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Best Practices for Maintenance of Concrete Bridge Elements against Mold and Mildew Growth

机译:对模具和霉菌增长维护混凝土桥元件的最佳实践

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Bio-deterioration of concrete surfaces on vertical elements of bridges represents a serious challenge to the highway infrastructure in Louisiana, not only for its poor aesthetic appeal but also because of the accelerated deterioration that biofilm causes on concrete. This paper investigates the causes of biofilm proliferation on concrete, the consequences that these living organisms have on concrete, and the best methods used to control and eliminate biofilm growth on concrete. A literature review was conducted and a survey was developed and distributed among different states DOTs to determine current biofilm preventing and cleaning practices and their effectiveness. The survey results show that not all the states have biofilm growth, and that those that do, are located in warm and humid geographical locations. Results also suggest that the main cause of bio-deterioration of concrete surfaces is caused by micro-organisms' activity present at the surface. Furthermore, current practices used to prevent and clean biofilms growth are pressure washing, biocides, and addition of self-cleaning photocatalytic nano titanium dioxide (TiO_2) coatings to concrete surfaces. Results also suggest that the use of self-cleaning photocatalytic nano TiO_2 coatings appears to be the most effective method in preventing microbial growth on concrete surfaces.
机译:桥梁垂直元素的混凝土表面的生物 - 劣化对路易斯安那州的高速公路基础设施来说是一个严峻的挑战,而不仅仅是为了它的审美吸引力差,而且因为生物膜导致混凝土的加速劣化。本文研究了生物膜增殖对混凝土的原因,这些生物体对混凝土的后果,以及用于控制和消除混凝土的生物膜生长的最佳方法。进行了一个文献综述,在不同状态点开发并分发了调查,以确定目前的生物膜预防和清洁措施及其有效性。调查结果表明,并非所有国家都有生物膜增长,而那些所做的结果都位于温暖和潮湿的地理位置。结果还表明,混凝土表面生物劣化的主要原因是由表面存在的微生物的活性引起的。此外,用于预防和清洁生物膜生长的电流实践是压力洗涤,杀生物剂,并向混凝土表面加入自清洁光催化纳米二氧化钛(TiO_2)涂层。结果还表明,使用自清洁光催化纳米TiO_2涂层似乎是预防混凝土表面上微生物生长的最有效方法。

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