欢迎登录材料期刊网

材料期刊网

高级检索

微生物诱导碳酸钙沉积(MICP),即利用微生物代谢活动中矿化行为,诱导形成碳酸钙沉淀,其具有特殊的胶结作用,可作为一种新颖的生物胶凝材料—微生物水泥。本文从M IC P矿化机制、胶结机理以及微生物水泥在岩土工程中的应用等方面探讨了相应的最新进展,分析了目前存在的问题,并对微生物水泥的进一步研究提出了思路和建议。

Microbiologically induced calcium carbonate precipitation(MICP) was a biological process of calcium carbonate precipitation resulting from bio‐mineralization during metabolic activities of micro‐organisms .Microbe cement ,a kind of novel biological cementitious material ,was developed due to the special cementation of calcium carbonate via microbe .Research and progress in recent years were discussed in detail from three aspects of mineralization mechanisms ,cementation function and applica‐tions in geotechnical engineering of microbe cement .The problems existing at present were analyzed , and ways of thinking and suggestions for further research on microbe cement were put forward .

参考文献

[1] Jason T.DeJong;Brina M.Mortensen;Brian C.Martinez .Bio-mediated soil improvement[J].Ecological engineering: The Journal of Ecotechnology,2010(2):197-210.
[2] KAROL R H.Chemical Grouting and Soil Stabilization,Revised and Expanded[M].Boca Raton:CRC Press,2003
[3] 成虎林.水电工程化学灌浆对浆液扩散有效半径的控制方法[J].西北水电,2006(01):33-34,37.
[4] HAMMES F;VERSTRAETE W .Key roles of pH and calcium metabolism in microbial carbonate precipitation[J].REVIEWS IN ENVIRONMENTAL SCIENCE AND BIOTECHNOLOGY,2002,1(01):3-7.
[5] HAMDAN N .Carbonate mineral precipitation for soil improve-ment through microbial denitrification[D].Tempe,Arizona State:Arizona State University,2013.
[6] Leon A. van Paassen;Claudia M. Daza;Marc Staal .Potential soil reinforcement by biological denitrification[J].Ecological engineering: The Journal of Ecotechnology,2010(2):168-175.
[7] Carlos Rodriguez-Navarro;Manuel Rodriguez-Gallego;Koutar Ben Chekroun;Maria Teresa Gonzalez-Munoz .Conservation of Ornamental Stone by Myxococcus xanthus-Induced Carbonate Biomineralization[J].Applied and Environmental Microbiology,2003(4):2182-2193.
[8] Ben Chekroun K;Rodriguez-Navarro C;Gonzalez-Munoz MT;Arias JM;Cultrone G;Rodriguez-Gallego M .Precipitation and growth morphology of calcium carbonate induced by Myxococcus xanthus: Implications for recognition of bacterial carbonates[J].Journal of sedimentary research,2004(6):868-876.
[9] Jimenez-Lopez Concepcion;Fadwa Jroundi;Pascolini Chiara .Consolidation of quarry calcarenite by calcium carbonate precipitation induced by bacteria activated among the microbiota inhabiting the stone[J].International Biodeterioration & Biodegradation,2008(4):352-363.
[10] Wright DT;Wacey D .Precipitation of dolomite using sulphate-reducing bacteria from the Coorong Region, South Australia: significance and implications[J].Sedimentology: Journal of the International Association of Sedimentologists,2005(5):987-1008.
[11] Wacey D;Wright DT;Boyce AJ .A stable isotope study of microbial dolomite formation in the Coorong Region, South Australia[J].Chemical geology,2007(1-2):155-174.
[12] Jahns T .Ammonium/urea-dependent generation of a proton electrochemical potential and synthesis of ATP in Bacillus pasteurii.[J].Journal of Bacteriology,1996(2):403-409.
[13] Douglas S.;Beveridge TJ. .Mineral formation by bacteria in natural microbial communities [Review][J].FEMS Microbiology Ecology,1998(2):79-88.
