Bioconversion of coal mine methane for high value-added products
ZHU Hong-wei;SHAO Ju-fang;TAO Xiu-xiang(School of Chemical Engineering & Technology;
Abstract:
High coal mine methane emissions contaminate the environment seriously.To reduce these methane,use bioconversion method.Methane-oxidizing bacteria possess the most capacity of oxidizing methane in nature.Provide a brief introduction of China's coal mine methane emissions and application status.Address the methane oxidation mechanism by methanotrophs.Adopting methanotrophs,the methane can be converted to methanol,poly-beta-hydroxybutyrate(PHB) and single-cell protein.Introduce the research and development of these conversion.
Key Words: coal mine methane;methane-oxidizing bacteria;methanol;single cell protein;poly-beta-hydroxybutyrate
Foundation:
Author: ZHU Hong-wei;SHAO Ju-fang;TAO Xiu-xiang(School of Chemical Engineering & Technology;
DOI: 10.13226/j.issn.1006-6772.2013.02.011
References:
- [1]Karacan C O,Ruiz F A,Cote M,et al.Coal mine methane:A review of capture and utilization practices with benefits to mining safety and to greenhouse gas re-duction[J].International Journal of Coal Geology,2011,86(2/3):121-156.
- [2]Kurdish I K.On the problem of perspectiveness of appli-cation of certain species of methanotrophs to decrease methane liberation in coal mines[J].Mikrobiolohichnyi Zhurnal,1996,58(4):86-92.
- [3]Plessis CAD,Strauss J M,Sebapalo EMT,et al.Empirical model for methane oxidation using a composted pine bark biofilter[J].Fuel,2003,82(11):1359-1365.
- [4]王璐,金龙哲,陈东科.利用微生物技术治理煤矿瓦斯的研究展望[J].中国安全科学学报,2005,15(10):97-99.
- [5]陈东科,王璐,金龙哲,等.利用微生物技术治理煤矿瓦斯的研究展望[J].矿业安全与环保,2005,32(6):49-50,52.
- [6]陈东科,王璐,金龙哲,等.微生物降解煤矿瓦斯的研究[J].煤炭学报,2006,31(5):607-609.
- [7]侯晨涛.煤矿瓦斯的微生物治理技术[J].煤田地质与勘探,2007,35(4):30-33.
- [8]周生芳,陶秀祥,朱红威,等.煤矿土壤甲烷氧化菌的筛选及其培养条件优化的初步研究[J].洁净煤技术,2008,14(4):98-100.
- [9]周生芳,陶秀祥,侯彤,等.矿井瓦斯微生物转化的研究进展[J].洁净煤技术,2009,15(3):100-103.
- [10]马强,陶秀祥,侯彤,等.油田土壤中甲烷氧化菌的筛选及鉴定[J].煤炭工程,2008(7):84-85,105.
- [11]Jiang H,Han B,Xing X H.Isolation and analysis of methanotrophs from coal mines and biofilter construction for green-house gas control of methane[J].Journal of Biotechnology,2008,136(S1):651-652.
- [12]Xing X H,Jiang H,Jiang P,et al.Bioengineering of methanotrophic consortia for reduction of methane emis-sion in coal mines[J].Journal of Biotechnology,2010,150(S1):541-542.
- [13]Cheng Y P,Wang L,Zhang X L.Environmental impact of coal mine methane emissions and responding strategies in China[J].International Journal of Green-house Gas Control,2011,5(1):157-166.
- [14]Su S,Agnew J.Catalytic combustion of coal mine ventilation air methane[J].Fuel,2006,85(9):1201-1210.
- [15]Kajita S,Dalla Betta R.Achieving ultra low emissions in a commercial1.4MW gas turbine utilizing catalytic combustion[J].Catalysis Today,2003,83(1-4):279-288.
- [16]龙伍见.我国煤矿低浓度瓦斯利用技术研究现状及前景展望[J].矿业安全与环保,2010,37(4):74-77.
- [17]王鑫阳,杜金.浓度低于1%的矿井瓦斯氧化技术现状及前景[J].煤炭技术,2008,27(9):1-3.
- [18]Karakurt I,Aydin G,Aydiner K.Mine ventilation air methane as a sustainable energy source[J].Renewable and Sustainable Energy Reviews,2011,15(2):1042-1049.
- [19]Beebe K W,Cairns K D,Pareek V K,et al.Development of catalytic combustion technology for single-digit emis-sions from industrial gas turbines[J].Catalysis Today,2000,59(1/2):95-115.
- [20]Salomons S,Hayes R E,Poirier M,et al.Flow reversal reactor for the catalytic combustion of lean methane mix-tures[J].Catalysis Today,2003,83(1-4):59-69.
- [21]Su S,Chen H,Teakle P,et al.Characteristics of coal mine ventilation air flows[J].Journal of Environmental Management,2008,86(1):44-62.
