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首页> 外文期刊>World Journal of Microbiology and Biotechnology >d-amino acids for the enhancement of a binary biocide cocktail consisting of THPS and EDDS against an SRB biofilm
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d-amino acids for the enhancement of a binary biocide cocktail consisting of THPS and EDDS against an SRB biofilm

机译:d-氨基酸,用于增强针对THB和EDDS的二元杀生物剂混合物,对抗SRB生物膜

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摘要

Biofilms of sulfate reducing bacteria (SRB) are often responsible for Microbiologically Influenced Corrosion (MIC) that is a major problem in the oil and gas industry as well as water utilities and other industries. This work was inspired by recent reports that some d-amino acids may be useful in the control of microbial biofilms. A d-amino acid mixture with equimolar d-tyrosine, d-methionine, d-tryptophan and d-leucine was tested in this work for their enhancement of a biocide cocktail containing tetrakis (hydroxymethyl) phosphonium sulfate (THPS) and ethylenediamine-N,N’-disuccinic acid (EDDS). Desulfovibrio vulgaris (ATCC 7757) was cultured in ATCC 1249 medium. Its biofilm was grown on C1018 carbon steel coupons. Experimental results indicated that the triple biocide cocktail consisting of 30 ppm THPS, 500 ppm EDDS and 6.6 ppm d-amino acid mixture (with equimolar d-tyrosine, d-methionine, d-tryptophan and d-leucine) was far more effective than THPS and EDDS alone and their binary combination. The triple biocide cocktail effectively prevented SRB biofilm establishment and removed the established SRB biofilm. The d-amino acid mixture alone did not show significant effects in the two tasks even at 660 ppm.
机译:硫酸盐还原细菌(SRB)的生物膜通常是造成微生物影响的腐蚀(MIC)的原因,而微生物腐蚀是油气行业以及自来水公司和其他行业的主要问题。这项工作的灵感来自最近的报道,即某些d-氨基酸可能对控制微生物生物膜有用。在这项工作中,我们测试了具有等摩尔浓度的d-酪氨酸,d-蛋氨酸,d-色氨酸和d-亮氨酸的d-氨基酸混合物,以增强它们所含的杀菌剂混合物,该混合物包含四(羟甲基)硫酸phospho(THPS)和乙二胺-N, N'-二琥珀酸(EDDS)。在ATCC 1249培养基中培养寻常型脱硫弧菌(ATCC 7757)。它的生物膜生长在C1018碳钢试样上。实验结果表明,由30 ppm THPS,500 ppm EDDS和6.6 ppm d-氨基酸混合物(与等摩尔d-酪氨酸,d-蛋氨酸,d-色氨酸和d-亮氨酸组成)组成的三倍杀菌剂混合物比THPS更加有效和EDDS本身及其二进制组合。三重杀生物剂混合物有效阻止了SRB生物膜的形成并去除了已建立的SRB生物膜。即使在660ppm下,单独的d-氨基酸混合物在两个任务中也没有表现出明显的作用。

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