[14] Edmund Bauerlein .Biomineralization of Unicellular Organisms: An Unusual Membrane Biochemistry for the Production of Inorganic Nano- and Microstructures[J].Angewandte Chemie International Edition,2003(6):614-641.
[15] Willem De Muynck;Nele De Belie;Willy Verstraete .Microbial carbonate precipitation in construction materials: A review[J].Ecological engineering: The Journal of Ecotechnology,2010(2):118-136.
[16] DITTRICH M;KURZ P;WEHRLIL B .The role of autotroph-ic picocyanobacteria in calcite precipitation in an oligotrophic lake[J].GEOMICROBIOLOGY JOURNAL,2004,21(01):45-53.
[17] 荣辉,钱春香,李龙志.微生物水泥胶结机理[J].硅酸盐学报,2013(03):314-319.
[18] Qian Chunxiang,Wang Ruixing,Cheng Liang,Wang Jianyun.Theory of Microbial Carbonate Precipitation and Its Application in Restoration of Cement-based Materials Defects[J].中国化学(英文版),2010(05):847-857.
[19] Mahanty, Biswanath;Kim, Subin;Kim, Chang Gyun .Assessment of a Biostimulated or Bioaugmented Calcification System with Bacillus pasteurii in a Simulated Soil Environment[J].Microbial Ecology: An International Journal,2013(3):679-688.
[20] CHU J;IVANOV V;NAEIMI M et al.Optimization of calci-um-based bioclogging and biocementation of sand[J].Acta Geotechnica,2014,9(02):277-285.
[21] Cheng, L.;Cord-Ruwisch, R.;Shahin, M.A. .Cementation of sand soil by microbially induced calcite precipitation at various degrees of saturation[J].Canadian Geotechnical Journal,2013(1):81-90.
[22] 荣辉,钱春香,李龙志.微生物水泥基材料的红外光谱研究[J].功能材料,2013(23):3408-3411.
[23] KANTZAS A;FERRIS F G;JHA K N.A novel method of sand consolidation through bacteriogenic mineral plugging[A].Calgary,Canada:Petroleum Society of Canada,1992
[24] FERRIS F G;SETEHMEIR L G .Bacteriogenic mineral plug-ging[P].USA Patent:664769,1992.
[25] Stocks Fischer S;Galinat JK;Bang SS .Microbiological precipitation of CaCO3[J].Soil Biology and Biochemistry,1999(11):1563-1571.
[26] Nemati M;Voordouw G .Modification of porous media permeability, using calcium carbonate produced enzymatically in situ[J].Enzyme and Microbial Technology,2003(5):635-642.
[27] M. Nemati;E.A. Greene;G. Voordouw .Permeability profile modification using bacterially formed calcium carbonate: comparison with enzymic option[J].Process biochemistry,2005(2):925-933.
[28] WHIFFIN V S .Microbial CaCO3 precipitation for the produc-tion of biocement[D].Western Australia:Murdoch University,2004.
[29] MCNALLY G H .Estimation of coal measures rock strength using sonic and neutron logs[J].GEOEXPLORATION,1987,24(4/5):381-395.
[30] WHIFFIN V S;VAN PAASSEN L A;HARKE M P .Microbi-al carbonate precipitation as a soil improvement technique[J].GEOMICROBIOLOGY JOURNAL,2007,24(05):417-423.
[31] AL-THAWADI S .High strength in-situ biocementation of soil by calcite precipitating locally isolated ureolytic bacteria[D].Western Australia:Murdoch University,2008.
[32] DeJong JT;Fritzges MB;Nusslein K .Microbially induced cementation to control sand response to undrained shear[J].Journal of geotechnical and geoenvironmental engineering,2006(11):1381-1392.
[33] Mitchell JK;Santamarina JC .Biological considerations in geotechnical engineering[J].Journal of geotechnical and geoenvironmental engineering,2005(10):1222-1233.
[34] DEJONG J T;MARTINEZ B C;MORTENSEN B M.Upscaling of bio-mediated soil improvement[A].Rot-terdam,the Netherlands:Millpress Science Publishers,2009
[35] Ng Wei Soon;Lee Min Lee;Tan Chew Khun;Hii Siew Ling .Improvements in Engineering Properties of Soils through Microbial-Induced Calcite Precipitation[J].KSCE journal of civil engineering,2013(4):718-728.
