|
|
硫酸盐还原菌杀菌剂应用现状及研究进展 |
刘宏芳;黄玲;刘涛;胡裕龙 |
华中科技大学化学与化工学院 材料化学与服役失效湖北省重点实验室 武汉 430074 |
|
APPLICATION AND PROGRESS IN BACTERICIDE OF SULFATE REDUCING BACTERIA |
LIU Hongfang;HUANG Ling;LIU Tao;HU Yulong |
Key Laboratory of Materials Chemistry Service Failure;Department of Chemistry; Huazhong University of Science and Technology; Wuhan 430074 |
[1] Liu H,Wang M,Huang Z,et al. Study on biological control of microbiologically inducing corrosion of carbon steel[J].Mater. Corros. 2004,55(5):387-391
[2] Sun C,Han E H. Effects of SRB on corrosion of Q235 steel during vaporation of water in soil[J].J. Chin. Soc. Corros. Prot.,2005,25(5):307-311
(孙成,韩恩厚. 土壤湿度变化对Q235钢的硫酸盐还原菌腐蚀影响[J]. 中国腐蚀与防护学报,2005,25(5):307-311)
[3] Liu J,Xu L M,Zheng J S. A study on corrosion behavior under the biofilm of sulfate-reducing bacteria on Cu-Zn alloy[J]. J. Chin. Soc. Corros. Prot.,2001,21 (6):345-348
(刘靖,许立铭,郑家燊. 硫酸盐还原菌生物膜下Cu-Zn合金腐蚀研究[J]. 中国腐蚀与防护学报,2001,21(6):345-348)
[4] Xu C M,Zhang Y H,Cheng G X,et al. Investigation of sulfate-reducing bacteria on pitting of 316L stainless steel in cooling water system for oil refinery[J]. J. Chin. Soc. Corros. Prot.,2007,27(1):48-53
(胥聪敏,张耀亨,程光旭等. 炼油厂冷却水系统硫酸盐还原菌对316L不锈钢点腐蚀的研究[J].中国腐蚀与防护学报,2007,27(1):48-53)
[5] Lin J,Yan Y G,Chen G Z,et al. Application of atomic force microscopy in study of sulfate-reducing bacteria to A3 steel[J]. J. Chin. Soc. Corros. Prot.,2007,27(2),70-73,79
(林晶,阎永贵,陈光章等. 应用原子力显微镜研究硫酸盐还原菌对A3钢的腐蚀[J]. 中国腐蚀与防护学报,2007,27(2):70-73,79)
[6] Sun C,Han E H. Effects of SRB on corrosion of 1Cr18- Ni9Ti stainless steel in soils of Cl-[J]. J. Chin.Soc. Corros. Prot.,2003,23(1):46-51
(孙成,韩恩厚. 土壤中SRB及Cl对1Cr18Ni9Ti不锈钢腐蚀的相互影响[J]. 中国腐蚀与防护学报,2003,23(1):46-51)
[7] Dong Z H,Guo X P,Liu H F,et al. Study on electrochemistry characteristics in MIC by wire beam electrodes[J]. J. Chin. Soc. Corros. Prot.,2002,20(1):48-53
(董泽华,郭兴蓬,刘宏芳等. 用丝束电极研究SRB微生物诱导腐蚀的电化学特征[J]. 中国腐蚀与防护学报,2002,20(1):48-53)
[8] Liu H F,Xu L M,Zheng J S. Influence of SRB biofilm on corrosion of carbon steel[J]. J. Chin.Soc. Corros. Prot., 2000,20(1):41-46
(刘宏芳,许立铭,郑家燊. SRB生物膜与碳钢腐蚀的关系[J]. 中国腐蚀与防护学报,2000,20(1):41-46)
[9] Liu H F,Wang M F,Xu L M. Characteristics of thiobacillus denitrificans and the effect on the growth of SRB[J]. Microbiology,2003,30(3):46-49
(刘宏芳,汪梅芳,许立铭. 脱氮硫杆菌生长特性及其对SRB生长的影响[J]. 微生物学通报,2003,30(3):46-49)
[10] Liu H F,Xu L M,Zheng J S,et al. New bactericide for biocide-resistant sulfate-reducing bacteria[J]. Mater. Perform. 2000,39(4):52-55
[11] Cord-Ruwisch R, Widdel F. Corroding iron as a hydrogen source for sulface reduction in growing cultures of sulfate-reducting bacteria[J]. Appl. Microbiol,1986, 25(2): 169-174
[12] Cord-Ruwisch R, Kleinitz W, Widdel F. Sulfate-reducing bacteria and their activities in oil production[J]. J Petro Technol, 1987, 39(1): 97-106
