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综述了生物膜对金属材料腐蚀的影响,内容包括:1)生物膜的形成;2)生物膜对材料腐蚀的影响;3)生物膜对阴极保护系统的影响;4)海洋极端微生物相关的腐蚀;5)微生物对航空、航天某些系统的影响;6)研究微生物腐蚀所采用的方法等.微生物相关的腐蚀在实际工程中对材料及设备的影响很大,因此,有必要深入开展研究并积极地采取防护措施.

参考文献

[1] 薛廷耀.海洋细菌学[M].北京:科学出版社,1958
[2] 付玉斌.几种浸海工程用材料表面生物粘膜中异养细菌的演化[J].材料开发与应用,2000(04):17-21,28.
[3] Suny C W .The use of biocides to control sulfate reduced bacteria in biofilm on mild steel surface[J].Biofouling,1996,9(03):231-249.
[4] 纪伟尚 等.海洋细菌在生物表面和非生物表面附着研究[J].青岛海洋大学学报,1991,21(02):61-68.
[5] AD-A221664[Z].,1990.
[6] Fletche M.Microbial attachment to nonbiological surfaces[A].Washington D C,1984:124-129.
[7] 李会荣;付玉斌;李筠 等.在不同基质表面微生物粘膜中海洋细菌的数量变化[J].青岛海洋大学学报,1999,30(02):153-158.
[8] 李会荣,付玉斌,李筠,纪伟尚,徐怀恕.海洋细菌在不同基质表面微生物粘膜中的组成[J].青岛海洋大学学报(自然科学版),2001(03):401-406.
[9] AD-A249750[Z].,1992.
[10] Maki J S .Biofilm formation on metal surface in Antarctic waters[J].Biofouling,1990,2:27-28.
[11] 王庆飞,隋静.模拟生物膜方法研究钢在海水中的腐蚀行为[C].海峡两岸材料腐蚀与防护研究进展(海峡两岸材料腐蚀与防护研讨会:论文专辑),1998:337~339.
[12] Simon M L;Silverman M.An approach for studying the molecular basis of marine microbial fouling[M].New York,1985:233-242.
[13] Chan Young yun;Bert Ely .Identification of genes affecting production of the adhesive holdfast of a marine caulobacter[J].Journal of Bacteriology,1994,176(03):796-803.
[14] Whonchee L .Oxygen and microprofiles above corroding mild steel covered with a biofilm[J].Biofouling,1995,8:273-280.
[15] Videla H A .Biofouling and microbially influenced corrosion[J].International Biodeterioration and Biodegradation,1992,29:195-212.
[16] 张树政;王修垣.工业微生物成就[M].北京:科学出版社,1988:158-159.
[17] Hagenaner A et al.Microbiological investigation of corrosion damages in aircraft[J].Werkstoffe und Korrosion,1994,45:355-360.
[18] Scotto V;Cintio R D .The influence of marine aerobic microbial film on stainless steel corrosion behavior[J].Corrosion Science,1991,25(03):185-194.
[19] Little B J;Ray R et al.Impact of biofouling on the electrochemical behavior of 304SS in natural seawater[J].Biofouling,1991,3:45-49.
[20] AD-A237580[Z].,1991.
[21] Geesey G F et al.Role of bacterial exopolymers in the deterioration of metallic copper surface[J].Materials Performance,1986,25(02):3740.
[22] Nivens D E .Reversible acceleration of the corrosion of AISI304 stainless steel exposed to seawater induced by growth and secretion of the marine bacteria vibrio natriegens[J].Corrosion,1986,42(04):204-210.
[23] Whonchee L et al.Role of sulfate-reducing bacteria in corrosion of mild steel:a review[J].Biofouling,1995,8:165-194.
[24] King R A;Miller J D A .Corrosion by the sulfate reducing bacteria[J].Nature,1971,233:491-492.
[25] Mcneil M B;Jones J M et al.Production of sulfide minerals by sulfate-reducing bacteria during microbially influenced corrosion of copper[J].Corrosion,1991,9:674-677.
[26] Gaylarde C C .Sulphate reducing bacteria which do not induce accelerated corrosion[J].International Biodeterioration and Biodegradation,1992,30:331-338.
[27] 付玉斌.硫酸盐还原菌诱发腐蚀的研究热点[J].材料开发与应用,1999(05):38-40.
[28] Cloete T E;Brozel V S .Practical aspects of biofouling control in industrial water system[J].International Biodeterioration and Biodegradation,1992,29:299-341.
[29] AD-A237062[Z].,1990.
[30] AD-A219382[Z].,1990.
[31] AD-A203242[Z].,1988.
[32] Little B.;Wagner P.;Hart K.;Ray R.;Lavoie D.;Nealson K.;Aguilar C. .The role of biomineralization in microbiologically influenced corrosion[J].Biodegradation,1998(1):1-10.
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