[36] LEE M L;NG W S;TANAKA Y .Stress-deformation and com-pressibility responses of bio-mediated residual soils[J].Ecologi-cal Engineering,2013,60:142-149.
[37] Ng Wei Soon;Lee Min Lee;Tan Chew Khun;Hii Siew Ling .Factors Affecting Improvement in Engineering Properties of Residual Soil through Microbial-Induced Calcite Precipitation[J].Journal of geotechnical and geoenvironmental engineering,2014(5)
[38] Liang Cheng;Ralf Cord-Ruwisch.In situ soil cementation with ureolytic bacteria by surface percolation[J].Ecological engineering: The Journal of Ecotechnology,2012:64-72.
[39] KIM D;PARK K .Effects of ground conditions on mi-crobial cementation in soils[J].Materials,2013,7(01):143-156.
[40] Marien P. Harkes;Leon A. van Paassen;Jacco L. Booster .Fixation and distribution of bacterial activity in sand to induce carbonate precipitation for ground reinforcement[J].Ecological engineering: The Journal of Ecotechnology,2010(2):112-117.
[41] QABANY A A;SOGA K;SANTANARINA C .Factors affect-ing efficiency of microbially induced calcite precipitation[J].JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING,2011,138(08):992-1001.
[42] A. AL QABANY;K. SOGA .Effect of chemical treatment used in MICP on engineering properties of cemented soils[J].Geotechnique,2013(4):331-339.
[43] Dominique J. Tobler;Erica Maclachlan;Vernon R. Phoenix.Microbially mediated plugging of porous media and the impact of differing injection strategies[J].Ecological engineering: The Journal of Ecotechnology,2012:270-278.
[44] T. H. Barkouki;B. C. Martinez;B. M. Mortensen;T. S. Weathers;J. D. De Jong;T. R. Ginn;N. F. Spycher;R. W. Smith;Y. Fujita .Forward and Inverse Bio-Geochemical Modeling of Microbially Induced Calcite Precipitation in Half-Meter Column Experiments[J].Transport in porous media,2011(1):23-39.
[45] Hui Rong;Chun-xiang Qian;Long-zhi Li .Influence of molding process on mechanical properties of sandstone cemented by microbe cement[J].Construction and Building Materials,2012(1):238-243.
[46] ZHAO Q;LI L;LI C et al.Factors affecting improvement of engineering properties of MICP-treated soil catalyzed by bacteria and urease[J].J Mater Civ Eng,2014,26(12):04014094.
[47] 荣辉 .微生物水泥的研制及其胶结机理[D].东南大学,2014.
[48] ABO-EL-ENEIN S A;ALI A H;TALKHAN F N et al.Utili-zation of microbial induced calcite precipitation for sand consoli-dation and mortar crack remediation[J].HBRC Journal,2012,8(03):185-192.
[49] ZHANG Y;GUO H X;CHENG X H .Influences of calcium sources on microbially induced carbonate precipitation in porous media[J].Materials Research Innovations,2014,18(Suppl 2):79-84.
[50] Burbank, M.B.;Weaver, T.J.;Green, T.L.;Williams, B.;Crawford, R.L. .Precipitation of calcite by indigenous microorganisms to strengthen liquefiable soils[J].Geomicrobiology journal,2011(1/4):301-312.
[51] Burbank, M.;Weaver, T.;Lewis, R.;Williams, T.;Williams, B.;Crawford, R. .Geotechnical tests of sands following bioinduced calcite precipitation catalyzed by indigenous bacteria[J].Journal of geotechnical and geoenvironmental engineering,2013(6):928-936.
[52] CRAWFORD R L;BURBANK M B;WEAVER T J et al.In situ precipitation of calcium carbonate (CaCO3) by indigenous microorganisms to improve mechanical properties of a geomate-rial[P].USA Patent:8420362,2013-04-16.
