[1]
Huang Y L.
Corrosion failure of marine steel in sea-mud containing sulfate reducing bacteria
[J]. Mater. Corros., 2004, 55: 124
[本文引用: 1]
[2]
Jia R, Yang D Q, Xu J, et al.
Microbiologically influenced corrosion of C1018 carbon steel by nitrate reducing Pseudomonas aeruginosa biofilm under organic carbon starvation
[J]. Corros. Sci., 2017, 127: 1
[3]
Juzeliūnas E, Ramanauskas R, Lugauskas A, et al.
Microbially influenced corrosion of zinc and aluminium-Two-year subjection to influence of Aspergillus niger
[J]. Corros. Sci., 2007, 49: 4098
[4]
Liu H W, Cheng Y F.
Microbial corrosion of X52 pipeline steel under soil with varied thicknesses soaked with a simulated soil solution containing sulfate-reducing bacteria and the associated galvanic coupling effect
[J]. Electrochim. Acta, 2018, 266: 312
[本文引用: 1]
[5]
Jia R, Tan J L, Jin P, et al.
Effects of biogenic H2S on the microbiologically influenced corrosion of C1018 carbon steel by sulfate reducing Desulfovibrio vulgaris biofilm
[J]. Corros. Sci., 2018, 130: 1
[本文引用: 2]
[6]
Liu H W, Gu T Y, Asif M, et al.
The corrosion behavior and mechanism of carbon steel induced by extracellular polymeric substances of iron-oxidizing bacteria
[J]. Corros. Sci., 2017, 114: 102
[7]
Zhang P Y, Xu D K, Li Y C, et al.
Electron mediators accelerate the microbiologically influenced corrosion of 304 stainless steel by the Desulfovibrio vulgaris biofilm
[J]. Bioelectrochemistry, 2015, 101: 14
[本文引用: 1]
[8]
Liu F L, Zhang J, Sun C X, et al.
The corrosion of two aluminium sacrificial anode alloys in SRB-containing sea mud
[J]. Corros. Sci., 2014, 83: 375
[本文引用: 1]
[9]
Starosvetsky J, Starosvetsky D, Pokroy B, et al.
Electrochemical behaviour of stainless steels in media containing iron-oxidizing bacteria (IOB) by corrosion process modeling
[J]. Corros. Sci., 2008, 50: 540
[本文引用: 1]
[10]
Guan F, Zhai X F, Duan J Z, et al.
Influence of sulfate-reducing bacteria on the corrosion behavior of 5052 aluminum alloy
[J]. Surf. Coat. Technol., 2017, 316: 171
[本文引用: 1]
[11]
Liu T, Pan S, Wang Y N, et al.
Pseudoalteromonas lipolytica accelerated corrosion of low alloy steel by the endogenous electron mediator pyomelanin
[J]. Corros. Sci., 2020, 162: 108215
[本文引用: 1]
[12]
Videla H. A, Swords C, Edyvean R.
Features of SRB-induced corrosion of carbon steel in marine environments
[J]. ASTM Spec. Tech. Publ., 2000, 1399: 270
[本文引用: 1]
[13]
Dai X Y, Wang H, Ju L K, et al.
Corrosion of aluminum alloy 2024 caused by Aspergillus niger
[J]. Int. Biodeterior. Biodegrad., 2016, 115: 1
[本文引用: 2]
[14]
Liu H W, Xu D K, Dao A Q, et al.
Study of corrosion behavior and mechanism of carbon steel in the presence of Chlorella vulgaris
[J]. Corros. Sci., 2015, 101: 84
[本文引用: 2]
[15]
Xue R, Yao G Y, Teng H K.
Situation and developing trend of bactericide in oilfields
[J]. Ind. Water Treat., 2007, 27(10): 1
[本文引用: 1]
薛瑞, 姚光源, 滕厚開(kāi)。
油田殺菌劑研究現(xiàn)狀與展望
[J]. 工業(yè)水處理, 2007, 27(10): 1
[本文引用: 1]
[16]
Zhang Q.
Research progress on fungicides during ethanol fermentation
[J]. Chem. Ind. Eng. Prog., 2016, 35: 1167
[本文引用: 1]
張強(qiáng)。
酒精發(fā)酵中殺菌劑的研究進(jìn)展
[J]. 化工進(jìn)展, 2016, 35: 1167
[本文引用: 1]
[17]
Zhang Q D, Zhou G Y, Zhao D F.