[13] Zhang C R,Jin C L. The synthetic progress of cation active bactericide and the relation between its structure and fungicidal effectiveness[J]. Shanxi Chem. Ind.,1997,26(3): 1-7,13
(张长荣,金聪玲. 阳离子活性杀菌剂的合成进展及其结构与杀菌力的关系[J]. 陕西化工,1997,26(3):1-7,13)
[14] Shi Z Q,Wang J S,Wang S S. Preparation of bactericide with double-quaternary ammonium group and the evaluation of its bactericidal performance[J]. Ind. Water Treat.,2001,21(2):47-49
(史志琴,王冀生,王绍嵩. 双季铵盐杀菌剂的研究与性能[J]. 工业水处理,2001,21(2):47-49)
[15] Yang W,Wang P,Hu W L,et al. Preparation of double alkyl quaternary ammonium salts and studies of their bactericidal performance[J]. Ind. Water Treat.,2000,6(20): 13-16
(杨威,王鹏,胡万里等. 双烷基季铵盐的制备与杀菌性能研究[J]. 工业水处理,2000,6(20):13-16)
[16] Huang J Y,Zheng J S,Wei H B,et al. Corrosion inhibition performance of a newly synthesized heterocyclic bisquats[J]. Corros. Sci. Prot. Technol.,2004,16(5):272-275
(黄金营,郑家燊,魏红飚等. 含杂环双季铵盐的合成及其缓蚀性能的研究[J].腐蚀科学与防护技术,2004,16(5):272-275)
[17] Huang J Y,Zhi J F,Chen Z Y,et al. Effect of MDOPD against corrosion induced by sulfate reducing bacteria and its biofilm in culture medium inoculated SRB[J]. J. Chin. Soc. Corros. Prot.,2007,27(3):167-171
(黄金营,只金芳,陈振宇等,含菌介质中MDOPD对SRB菌及生物膜腐蚀的抑制作用[J]. 中国腐蚀与防护学报,2007,27(3):167-171)
[18] Huang J Y,Zheng J S,Wei H F. Analysis of sensitivity of total growth bacteria to bisquats by EPMA [J].Huazhong Univ. Sci. Technol.,(Nat. Sci.),2005,33(1):102-104.
(黄金营,郑家燊,魏慧芳,腐生菌对双季铵盐敏感性的EPMA分析[J]. 华中科技大学学报(自然科学版),2005,33(1):102-104)
[19] Tang D Y,Wu S G,Min C Y,et al. Synthesis,bactericidal and corrosion inhibition performance of double alkyl quaternary ammonium bromide salts[J]. J. Harbin Inst. Technol.,2006,38(4):538-540。
(唐冬雁,吴思国,闵春英等. 溴化双十二烷基季铵盐的合成及缓蚀、杀菌性能研究[J]. 哈尔滨工业大学学报,2006,38(4):538-540)
[20] Ye Y,Cai W M,Shen X F. Synthesis of quaternary ammonium salt of chitosan and its flocculation and sterilization ability[J]. J. Fuzhou Univ. (Nat. Sci.),2000,28(4):108-111
(叶筠,蔡伟民,沈雄飞. 壳聚糖季铵盐的合成及其对炼油废水的絮凝和灭菌性能[J]. 福州大学学报,2000,28(4):108-111)
[21] Wu D,Cai W M. Bacteriostatic mechanism of chitosan ammonium reagent salt[J]. J. Harbin Inst.Technol.,2005,7(35):1014-1016
(吴迪,蔡伟民. 壳聚糖季铵盐的抑菌机理研究[J]. 哈尔滨工业大学学报,2005,7(35):1014-1016)
[22] Zhang S C,Bai Z M,Wu Z L. Synthesis and properties of corrosion inhibitor and bactericide 1-acylamino-1-alkyl phosphonic phosphonic acid on oil-field flooding[J]. J. Chin.Soc. Corros. Prot.,2003,23(4):231-233
(张世超,白致铭,吴志龙. 酰胺基烷基膦酸类缓蚀杀菌剂在油田注水环境中缓蚀、杀菌性能研究[J]. 中国腐蚀与防护学报,2003,23(4):231-233)
[23] Yao C,Wang J T,Zhu H J, et al. Preparation of quaternization phosphonium salts bactericide[J]. Water.Treat. Rep., 2000(5):14-18
(姚成,王锦堂,朱红军等. 杀菌剂改性季鏻盐及其制备方法[J]. 水处理信息报导,2000(5):14-18)
[24] Wang J T. Structural characteristics and synthetic methods of new bactericide for industrial water treatment in China[J]. Mod. Chem. Ind.,2001,21(10):9-12
(王锦堂. 我国工业用水新杀菌剂的结构特点与合成方法[J]. 现代化工,2001,21(10) :9-12)
