Гуанідінійвмісний олігомер як інгібітор мікробної корозії металу

Q4 Biochemistry, Genetics and Molecular Biology Mikrobiolohichnyi zhurnal Pub Date : 2024-02-23 DOI:10.15407/microbiolj86.01.014
D.R. Abdulina, M.Ya. Vortman, Zh.P. Kopteva, G.O. Iutynska, A.E. Kopteva, V.N. Lemeshko, V. V. Shevchenko, L. Biliavska
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Abstract

Guanidinium-containing oligomers, a poorly studied class of organic compounds, have attracted attention due to their bactericidal properties. A guanidinium-containing oligomer based on an aliphatic oligoepoxide is a newly synthesized substance with bactericidal activity, which gives it the prospects for use as a microbial corrosion inhibitor. Aim. The goal of the study was to synthesize oligomeric alkyl substituted guanidinium bromide and study of its anticorrosive properties in the presence of steel under the influence of corrosive active sulfate-reducing bacteria. Methods. The guanidine-containing alkyl substituted oligomer was obtained by the reaction of the aliphatic oligoepoxide DEG-1 with guanidine, followed by interaction with alkyl bromide. The anticorrosive properties of the guanidine-containing oligomer were studied using collection strains of sulfate-reducing bacteria: UCM B-11503 Desulfovibrio sp.10, UCM B-11501 Desulfovibrio desulfuricans DSM642, and UCM B-11502 Desulfovibrio vulgaris DSM644. The sulfate-reducing bacteria were grown on Postgate В medium for 14 days at a temperature of 28 ± 2 °C. The number of bacteria was determined by the method of tenfold dilution. The corrosion rate was determined by the gravimetric method. The physicochemical parameters of pH and redox potential of the bacterial culture liquid were studied by the potentiometric method. The accumulation of hydrogen sulfide in the culture liquid was determined by the iodometric method. Lipolytic activity was studied spectrophotometrically using a KFK-3 device by reaction with p-nitrophenyl palmitate, catalase activity — using 0.03% hydrogen peroxide, which formed a stable colored complex with a 4% molybdenum diphosphate solution. The specific activity of the studied enzymes was expressed as unit ∙ mg-1 protein. Protein was determined in the supernatant by the conventional Lowry method. Results. It was shown that the oligomer based on aliphatic oligoepoxide has biocidal properties. A significant inhibition of the development of sulfate-reducing bacteria (SRB) was observed after the oligomer was added; only dozens of bacterial cells were detected in the medium after the exposure period. The corrosion rate of steel in the presence of SBR without addition of inhibitors was 0.15 — 0.35 mg/cm2∙h. The addition of DPC (a quaternary ammonium compound based on N-decylpyridinium chloride) (Kyiv Polytechnic Institute (KPI), Ukraine) to the culture medium led to a decrease in the steel corrosion rate to 0.032 — 0.047 mg ∙ cm-2  h-1 (by 6.5—10.6 times). In the presence of Armohib CI-28 inhibitor (based on Diamine Ethoxylate) (Akzonobel, Holland), the corrosion rate was reduced to 0.02—0.039 mg ∙ cm-2  h-1 (by 4.2 — 12.7 times). The addition of guanidinium-containing oligomer to the medium with bacteria reduced the corrosion rate to 0.075—0.079 mg/cm2 ∙ h (by 2.5—2.7 times). According to the mass loss of steel samples, the degree of metal protection against microbial corrosion in the presence of guanidinium-containing oligomer was 60.15—63.17%. Conclusions. The obtained data indicate that the guanidinium-containing oligomer based on aliphatic oligoepoxy has biocidal and anticorrosive properties and is promising for use as a means of combating microbially induced corrosion.
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作为金属微生物腐蚀抑制剂的含胍低聚物
含胍低聚物是一类研究较少的有机化合物,因其杀菌特性而备受关注。基于脂肪族低聚环氧化物的含胍低聚物是一种新合成的物质,具有杀菌活性,因此有望用作微生物腐蚀抑制剂。研究目的本研究的目的是合成低聚烷基取代的溴化胍,并研究其在腐蚀性活跃的硫酸盐还原菌影响下对钢材的防腐性能。研究方法通过脂肪族低聚环氧化物 DEG-1 与胍反应,然后与烷基溴作用,得到含胍的烷基取代低聚物。研究人员使用硫酸盐还原菌的菌种对含胍低聚物的防腐特性进行了研究:UCM B-11503 Desulfovibrio sp.10、UCM B-11501 Desulfovibrio desulfuricans DSM642 和 UCM B-11502 Desulfovibrio vulgaris DSM644。硫酸盐还原菌在 Postgate В 培养基上生长 14 天,温度为 28 ± 2 °C。细菌数量用十倍稀释法测定。腐蚀速率采用重量法测定。细菌培养液的 pH 值和氧化还原电位等理化参数采用电位计法进行研究。用碘量法测定了培养液中硫化氢的积累。脂肪分解活性用 KFK-3 装置通过与对硝基苯棕榈酸酯反应进行分光光度法研究;过氧化氢酶活性--使用 0.03%的过氧化氢,它与 4%的二磷酸钼溶液形成稳定的有色复合物。所研究的酶的特定活性以单位 ∙ mg-1 蛋白质表示。上清液中的蛋白质用传统的洛里法测定。结果表明研究表明,基于脂肪族低聚环氧化物的低聚物具有杀菌特性。加入低聚物后,硫酸盐还原菌(SRB)的生长受到了明显的抑制;暴露期结束后,培养基中只检测到几十个细菌细胞。在不添加抑制剂的情况下,SBR 对钢材的腐蚀速率为 0.15 - 0.35 mg/cm2-h。在培养基中添加 DPC(一种基于 N-decylpyridinium chloride 的季铵盐化合物)(乌克兰基辅理工学院 (KPI))后,钢的腐蚀速率降低到 0.032 - 0.047 mg ∙ cm-2 h-1 (6.5-10.6 倍)。在 Armohib CI-28 抑制剂(基于乙氧基化二胺)(荷兰 Akzonobel 公司)的作用下,腐蚀速率降低到 0.02-0.039 毫克 ∙ 厘米-2 小时-1(降低 4.2-12.7 倍)。在含有细菌的培养基中加入含胍低聚物,腐蚀速率可降至 0.075-0.079 mg/cm2 ∙ h(降低 2.5-2.7 倍)。根据钢材样品的质量损失,在含胍低聚物存在的情况下,金属对微生物腐蚀的保护程度为 60.15%-63.17%。结论所获得的数据表明,基于脂肪族低聚环氧树脂的含胍低聚物具有杀菌和防腐特性,有望用作抗微生物诱导腐蚀的一种手段。
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Mikrobiolohichnyi zhurnal
Mikrobiolohichnyi zhurnal Medicine-Microbiology (medical)
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