[53] 程晓辉,麻强,杨钻,张志超,李萌.微生物灌浆加固液化砂土地基的动力反应研究[J].岩土工程学报,2013(08):1486-1495.
[54] B. M. MONTOYA;J. T. DEJONG;R. W. BOULANGER .Dynamic response of liquefiable sand improved by microbial-induced calcite precipitation[J].Geotechnique,2013(4):302-312.
[55] MONTOYA B M;DEJONG J T .Healing of biologically induced cemented sands[J].Géotechnique Letters,2013,3(03):147-151.
[56] Chu, J.;Stabnikov, V.;Ivanov, V. .Microbially Induced Calcium Carbonate Precipitation on Surface or in the Bulk of Soil[J].Geomicrobiology journal,2012(6/10):544-549.
[57] Viktor Stabnikov;Maryam Naeimi;Volodymyr Ivanov .Formation of water-impermeable crust on sand surface using biocement[J].Cement and Concrete Research,2011(11):1143-1149.
[58] J. CHU;V. IVANOV;V. STABNIKOV;B. LI .Microbial method for construction of an aquaculture pond in sand[J].Geotechnique,2013(10):871-875.
[59] Zuan Yang;Xiaohui Cheng .A performance study of high-strength microbial mortar produced by low pressure grouting for the reinforcement of deteriorated masonry structures[J].Construction and Building Materials,2013(Apr.):505-515.
[60] CHENG X;WANG H;YANG Z .Experimental study on per-formance of high strength microbial mortar[J].Materials Re-search Innovations,2014,18(Suppl 2):90-94.
[61] W. K. van Wijngaarden;F. J. Vermolen;G. A. M. van Meurs;C. Vuik .Modelling Biogrout: A New Ground Improvement Method Based on Microbial-Induced Carbonate Precipitation[J].Transport in porous media,2011(2):397-420.
[62] MARTINEZ B C;BARKOUKI T H;DEJONG J D.Up-scaling microbial induced calcite precipitation in 0.5m columns:experimental and modeling results[A].Dallas,USA:ASCE,2011:4049-4059.
[63] B.C. Martinez;J.T. DeJong;T.R. Ginn .Bio-geochemical reactive transport modeling of microbial induced calcite precipitation to predict the treatment of sand in one-dimensional flow[J].Computers and geotechnics,2014(May):1-13.
[64] FAURIEL S;LALOUI L.A bio-hydro-mechanical model for propagation of biogrout in soils[A].Dallas,USA:ASCE,2011:4041-4048.
[65] S. Fauriel;L. Laloui .A bio-chemo-hydro-mechanical model for microbially induced calcite precipitation in soils[J].Computers and geotechnics,2012(Nov.):104-120.
[66] PAASSEN V L A;HARKES M P;ZWIETEN V G A.Scale up of biogrout:a biological ground reinforcement method[A].Netherlands:IOS Press,2009:2328-2333.
[67] van Paassen, L.A.;Ghose, R.;van der Linden, T.J.M.;van der Star, W.R.L.;van Loosdrecht, M.C.M. .Quantifying biomediated ground improvement by ureolysis: Large-scale biogrout experiment[J].Journal of geotechnical and geoenvironmental engineering,2010(12):1721-1728.
[68] PAASSEN V L A;PIERON M;MULDER A.Strength and deformation of biologically cemented sandstone[A].Lon-don:Taylor & Francis Group,2009:405-410.
[69] 荣辉,钱春香,王欣.微生物水泥基材料抗冻性和抗冲刷性[J].功能材料,2014(11):11091-11095.
[70] Achal V;Mukherjee A;Basu PC;Reddy MS .Lactose mother liquor as an alternative nutrient source for microbial concrete production by Sporosarcina pasteurii[J].Journal of industrial microbiology & biotechnology,2009(3):433-438.
[71] Achal, V.;Mukherjee, A.;Reddy, M. S. . .Effect of calcifying bacteria on permeation properties of concrete structures[J].Journal of industrial microbiology & biotechnology,2011(9):1229-1234.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%