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Effectiveness of admixtures, surface treatments and antimicrobial compounds against biogenic sulfuric acid corrosion of concrete

机译:外加剂,表面处理剂和抗菌剂对混凝土的生源硫酸腐蚀的有效性

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摘要

In situ failure of laboratory tested coatings against biogenic sulfuric acid (BSA) corrosion of concrete in sewers has lead to new approaches that affect microbial activity. This paper reports on the performance of concrete surfaces containing antimicrobial polymer fibers or metal-zeolites in preventing BSA corrosion. Additionally, the effectiveness of commercial surface treatments and admixtures was measured by means of accelerated chemical exposure and microbiological simulation tests. The biocidal effect of antimicrobial additives was quantified by means of incubation tests on mortar specimens. The presence of antimicrobial compounds resulted in a 3-12-fold decrease of the bacterial activity, as observed from ATP measurements. The largest deterioration from the accelerated tests was noticed for a cementitious coating. The antimicrobial and silicates admixtures did not result in a protective effect towards degradation under the given test conditions. The best protection was obtained with a polyurea lining and an epoxy coating. No loss of coating integrity could be observed after 8 and 10 cycles of microbiological and chemical testing, respectively.
机译:实验室测试的涂料对下水道中混凝土的生物硫酸(BSA)腐蚀的原位失效导致了影响微生物活性的新方法。本文报道了含有抗微生物聚合物纤维或金属沸石的混凝土表面在防止BSA腐蚀方面的性能。另外,通过加速化学暴露和微生物模拟测试来测量商业表面处理和混合物的有效性。通过在砂浆标本上进行温育试验,定量了抗菌添加剂的杀生物作用。如从ATP测量中观察到的,抗菌化合物的存在导致细菌活性降低了3-12倍。水泥涂层发现加速试验中最大的劣化。在给定的测试条件下,抗微生物剂和硅酸盐混合物不会对降解产生保护作用。用聚脲衬里和环氧涂料可获得最好的保护。分别经过8和10个循环的微生物和化学测试后,未观察到涂层完整性的损失。

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