformis for Microbial Enhanced Oil Recovery Field Pilot. Sekiyu Gakkaishi, 42 (5), 342-351. – reference: Bryant R. S., 1990 : U. S. DOE Report, NIPER-478, August, DE91002208. – reference: 藤原和弘, 2001b : 技術予測レポート第2巻「エネルギー・地球危機への対応技術編」, 第21節「微生物を利用した石油増進回収技術の研究開発とその将来展望」, 224-232, 日本ビジネスレポート. – reference: 藤原和弘・服部嘉行・鹿野早苗・向谷 司・宮川喜洋・高林克百・伊藤 孝・前田治男, 2007 : 深度地下油層に棲息する油層内地殻微生物群の解析, 環境バイオテクノロジー学会要旨. P.21 – reference: Nagase, K., Zhang, S. T., Asami, H., Yazawa N., Fujiwara, K., Enomoto, H., Hong C. X. and Liang, X. 2002 : A Successful Field Test of Microbial EOR Process in Fuyu Oilfield China, Society of Petroleum Engineer, 75238. – reference: 藤原和弘, 2001a : 微生物石油増進回収技術の開発研究の現状とセルロース生産微生物の利用, Cellulose Commun., 8 (3), 127-131. – reference: Fujiwara, K. and Ohno, K., 2005b : Good design and operation of MIOR/MEOR field test based on the biotechnological approaches, Proceeding of 13th International Oil, Gas and Petrochemicals Congress, Teheran, Iran. – reference: Yonebayasi, H., Ono, K., Enomoto, H., Chida, T., Hong, C-X. and Fujiwara K., 1997a : ;Microbial enhanced oil recovery field pilot in a waterflooded reservoir, Society of Petroleum Engineers, 38070. – reference: 藤原和弘・田中信治・大塚牧子・中谷一記・前角繁之・矢澤仁徳・洪 承燮・千田 佶・榎本兵治, 2000b : 微生物攻法 (MEOR) のための油層内細菌活動に関する調査, 石油学会誌, 43 (4), 274-285. – reference: Fujiwara, K., Tanaka, S., Ohtsuka, M., Yonebayashi, H. and Enomoto H., 2000a : Identification of Bacteria Used for Microbial Enhanced Oil Recovery Process by Fluorescence In Situ Hybridization Technique. Sekiyu Gakkaishi, 43 (1), 43-15. – reference: Ono, K., Maezumi, S., Sarma, H. K., Enomoto, H., Hong, C-X., Zhou S-C. and Fujiwara, K, 1999 : Implementation and Performance of a Microbial Enhanced Oil Recovery Field Pilot in Fuyu Oilfield, Chaina, Society of Petroleum Engineers, 54328. – reference: 藤原和弘・鹿野早苗・服部嘉行・向谷 司・前田治男・宮川喜洋・高林克百・岡津弘明, 2008b : 枯渇油田および油層常在微生物を利用した天然ガス鉱床の再生技術の開発, J. Environ. Biotechnol. 8(1), 17-28. – reference: Fujiwara, K., Mukaidani, T., Kano, S., Hattori, Y., Maeda, H., Miyagawa, Y., Takabayashi, K., Okatsu, K., 2006 : Research Study for Microbial Restoration of Methane Deposit with Subsurface CO2 Sequestration into Depleted Gas/Oil Fields, Society of Petroleum Engineers, 101248. – reference: Nagase, K., Zhang, S. T., Asami, H., Yazawa, N., Fujiwara, K., Enomoto, H., Hong, C-X. and C. Liang, X., 2001a : Improvement of Sweep Efficiency by Microbial EOR Process in Fuyu Oilfield, China, Society of Petroleum Engineers, 68720. – reference: Fujiwara, K. and Enomoto H., 2003 : Contribution of biotechnology toward advancing the practical use of MEOR—our experience—, Proceeding of 2nd International Conference of Petroleum Biotechnology, Mexico City, Mexico. – reference: 藤原和弘・菅井裕一・榎本兵冶, 2008a : 微生物攻法 (MEOR) 研究の研究と展望―その概要と有用微生物について―, 石技誌, 73(3), 244-253. – reference: 野村暢彦, 2006 : 微生物による石油成分系化合物の代謝研究とその多角的応用研究, 生物工学会誌, 84(4), 127-132. – reference: 藤原和弘・菅井裕一・崔 吉・榎本兵冶, 2008d : 微生物攻法 (MEOR) 研究の研究と展望―実用技術化に向けての取り組み―, 石技誌, in press – reference: Strous, M, Fuerst, J.A., Kramer, E.H., Logemann, S., Muyzer, G., van de Pas-Schoonen, K.T., Webb, R., Kuenen, J.G. and Jetten, M.S., 1999 :Missing lithotroph identified as new planctomycete, Nature. 