Research progress of new type bactericides in the oilfield
[J]. Guangdong Chem. Ind., 2014, 41(5): 233
[本文引用: 1]
張慶冬, 周?chē)?guó)英, 趙東風(fēng)。
油田用新型殺菌劑的研究進(jìn)展
[J]. 廣東化工, 2014, 41(5): 233
[本文引用: 1]
[18]
Wang J L, Li C J, Zhang X X, et al.
Corrosion behavior of Aspergillus niger on 7075 aluminum alloy and the inhibition effect of zinc pyrithione biocide
[J]. J. Electrochem. Soc., 2019, 166: G39
[本文引用: 2]
[19]
Huang C M, Li R T.
Evaluation and optimization of fungicides for water injection system in southern oilfield
[J]. Jiangxi Chem. Ind., 2019, (4): 33
[本文引用: 1]
黃春梅, 李瑞濤。
南部油田注水系統(tǒng)殺菌劑的評(píng)價(jià)與優(yōu)選
[J]. 江西化工, 2019, (4): 33
[本文引用: 1]
[20]
Hai X, Liu Z, Yang H K, et al.
Research on the resistance of common bacteria in oilfield wastewater to fungicides
[J]. Petrochem. Ind. Appl., 2013, 32(10): 97
[本文引用: 1]
海霞, 劉真, 楊宏科等。
油田污水中常見(jiàn)細(xì)菌對(duì)殺菌劑的抗藥性的研究
[J]. 石油化工應(yīng)用, 2013, 32(10): 97
[本文引用: 1]
[21]
Yang H K.
Application analysis of oilfield fungicides
[J]. Chem. Eng. Des. Commun., 2019, 45(3): 34
[本文引用: 1]
楊宏科。
油田殺菌劑的應(yīng)用分析
[J]. 化工設(shè)計(jì)通訊, 2019, 45(3): 34
[本文引用: 1]
[22]
Liu H F, Zheng B J, Xu D D, et al.
Effect of sulfate-reducing bacteria and iron-oxidizing bacteria on the rate of corrosion of an aluminum alloy in a central air-conditioning cooling water system
[J]. Ind. Eng. Chem. Res., 2014, 53: 7840
[本文引用: 1]
[23]
Liu H W, Fu C Y, Gu T Y, et al.
Corrosion behavior of carbon steel in the presence of sulfate reducing bacteria and iron oxidizing bacteria cultured in oilfield produced water
[J]. Corros. Sci., 2015, 100: 484
[本文引用: 1]
[24]
Rong H, Liu C W, Wen X, et al.
Synthesis and properties of an improved biocides of bis-quaternary ammonium salt for the sewage of oil field
[J]. J. Beijing Inst. Petro-Chem. Technol., 2014, 22(3): 6
[本文引用: 1]
榮華, 劉超文, 溫馨等。
一種改進(jìn)型雙季銨鹽油田污水殺菌劑的制備與性能
[J]. 北京石油化工學(xué)院學(xué)報(bào), 2014, 22(3): 6
[本文引用: 1]
[25]
Li Z Y, Zhao J M, Zuo Y, et al.
Synthesis and properties of quaternary ammonium bis-imidazoline as inhibitor
[J]. Corros. Prot., 2004, 25(3): 115
[本文引用: 1]
李志遠(yuǎn), 趙景茂, 左禹等。
雙咪唑啉季銨鹽的合成與緩蝕性能研究
[J]. 腐蝕與防護(hù), 2004, 25(3): 115
[本文引用: 1]
[26]
Li Z S, Li J F, Liu H, et al.
Research progress of surface modification of antibacterial performance of biomedical silicone rubber
[J]. Chem. Ind. Eng. Prog., 2018, 37: 4719
[本文引用: 1]
李兆雙, 李建芳, 劉鶴等。
生物醫(yī)用硅橡膠表面抗菌性能改造研究進(jìn)展
[J]. 化工進(jìn)展, 2018, 37: 4719
[本文引用: 1]
[27]
Cavallaro A, Mierczynska A, Barton M, et al.
Influence of immobilized quaternary ammonium group surface density on antimicrobial efficacy and cytotoxicity
[J]. Biofouling, 2016, 32(1): 13
[本文引用: 1]
[28]
Zhou X F, Shi R Y.
Current state and development trend of cationic bactericides
[J]. China Clean. Ind., 2020, (3/4): 187
[本文引用: 1]
周旋峰, 石榮瑩。
陽(yáng)離子殺菌劑的現(xiàn)狀及其發(fā)展趨勢(shì)
[J]. 中國(guó)洗滌用品工業(yè), 2020, (3/4): 187
[本文引用: 1]
[29]
Chen R L, Zheng C, Lin J, et al.