[25] Liu J H,Liu F,Li S M. Sterilization and inhibition of quaternary phosphonium salt type of inhibitors for sulfate-reducing bacteria inducing microbiologically influenced corrosion of carbon steel[J]. Corros. Sci. Prot. Technol.,2002,14(4):139-143
(刘建华,刘芳,李松梅. 季鏻盐型缓蚀剂对SRB菌诱导碳钢腐蚀过程的缓蚀与杀菌作用[J].腐蚀科学与防护技术,2002,14(4):139-143)
[26] Liu J H,Liu H,Li S M. Synthesis and characteristic of two new types of quaternary phosphonium salts[J]. Corros. Sci. Prot. Technol.,2001,13(2):85-88
(刘建华,刘芳,李松梅. 新型季鏻盐型缓蚀杀菌剂的合成及其特性[J]. 腐蚀科学与防护技术,2001,13(2):85-88)
[27] Yi H C,Liao M D,Liu H Y. The manufacture of complex mixed bactericide with glutaraldehyde[J]. J. Hubei Agric. Coll.,2000,20(4):361-363
(易洪潮,廖美德,刘合意,一种复配戊二醛杀生剂的研制[J]. 湖北农学院学报,2000,20(4):361-363)
[28] Dai Q Y,Huang Q B,Deng Y D,et al. Synthesis and reaction of a powerful nucleophilic long chain imidazole-2,2 aldoxime[J]. Chin. J. Org. Chem.,2002,22(2):130-134
(戴秋云,黄启斌,邓云度. 一种高亲核性长链咪唑肟的合成与反应[J]. 有机化学,2002,22(2):130-134
[29] Liu H F,Xu L M. The complex utilization of bactericides[J]. Acta Pet. Sin.,1999,20(2):93-95
(刘宏芳,许立铭. 杀菌的合并使用[J]. 石油学报,1999,20(2):93-95)
[30] Liu H F,Huang L,Jiang D S,et al. Preparation of TiO2/PANI nano-composite and its performance to anti iron bacteria[J]. Mater. Prot. (Suppl.),2006,39:238-239
(刘宏芳,黄立,江德顺等. 纳米TiO2/PANI复合材料的制备及抗铁细菌性能研究[J].材料保护(增刊),2006,39:238-239)
[31] Ron N,Janauer Gilbert E,Schrier Eugene E,et al. Water insoluble disinfectant composition[P].US 4349646,1982
[32] Jiang S,Wang L,Yu H J,et al. Novel organic polymeric biocides[J]. Polym. Bull.,2002,6:57-62
(江山,王立,俞豪杰等. 新型有机高分子抗菌剂[J]. 高分子通报,2002,6:57-62)
[33] Ikeda T,Tazuke S,Suzuki Y. Biologically active polycations,4.Synthesis and antimicrobial activity of poly (trialkylvinylbenzyl ammonium chloride)s[J]. Makromole kulare Chemie,1984,185(5),869-876
[34] Ikeda T,Tazuke S. Biologically active polycations:antimicrobial activities of poly[trialkyl(vinylbenzyl)ammonium chloride]-type polycations. Makromolekulare Chemie[J].Rapid Commun.,1983,4(7):459-461
[35] Ikeda T,Tazuke S,Watanabe M. Interaction of biologically active molecules with phospholipid membranes. I.Fluorescence depolarization studies on the effect of polymeric biocide bearing biguanide groups in the main chain[J]. Bioc. Biophys. Acta,Biomembranes,1983,735(3):380-386.
[36] Li G,Shen J,Zhu Y. A study of pyridinium-type functional polymers.I.Preparation and characterization of soluble pyridinium-type functional polymers[J]. J. Appl. Polym. Sci.,1996,62(13):2247-2255
[37] Kanazawa A,Ikeda T,Endo T. Novel polycationic biocides:synthesis and antibacterial activity of polymeric phosphonium salts[J]. J. Polym. Sci.,1993,31:335-343.
[38] Kanazawa A,Ikeda T,Endo T. Polymeric phosphonium salts as a novel class of cationic biocides.VII. Synthesis and antibacterial activity of polymeric phosphonium salts and their model compounds containing long alkyl chains[J]. J. Appl. Polym. Sci.,1994,53(9):1237-1244.