- [22]Dlugokencky E J,Nisbet E G,Fisher R,et al.Global atmospheric methane:budget,changes and dangers[J].Philosophical Transactions of the Royal Society a-Mathe-matical Physical and Engineering Sciences,2011,369(1943):2058-2072.
- [23]Conrad R.The global methane cycle:recent advances in understanding the microbial processes involved[J].Environmental Microbiology Reports,2009,1(5):285-292.
- [24]Karakurt I,Aydin G,Aydiner K.Sources and mitigation of methane emissions by sectors:A critical review[J].Renewable Energy,2012,39(1):40-48.
- [25]Shngen N L.On bacteria which use methane as a carbon and energy source[J].Z Bakteriol Parazitenk(Infektionster),1906(15):513-517.
- [26]Whittenbury R,Phillips K,Wilkinson J.Enrichment,i-solation and some properties of methane-utilizing bacteria[J].Journal of General Microbiology,1970,61(2):205-218.
- [27]Bowman J P,Sly L I,Stackebrandt E.The phylogenetic position of the family Methylococcaceae[J].International Journal of Systematic and Evolutionary Microbiology,1995,45(1):182-185.
- [28]梁战备,史奕,岳进.甲烷氧化菌研究进展[J].生态学杂志,2004,23(5):198-205.
- [29]Lipscomb J D.Biochemistry of the soluble methane monooxygenase[J].Annual Reviews Microbiology,1994,48(1):371-399.
- [30]Lieberman R L,Shrestha D B,Doan P E,et al.Purified particulate methane monooxygenase from Methylococcus capsulatus(Bath)is a dimer with both mononuclear copper and a copper-containing cluster[J].Proc Natl Acad Sci USA,2003,100(7):3820-3825.
- [31]Nguyen H H,Elliott S J,Yip J H,et al.The particulate methane monooxygenase from methylococcus capsulatus(Bath)is a novel copper-containing three-subunit en-zyme.Isolation and characterization[J].J Biol Chem,1998,273(14):7957-7966.
- [32]Dedysh S N,Liesack W,Khmelenina V N,et al.Methyl-ocella palustris gen.nov.,sp.nov.,a new methane-oxidizing acidophilic bacterium from peat bogs,representing a novel subtype of serine-pathway methanotrophs[J].Int J Syst Evol Microbiol,2000,50(Pt3):955-969.
- [33]Bowman J,Sly L,Nichols P,et al.Revised taxonomy of the methanotrophs:Description of methylobacter gen.nov.,emendation of methylococcus,validation of methyl-osinus and methylocystis species,and a proposal that the family methylococcaceae includes only the group I meth-anotrophs[J].International Journal of Systematic Bacte-riology,1993,43(4):735-753.
- [34]Murrell J C.Genetics and molecular biology of metha-notrophs[J].Fems Microbiology Reviews,1992,8(3/4):233-248.
- [35]Murrell J C.Molecular genetics of methane oxidation[J].Biodegradation,1994,5(3/4):145-159.
- [36]Murrell J C,Gilbert B,McDonald I R.Molecular biology and regulation of methane monooxygenase[J].Archives of Microbiology,2000,173(5/6):325-332.
- [37]Murrell J C,McDonald I R,Gilbert B.Regulation of ex-pression of methane monooxygenases by copper ions[J].Trends Microbiol,2000,8(5):221-225.
- [38]Stainthorpe A,Salmond G,Dalton H,et al.Screening of obligate methanotrophs for soluble methane monooxygen-ase genes[J].Fems Microbiology Letters,1990,70(2):211-215.
- [39]Brusseau G A,Tsien H C,Hanson R S,et al.Optimization of trichloroethylene oxidation by metha-notrophs and the use of a colorimetric assay to detect soluble methane monooxygenase activity[J].Biodegradation,1990,1(1):19-29.
- [40]Stainthorpe A C,Lees V,Salmond G P,et al.The methane monooxygenase gene cluster of Methylococcus capsulatus(Bath)[J].Gene,1990,91(1):27-34.
- [41]Tsien H C,Hanson R S.Soluble methane monooxygenase component B gene probe for identification of methanotro-phs that rapidly degrade trichloroethylene[J].Appl En-viron Microbiol,1992,58(3):953-960.
- [42]Dalton H.The Leeuwenhoek Lecture2000the natural and unnatural history of methane-oxidizing bacteria[J].Philos Trans R Soc Lond B Biol Sci,2005,360(1458):1207-1222.
- [43]Grosse S,Laramee L,Wendlandt K D,et al.Purification and characterization of the soluble methane monooxygen-ase of the type II methanotrophic bacterium Methylocystis sp.strain WI14[J].Appl Environ Micro-biol,1999,65(9):3929-3935.