Research progress and prospect of Gemini quaternary ammonium salt surfactants with ester group
[J]. Chem. Ind. Eng. Prog., 2013, 32: 2707
[本文引用: 2]
陳瑞蘭, 鄭成, 林璟等。
酯基Gemini季銨鹽陽(yáng)離子表面活性劑的研究進(jìn)展
[J]. 化工進(jìn)展, 2013, 32: 2707
[本文引用: 2]
[30]
Liu H W, Gu T Y, Lv Y L, et al.
Corrosion inhibition and anti-bacterial efficacy of benzalkonium chloride in artificial CO2-saturated oilfield produced water
[J]. Corros. Sci., 2017, 117: 24
[本文引用: 1]
[31]
Etim I I N, Dong J H, Wei J, et al.
Effect of organic silicon quaternary ammonium salts on mitigating corrosion of reinforced steel induced by SRB in mild alkaline simulated concrete pore solution
[J]. J. Mater. Sci. Technol., 2019, 64: 126
[本文引用: 1]
[32]
Zhang Y J, Zhao X L.
Research progress in the biocidal performance and mechanism of quaternary ammonium salt biocide
[J]. Fine Chem., 2010, 27: 1145
[本文引用: 1]
張躍軍, 趙曉蕾。
季銨鹽殺生劑殺生性能與機(jī)理研究進(jìn)展
[J]. 精細(xì)化工, 2010, 27: 1145
[本文引用: 1]
[33]
W?grzyńska J, Chlebicki J, Maliszewska I.
Preparation, surface-active properties and antimicrobial activities of bis (ester quaternary ammonium) salts
[J]. J. Surfactants Deterg., 2007, 10: 109
[本文引用: 1]
[34]
Caillier L, de Givenchy E T, Levy R, et al.
Polymerizable semi-fluorinated gemini surfactants designed for antimicrobial materials
[J]. J. Colloid Interface Sci., 2009, 332: 201
[35]
Tan H, Xiao H N.
Synthesis and antimicrobial characterization of novel 1-lysine gemini surfactants pended with reactive groups
[J]. Tetrahedron Lett., 2008, 49: 1759
[本文引用: 1]
[36]
Chu Y G, Zhang H, Fang Y X, et al.
Synthesis, corrosion inhibition and antibacterial performance of biimidazoline quaternary ammonium salt
[J]. Spec. Petrochem., 2020, 37(4): 24
[本文引用: 1]
楚雨格, 張涵, 方雨欣等。
雙咪唑啉季銨鹽的合成及緩蝕抑菌性能研究
[J]. 精細(xì)石油化工, 2020, 37(4): 24
[本文引用: 1]
[37]
Makvandi P, Jamaledin R, Jabbari M, et al.
Antibacterial quaternary ammonium compounds in dental materials: A systematic review
[J]. Dent. Mater., 2018, 34: 851
[本文引用: 1]
[38]
Beyth N, Yudovin-Farber I, Bahir R, et al.
Antibacterial activity of dental composites containing quaternary ammonium polyethylenimine nanoparticles against Streptococcus mutans
[J]. Biomaterials, 2006, 27: 3995
[本文引用: 3]
[39]
Beyth N, Pilo R, Weiss E I.
Antibacterial activity of dental cements containing quaternary ammonium polyethylenimine nanoparticles
[J]. J. Nanomater., 2012, 2012: 814763
[本文引用: 3]
[40]
Zhang Y J, Zhang D H, Qin C Y, et al.
Physical and mechanical properties of dental nanocomposites composed of aliphatic epoxy resin and epoxidized aromatic hyperbranched polymers
[J]. Polym. Compos., 2009, 30: 176
[本文引用: 3]
[41]
Yudovin-Farber I, Beyth N, Weiss E I, et al.
Antibacterial effect of composite resins containing quaternary ammonium polyethyleneimine nanoparticles
[J]. J. Nanopart. Res., 2010, 12: 591
[本文引用: 1]
[42]
Makvandi P, Ghaemy M, Ghadiri A A, et al.
Photocurable, antimicrobial quaternary ammonium-modified nanosilica
[J]. J. Dent. Res., 2015, 94: 1401
[本文引用: 1]
[43]
Gong S Q, Niu L N, Kemp L K, et al.
Quaternary ammonium silane-functionalized, methacrylate resin composition with antimicrobial activities and self-repair potential
[J]. Acta Biomater., 2012, 8: 3270
[本文引用: 3]
[44]
Zhang L, Yao G Y, Teng H K.