400, 446-449. – reference: 藤原和弘, 2003 : 「セルロースの科学」 第11章5節「油田で働くセルロース」, 149-151, 朝倉書店. – reference: Fujiwara, K. and Ohno, K., 2005a : Microbial design aspects of MIOR/MEOR, Proceeding of 4th International Conference Improved Oil Recovery, Teheran, Iran. – reference: 菅谷和夫, 2006 : 備蓄原油の生物学的脱窒プロセスに関する研究, 新潟大学工学部研究報告. – reference: Telang, A. J., Ebert, S., Foght, J. M., Westlake, D. W. S., Jenneman, G. E., Gevertz, D. and Voordouw, G., 1997 : Effect of Nitrate Injection on the Microbial Community in an Oil Field as Monitored by Reverse Sample Genome Probing, Appl. Envir. Microbiol. 63: 1785-1793. – reference: Clark J. B., Munnecke, D. M., Janneman, G. E., 1981 : Dev. Ind. Microbiol., 22, 695-701. – reference: Birkeland, N. K., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter14 The microbial diversity of deep subsurface oil reservoirs, 385-404, Elsevier Science B.V. – reference: 大塚牧子・藤原和弘・菅井裕一・木下 睦・榎本兵治・千田 佶・矢澤仁徳・永瀬圭司・洪 承燮・崔 吉, 2004 : Characterization of a Water-insoluble Polymer Producing Bacterium Enterobacter sp. CJF-002 for MEOR, J. Jpn. Petro. Inst. 47(4), 282-292. – reference: Maudgalya, S., Knapp, R. M. and Mclnerney M. J., 2007 : Microbial Enhanced-Oil-Recovery Technologies : A Review of the Past, Present, and Future, Society of Petroleum Engineers, 106978. – reference: Yonebayasi, H., Enomoto, H., Fujiwara, K., Chida T. and Hong, C-X., 1997b : Laboratory R & D leads to MEOR Field Pilot in Fuyu-oilfield, Chaina, Proceeding of 9th European Symposium on Improved Oil Recovery. – reference: Nagase, K., Zhang, S. T., Asami, H., Yazawa, N., Fujiwara, K., Enomoto, H., Hong, C-X. and Liang X., 2001b : Introduction of Microbial EOR Process to Plug High-K Layer by Insoluble Polymer, Proceeding of 22th Workshop of the International Energy Agency, Poland. – reference: 永瀬圭司・張淑涛・浅海博基・矢澤仁徳・藤原和弘・榎本兵治・洪 承燮, 2003 : 中国扶余油田での微生物攻法フィールドテストの成功例, 石技誌, 68(4), 271-281. – reference: Townsend, G. T.; Prince, R. C.; Suflita, J. M., 2003 : Anaerobic Oxidation of Crude Oil Hydrocarbons by the Resident Microorganisms of a Contaminated Anoxic Aquifer, Environ. Sci. Technol. 37(22), 5213-5218. – reference: 藤原和弘・服部嘉行・鹿野早苗・向谷 司・宮川喜洋・高林克百・伊藤 孝・前田治男, 2008c : 深度地下油層に棲息する油層内地殻微生物群の解析 (第2報), 環境バイオテクノロジー学会要旨. P.14 – reference: 米林英治・田口 充・藤原和弘・吉田信一郎・榎本兵治・1996a : 微生物攻法に関する研究の現状とフィールドテストへの展望, 石技誌, 61(6), 485-493. – reference: Fujiwara, K., 2000c : Monitoring of microorganisms injected into oil reservoir on a Microbial Enhanced Oil Recovery Field Pilot, Proceeding of International Symposium on Research and Education in the 21st Century, Sendai, Japan, 31-37. – reference: Fujiwara, K., Sugai, Y., Yazawa, N., Ohno, K., Hong C.X. and Enomoto, H., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter15 Biotechnological approach for development of microbial enhanced oil recovery technique, 405-445, Elsevier Science B.V. – reference: 竹原美佳・齊藤, 2005 : 中国/カナダ : 中国国有石油会社がカナダのオイルサンド事業に進出, 石油・天然ガス資源情報. – reference: Eckforda R.E. and Fedorak P.M., 2004 : Petroleum Biotechnology—Developments and perspectives—, Chapter 11 Using nitrate to control microbially-produced hydrogen sulfide in oil field waters, 307-340, Elsevier Science B.V. |
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SourceID | jstage |
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StartPage | 531 |
Subtitle | 技術開発の将来展望と課題 |
Title | 微生物攻法(MEOR)研究の現状と展望 |
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ispartofPNX | 石油技術協会誌, 2008, Vol.73(6), pp.531-540 |
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