[39] Kanazawa A,Ikeda T,Endo T. Polymeric phosphonium salts as a novel class of cationic biocides.X. Antibacterial activity of filters incorporating phosphonium biocides[J]. Appl. Polym. Sci.,1994,54(9),1305-1310
[40] Kanazawa A,Ikeda T,Endo T. Polymeric phosphonium salts as a novel class of cationic biocides [J]. VI. Antibacterial activity of fibers surface-treated with phosphonium salts containing trimethoxysilane groups[J]. J. Appl. Polym. Sci.,1994,52(5),641-547
[41] Kanazawa A,Ikeda T,Endo T. Polymeric phosphonium salts as a novel class of cationic biocides. IV. Synthesis and antibacterial activity of polymers with phosphonium salts in the main chain[J]. J. Appl. Polym. Sci.,Part A:Polym.Chem.,1993,31(12):3031-3038.
[42] Huang L,Jiang D S,Cao Z Z,et al. The synthesis of novel quaternization phosphonium salts and and its performance to total general bacteria[J]. Mater. Prot. (suppl.), 2006,39:135-137
(黄玲,江德顺,曹植忠等. 聚鏻盐抗菌剂的合成及其对腐生菌杀菌性能研究[J]. 材料保护(增刊),2006.39:135-137)
[43] Li C B,Xiao X C,Zhang J. The production and application of a new-kind and high-effect compound bromine-based biocide[J]. Environ. Prot. Petrochem. Ind.,2002,25(4):56-60
(李丛彬,肖兴成,张健. 一种新型高效复合溴基杀菌剂的研制及应用[J]. 石油化工环境保护,2002,25 (4):56-60)
[44] Li J F. Green synthesis of the environmental protection biocide (DBNPA)[J]. Chem. Ind. Times,2003,17(6):25-27
(李建芬. 环保型杀菌剂(DBNPA)的绿色合成[J]. 化工时刊,2003,17(6):25-27)
[45] Hernandez G,Kucera V,Thierry D,et al. Corrosion inhibition of steel by bacteria[J]. Corrosion,1994,50(8):603-608.
[46] Farquhar G B. The current of microbiologically induced corrosion[J]. Mater. Perform.1993,32(1):553-558
[47] Nan Y,Morten B S,Eble M. Mekonnen,John S. Svendsen and Oystein Rekdal. The effects of shortening lactoferrin derived peptides against tumour cells,bacteria and normal human cell[J]. J. Peptide Sci.,2004,10:37-46
[48] Kai H,Rodolf V,Tess W,et al. High-throughput generation of small antibacterial peptides with improved activity[J]. Nat. Biotechnol.,2005,23(8):1008-1012
[49] Hancock R E W. Cationic peptides:effectors in innate immunity & novel antimicrobials[J]. Lancet Infect. Dis.,2001,1:156-164
[50] Gijsbert M,Grotenbreg M,Emile S. Synthesis and biological evaluation of novel tum-modified gramicidin S analogues[J].Bioorg. Med. Chem., 2003,11:2835-2841
[51] Gao X Y,Chen N,Lin B R,et al. Progresses on the studies of gramicidin S[J]. Life Sci. Res., 2004,8(2):76-79
(高向阳,陈念,林壁润等. 短杆菌肽S的研究进展[J]. 生命科学研究,2004,8(2):76-79)
[52] Ling L J,Zhang W Y,Xiao H,et al. Purification and antineoplastic effect of a kind of exotoxin secreted from Pseudomonas aeruginosa[J]. Chin. J. Biochem. Pharm.,2004 25(5):271-273
(凌立君,张伟云,肖杭等. 铜绿假单胞菌外毒素的制备及其抗肿瘤作用[J]. 中国生化药物杂志,2004,25(5):271-273)
[53] Pedersen A,Hermansson M,The effects on metal corrosion by Serratia marcescens and a Pseudomonas sp[J]. Biofouling,1989,1(4):313-322.
[54] Jayaraman A. Cheng E T,Earthman C. Axenic aerobic biofilms inhibit corrosion of SAE 1018 steel through oxygen depletion[J]. Appl. Microbill. Biotechnol.,1997,48(1):11-17
[55] Jayaraman A,Hallock P J,Carson R M. Inhibiting sulfate-reducing bacteria in biofilms on steel with antimicrobial peptides generated in situ[J]. Appl. Microbiol. Biotechnol,1999,52(2):267-275
[56] Jack R F,Ringelberg D B,White D C. Differential corrosion rates of carbon steel by combinations of Bacillus sp.,Hafnia alvei and Desulfovibrio gigas established by phospholipid analysis of electrode biofilm[J]. Corros. Sci,1992,33(12):1843-1853.
[57] Wang M F,Liu H F,Xu L M. Applied research on the competitive growth of bacteria in biological control of MIC[J]. J. Chin. Soc. Corros. Prot.,2004,24(3): 159-162
(汪梅芳,刘宏芳,许立铭. 细菌竞争生长在微生物腐蚀防治中的应用研究[J]. 中国腐蚀与防护学报,2004,24(3):159-162)
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|