Progress of guanidine compounds bactericide in water treatment
[J]. Guangdong Chem. Ind., 2013, 40(15): 95
[本文引用: 1]
張磊, 姚光源, 滕厚開(kāi)。
工業(yè)水處理用有機(jī)胍殺菌劑研究進(jìn)展
[J]. 廣東化工, 2013, 40(15): 95
[本文引用: 1]
[45]
Yang T Q, Liu X, Du R R.
Research progress of guanidine bactericides in the oilfield water injection
[J]. Guangdong Chem. Ind., 2015, 42(19): 79
[本文引用: 1]
楊添麒, 劉祥, 杜榮榮等。
油田注水用胍類(lèi)殺菌劑研究進(jìn)展
[J]. 廣東化工, 2015, 42(19): 79
[本文引用: 1]
[46]
Gorbunova M, Lemkina L.
New biocide guanidine-containing nanocomposites
[J]. J. Nanopart. Res., 2014, 16: 2566
[本文引用: 1]
[47]
Protasov A, Bardeau J F, Morozovskaya I, et al.
New promising antifouling agent based on polymeric biocide polyhexamethylene guanidine molybdate
[J]. Environ. Toxicol. Chem., 2017, 36: 2543
[本文引用: 3]
[48]
Zhang L, Liu X L, Yao G Y, et al.
Synthesis and spot evaluation of a kind of efficient biocide used for industrial water treatment
[J]. Ind. Water Treat., 2014, 34(3): 54
[本文引用: 1]
張磊, 劉曉琳, 姚光源等。
一種工業(yè)水處理用高效殺生劑的合成及現(xiàn)場(chǎng)評(píng)價(jià)
[J]. 工業(yè)水處理, 2014, 34(3): 54
[本文引用: 1]
[49]
Yao G Y, Zhang L, Zhang D Y, et al.
Study on synthesis and bactericidal properties of a heterocydic organic sulfuric fungicide
[J]. Chem. Ind. Times, 2009, 23(11): 28
[本文引用: 1]
姚光源, 張磊, 張迪彥等。
一種雜環(huán)有機(jī)硫殺菌劑的合成及其殺菌性能研究
[J]. 化工時(shí)刊, 2009, 23(11): 28
[本文引用: 1]
[50]
Li N, Li M, Wu X M.
Research and development of heterocyclic fungicides
[A]. Proceedings of the 7th Chinese Symposium on Chemical Control of Plant Diseases [C]. Haikou, 2010: 9
[本文引用: 1]
李凝, 李明, 吳小毛。
雜環(huán)殺菌劑的研究進(jìn)展
[A]. 中國(guó)植物病理學(xué)會(huì)化學(xué)防治專(zhuān)業(yè)委員會(huì)第七屆中國(guó)植物病害化學(xué)防治學(xué)術(shù)研討會(huì)論文集 [C]. 海口, 2010: 9
[本文引用: 1]
[51]
Hu Y Y, Xu H Q, Yao J, et al.
Selective detection of 20 triazoles residues in food uusing molecularly imprinted solid phase extraction coupled with liquid chromatography tandem mass spectrometry
[J]. Chin. J. Anal. Chem., 2014, 42: 227
[本文引用: 2]
胡艷云, 徐慧群, 姚劍等。
分子印跡固相萃取-液相色譜-質(zhì)譜法測(cè)定果蔬中20種三唑類(lèi)農(nóng)藥殘留
[J]. 分析化學(xué), 2014, 42: 227
[本文引用: 2]
[52]
Li Z Y, Li Z J, Gu L L, et al.
Preparation and application of triazolone molecularly imprinted nano-spheres
[J]. Chem. Ind. Eng. Prog., 2020, 39: 2706
[本文引用: 1]
李子怡, 李志君, 顧麗莉等。
三唑酮分子印跡納米球的制備及應(yīng)用
[J]. 化工進(jìn)展, 2020, 39: 2706
[本文引用: 1]
[53]
Wang J L, Hou B S, Xiang J, et al.
The performance and mechanism of bifunctional biocide sodium pyrithione against sulfate reducing bacteria in X80 carbon steel corrosion
[J]. Corros. Sci., 2019, 150: 296
[本文引用: 3]
[54]
Sun C X, Xu H W, Chen Y M, et al.