- [44]Collins M L,Buchholz L A,Remsen C C.Effect of Copper on Methylomonas albus BG8[J].Appl Environ Microbiol,1991,57(4):1261-1264.
- [45]Nguyen H H,Shiemke A K,Jacobs S J,et al.The nature of the copper ions in the membranes containing the par-ticulate methane monooxygenase from Methylococcus capsulatus(Bath)[J].J Biol Chem,1994,269(21):
- [46]Chan S I,Chen K H,Yu S S,et al.Toward delineating the structure and function of the particulate methane monooxygenase from methanotrophic bacteria[J].Biochemistry,2004,43(15):4421-4430.
- [47]Hakemian A S,Rosenzweig A C.The biochemistry of methane oxidation[M].Annual Review of Biochemistry,2007:223-241.
- [48]Lieberman R L,Rosenzweig A C.Biological methane ox-idation:Regulation,biochemistry,and active site structure of particulate methane monooxygenase[J].Critical Reviews in Biochemistry and Molecular Biology,2004,39(3):147-164.
- [49]Hanson R S,Hanson T E.Methanotrophic bacteria[J].Microbiological Reviews,1996,60(2):439-471.
- [50]Trotsenko Y A,Murrell J C.Metabolic aspects of aerobic obligate methanotrophy[J].Adv Appl Microbiol,2008,63:183-229.
- [51]尉迟力,缪德埙,李树本.甲烷生物催化氧化制甲醇-几种化学物质对Methylosinus trichosporium3011甲醇积累的影响[J].合成化学,1993,1(4):313-319.
- [52]尉迟力,缪德埙,李树本,等.甲烷氧化细菌Methylo-sinus trichosporum3011甲醇累积条件的研究[J].工业微生物,1995,25(2):10-13.
- [53]王晓丽,于建国.微生物法转化甲烷合成甲醇的研究[J].天然气化工:C1化学与化工,2008,33(4):1-5,12.
- [54]王晓丽,于建国.膜生物反应器连续发酵法制取甲醇及其发酵动力学初探[J].工业微生物,2009,39(2):34-38.
- [55]Lee S G,Goo J H,Kim H G,et al.Optimization of meth-anol biosynthesis from methane using Methylosinus tri-chosporium OB3b[J].Biotechnology Letters,2004,26(11):947-950.
- [56]Takeguchi M,Furuto T,Sugimori D,et al.Optimization of methanol biosynthesis by Methylosinus trichosporium OB3b:An approach to improve methanol accumulation[J].Applied Biochemistry and Biotechnology,1997,68(3):143-152.
- [57]Furuto T,Takeguchi M,Okura I.Semicontinuous methanol biosynthesis by Methylosinus trichosporium OB3b[J].Journal of Molecular Catalysis A:Chemical,1999,144(2):257-261.
- [58]Kim H G,Han G H,Kim S W.Optimization of lab scale methanol production by Methylosinus trichosporium OB3b[J].Biotechnology and Bioprocess Engineering,2010,15(3):476-480.
- [59]Duan C,Luo M,Xing X.High-rate conversion of methane to methanol by Methylosinus trichosporium OB3b[J].Bioresource Technology,2011,102(15):7349-7353.
- [60]Markowska A,Michalkiewicz B.Biosynthesis of methanol from methane by Methylosinus trichosporium OB3b[J].Chemical Papers,2009,63(2):105-110.
- [61]刘婷婷,辛嘉英,徐毅,等.中基弯菌IMV3011整细胞催化甲烷氧化合成甲醇的研究[J].分子催化,2002,16(6):455-459.
- [62]尉迟力,夏仕文,李树本.甲烷生物催化氧化制甲醇:固定化细胞催化剂的制备及其催化性能的研究[J].催化学报,1997,18(6):503-507.
- [63]Razumovsky S,Efremenko E,Makhlis T,et al.Effect of immobilization on the main dynamic characteristics of the enzymatic oxidation of methane to methanol by bac-teria Methylosinus sporium B-2121[J].Russian Chemical Bulletin,2008,57(8):1633-1636.
- [64]Chen J,Xu Y,Xin J,et al.Efficient immobilization of whole cells of Methylomonas sp.strain GYJ3by sol-gel entrapment[J].Journal of Molecular Catalysis B:Enzy-matic,2004,30(3/4):167-172.
- [65]Xin J Y,Cui J R,Niu J Z,et al.Production of methanol from methane by methanotrophic bacteria[J].Biocatalysis and Biotransformation,2004,22(3):225-229.
- [66]崔俊儒,辛嘉英,牛建中,等.甲烷氧化细菌催化二氧化碳生物合成甲醇的研究[J].分子催化,2004,18(3):214-218.
- [67]崔俊儒,辛嘉英,牛建中,等.二氧化碳存在下甲烷氧化细菌催化甲烷生物合成甲醇[J].催化学报,2004,25(6):471-474.
