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用D-氨基酸混合物强化杀生剂处理以对抗来自水冷却塔的生物膜群落

Enhanced Biocide Treatments with D-amino Acid Mixtures against a Biofilm Consortium from a Water Cooling Tower.

作者信息

Jia Ru, Li Yingchao, Al-Mahamedh Hussain H, Gu Tingyue

机构信息

Department of Chemical and Biomolecular Engineering, Institute for Corrosion and Multiphase Technology, Ohio University, AthensOH, United States.

Beijing Key Laboratory of Failure, Corrosion and Protection of Oil/Gas Facility Materials, Department of Materials Science and Engineering, China University of Petroleum - BeijingBeijing, China.

出版信息

Front Microbiol. 2017 Aug 16;8:1538. doi: 10.3389/fmicb.2017.01538. eCollection 2017.

Abstract

Different species of microbes form mixed-culture biofilms in cooling water systems. They cause microbiologically influenced corrosion (MIC) and biofouling, leading to increased operational and maintenance costs. In this work, two D-amino acid mixtures were found to enhance two non-oxidizing biocides [tetrakis hydroxymethyl phosphonium sulfate (THPS) and NALCO 7330 (isothiazoline derivatives)] and one oxidizing biocide [bleach (NaClO)] against a biofilm consortium from a water cooling tower in lab tests. Fifty ppm (w/w) of an equimass mixture of D-methionine, D-leucine, D-tyrosine, D-tryptophan, D-serine, D-threonine, D-phenylalanine, and D-valine (D8) enhanced 15 ppm THPS and 15 ppm NALCO 7330 with similar efficacies achieved by the 30 ppm THPS alone treatment and the 30 ppm NALCO 7330 alone treatment, respectively in the single-batch 3-h biofilm removal test. A sequential treatment method was used to enhance bleach because D-amino acids react with bleach. After a 4-h biofilm removal test, the sequential treatment of 5 ppm bleach followed by 50 ppm D8 achieved extra 1-log reduction in sessile cell counts of acid producing bacteria, sulfate reducing bacteria, and general heterotrophic bacteria compared with the 5 ppm bleach alone treatment. The 10 ppm bleach alone treatment showed a similar efficacy with the sequential treatment of 5 ppm bleach followed by 50 ppm D8. The efficacy of D8 was found better than that of D4 (an equimass mixture of D-methionine, D-leucine, D-tyrosine, and D-tryptophan) in the enhancement of the three individual biocides against the biofilm consortium.

摘要

不同种类的微生物在冷却水系统中形成混合培养生物膜。它们会引发微生物影响的腐蚀(MIC)和生物污垢,导致运营和维护成本增加。在这项工作中,在实验室测试中发现两种D - 氨基酸混合物可增强两种非氧化性杀生剂[四羟甲基硫酸磷(THPS)和NALCO 7330(异噻唑啉衍生物)]以及一种氧化性杀生剂[漂白剂(NaClO)]对来自水冷却塔的生物膜群落的杀灭效果。在单批次3小时生物膜去除试验中,50 ppm(w/w)的D - 蛋氨酸、D - 亮氨酸、D - 酪氨酸、D - 色氨酸、D - 丝氨酸、D - 苏氨酸、D - 苯丙氨酸和D - 缬氨酸的等质量混合物(D8)增强了15 ppm THPS和15 ppm NALCO 7330的效果,其效果分别与单独使用30 ppm THPS处理和单独使用30 ppm NALCO 7330处理相似。由于D - 氨基酸会与漂白剂发生反应,因此采用了一种顺序处理方法来增强漂白剂的效果。在4小时生物膜去除试验后,与单独使用5 ppm漂白剂处理相比,先使用5 ppm漂白剂然后再使用50 ppm D8的顺序处理在产酸菌、硫酸盐还原菌和一般异养菌的固着细胞计数上实现了额外的1个对数级的减少。单独使用10 ppm漂白剂处理与先使用5 ppm漂白剂然后再使用50 ppm D8的顺序处理效果相似。发现在增强三种单独杀生剂对生物膜群落的杀灭效果方面,D8的效果优于D4(D - 蛋氨酸、D - 亮氨酸、D - 酪氨酸和D - 色氨酸的等质量混合物)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d203/5561659/48383fe08299/fmicb-08-01538-g001.jpg

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