Research on bactericidal agent of heterotrophic bacteria in cooling water by composite of isothiazolinones and sodium hypochorite
[J]. Clean. World, 2013, 29(10): 14
[本文引用: 1]
孫彩霞, 徐會(huì)武, 陳燕敏等。
異噻唑啉酮和NaClO復(fù)合殺菌劑性能研究
[J]. 清洗世界, 2013, 29(10): 14
[本文引用: 1]
[55]
Wu J Y, Chai K.
Efficient and environmentally-friendly antibacterial and mildewproof inorganic composite nano-powder slurry and its preparation method
[P]. Chin Pat, 201110401227.3, 2011
[本文引用: 1]
吳進(jìn)怡, 柴柯。
一種高效環(huán)保抗菌防霉無(wú)機(jī)復(fù)合納米粉漿及其制備方法
[P]. 中國(guó)專(zhuān)利, 201110401227.3, 2011)
[本文引用: 1]
[56]
Qu Q, Wang L, Li L, et al.
Effect of the fungus, Aspergillus niger, on the corrosion behaviour of AZ31B magnesium alloy in artificial seawater
[J]. Corros. Sci., 2015, 98: 249
[本文引用: 1]
[57]
Wang J L, Xiong F P, Liu H W, et al.
Study of the corrosion behavior of Aspergillus niger on 7075-T6 aluminum alloy in a high salinity environment
[J]. Bioelectrochemistry, 2019, 129: 10
[本文引用: 1]
[58]
Block S S.
Humidity requirements for mold growth
[J]. Appl. Microbiol., 1953, 1: 287
[本文引用: 1]
[59]
Gorur R S, Montesinos J, Roberson R, et al.
Mold growth on nonceramic insulators and its impact on electrical performance
[J]. IEEE Trans. Power Deliv., 2003, 18: 559
[本文引用: 1]
[60]
Juzeliūnas E, Ramanauskas R, Lugauskas A, et al.
Microbially influenced corrosion acceleration and inhibition. EIS study of Zn and Al subjected for two years to influence of Penicillium frequentans, Aspergillus niger and Bacillus mycoides
[J]. Electrochem. Commun., 2005, 7: 305
[本文引用: 1]
[61]
Nielsen K F, Mogensen J M, Johansen M, et al.
Review of secondary metabolites and mycotoxins from the Aspergillus niger group
[J]. Anal. Bioanal. Chem., 2009, 395: 1225
[本文引用: 1]
[62]
Zhang T S, Wang J L, Zhang G A, et al.
The corrosion promoting mechanism of Aspergillus niger on 5083 aluminum alloy and inhibition performance of miconazole nitrate
[J]. Corros. Sci., 2020, 176: 108930
[本文引用: 1]
[63]
Saravolatz L D, Johnson L B, Kauffman C A.
Voriconazole: A new triazole antifungal agent
[J]. Clin. Infect. Dis., 2003, 36: 630
[本文引用: 1]
[64]
Nagappan V, Deresinski S.
Reviews of anti-infective agents: Posaconazole: a broad-spectrum triazole antifungal agent
[J]. Clin. Infect. Dis., 2007, 45: 1610
[本文引用: 1]
[65]
Liu H W, Sharma M, Wang J L, et al.
Microbiologically influenced corrosion of 316L stainless steel in the presence of Chlorella vulgaris
[J]. Int. Biodeterior. Biodegrad., 2018, 129: 209
[本文引用: 1]
[66]
Wang J L, Zhang T S, Zhang X X, et al.
Inhibition effects of benzalkonium chloride on Chlorella vulgaris induced corrosion of carbon steel
[J]. J. Mater. Sci. Technol., 2020, 43: 14
[本文引用: 1]
[67]
Zhao L, Hong A H, Qi Y Z, et al.
Exploration of the algaecide zeolite carrying copper
[J]. China Environ. Sci., 2002, 22(3): 207
[本文引用: 1]
趙玲, 洪愛(ài)華, 齊雨藻等。
沸石載銅除藻劑的探討
[J]. 中國(guó)環(huán)境科學(xué), 2002, 22(3): 207
[本文引用: 1]
[68]
Li D, Zhang H J, Fu L J, et al.
A novel algicide: Evidence of the effect of a fatty acid compound from the marine bacterium, Vibrio sp. BS02 on the harmful dinoflagellate, Alexandrium tamarense
[J]. PLoS One, 2014, 9: e91201
[本文引用: 3]
[69]
Papke U, Gross E M, Isolation Francke W., identification and determination of the absolute configuration of Fischerellin B.
A new algicide from the freshwater cyanobacterium Fischerella muscicola (Thuret)
[J]. Tetrahedron Lett., 1997, 38: 379
[本文引用: 1]