- [68]辛嘉英,蔡岩松,王艳,等.甲基弯菌IMV3011细胞生物催化二氧化碳制甲醇[J].分子催化,2008,22(4):356-361.
- [69]Xin J Y,Cui J R,Niu J,et al.Biosynthesis of methanol from CO 2 and CH 4 by methanotrophic bacteria[J].Biotechnology,2004,3(1):67-71.
- [70]张颖鑫,辛嘉英,宋昊,等.有机酸对甲烷利用菌Methylosinus trichosporium IMV3011生物合成聚-3-羟基丁酸酯的影响[J].分子催化,2009(4):298-303.
- [71]姜丹,董静,辛嘉英,等.开放条件下高聚β-羟基丁酸酯含量的甲烷氧化混合菌群的富集[J].生物技术通讯,2011,22(6):846-849.
- [72]Helm J,Wendlandt K D,Rogge G,et al.Characterizing a stable methane-utilizing mixed culture used in the syn-thesis of a high-quality biopolymer in an open system[J].Journal of Applied Microbiology,2006,101(2):387-395.
- [73]张莹莹,董静,辛嘉英,等.甲烷氧化混合菌的高密度培养和PHB合成[J].农产品加工(学刊),2011(11):7-10.
- [74]Wendlandt K D,Jechorek M,Helm J,et al.Producing poly-3-hydroxybutyrate with a high molecular mass from methane[J].Journal of Biotechnology,2001,86(2):127-133.
- [75]Wendlandt K D,Geyer W,Mirschel G,et al.Possibilities for controlling a PHB accumulation process using various analytical methods[J].Journal of Biotechnology,2005,117(1):119-129.
- [76]Zhang Y X,Xin J Y,Chen L L,et al.Biosynthesis of poly-3-hydroxybutyrate with a high molecular weight by methanotroph from methane and methanol[J].Journal of Natural Gas Chemistry,2008,17(1):103-109.
- [77]Doronina N V,Ezhov V A,Trotsenko Y A.Growth of Methylosinus trichosporium OB3b on methane and poly-beta-hydroxybutyrate biosynthesis[J].Applied Biochemistry and Microbiology,2008,44(2):182-185.
- [78]Mokhtari-Hosseini Z B,Vasheghani-Farahani E,Hei-darzadeh-Vazifekhoran A,et al.Statistical media optimization for growth and PHB production from meth-anol by a methylotrophic bacterium[J].Bioresource Technology,2009,100(8):2436-2443.
- [79]Song H,Xin J Y,Zhang Y X,et al.Poly-3-hydroxybutyrate production from methanol by Methylosinus trichosporium IMV3011in the non-sterilized fed-batch fermentation[J].African Journal of Microbiology Research,2011,5(28):5022-5029.
- [80]Zuniga C,Morales M,Le Borgne S,et al.Production of poly-beta-hydroxybutyrate(PHB)by Methylobacterium organophilum isolated from a methanotrophic consortium in a two-phase partition bioreactor[J].Journal of Haz-ardous Materials,2011,190(1/3):876-882.
- [81]Rahnama F,Vasheghani-Farahani E,Yazdian F,et al.PHB production by Methylocystis hirsuta from natural gas in a bubble column and a vertical loop bioreactor[J].Biochemical Engineering Journal,2012,65:51-56.
- [82]宋昊,张颖鑫,辛嘉英,等.甲烷氧化细菌生物催化合成聚-β-羟基丁酸酯的分子量调控[J].分子催化,2012(1):70-79.
- [83]Xin J Y,Zhang Y X,Dong J,et al.An experimental study on molecular weight of poly-3-hydroxybutyrate(PHB)accumulated in Methylosinus trichosporium IMV 3011[J].African Journal of Biotechnology,2011,10(36):7078-7087.
- [84]Helm J,Wendlandt K D,Jechorek M,et al.Potassium deficiency results in accumulation of ultra-high molecular weight poly-beta-hydroxybutyrate in a methane-utilizing mixed culture[J].Journal of Applied Microbiology,2008,105(4):1054-1061.
- [85]Pieja A J,Sundstrom E R,Criddle C S.Cyclic,alternating methane and nitrogen limitation increases PHB production in a methanotrophic community[J].Bioresour Technol,2012,107:385-392.
- [86]谷小虎,李晓辉,旭杨,等.甲醇蛋白的技术与市场[J].煤化工,2011,39(5):5-8.
- ZHU Hong-wei
- SHAO Ju-fang
- TAO Xiu-xiang(School of Chemical Engineering & Technology
- China University of Mining and Technology
- Xuzhou 221116
- China)
- ZHU Hong-wei
- SHAO Ju-fang
- TAO Xiu-xiang(School of Chemical Engineering & Technology
- China University of Mining and Technology
- Xuzhou 221116
- China)