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Use of Nanomaterials for Concrete Pipe Protection

机译:使用纳米材料进行混凝土管保护

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This paper describes an innovative method for mitigating microbial induced corrosion (MIC) in concrete sewer pipes by driving nano-particles containing an antimicrobial agent into the wall of the steel-reinforced cementitious pipe using electrokinetics, an electrical deposition method. Electrokinetic coating involves the application of a weak electric field between the pipe reinforcement and a properly charged solution of nanoparticles. The electrical potential difference drives the nano-particles in the solution into the hardened concrete paste via its pore structure, simultaneously transporting the antimicrobial agent(s) into the pores. This new method of coating creates a mechanical anchorage between the coating liquid and the host matrix, which has inherent advantage over traditional brush or spray-on coating operations. The paper provides a brief overview of recent advances in spray-on coating and lining methods for protecting concrete pipe used in wastewater conveyance systems. Thereafter, a brief description of electrokinetics is provided. Preliminary results of an experimental testing program involving electro-kinetically coating of 35 mock concrete pipe specimens using cuprous oxide, a heavy metal oxide known the have a toxic effect on sulfate reducing bacteria (SRB), are presented. The preliminary testing program focused on examining the effectiveness of using electrokinetics for the treatment of new pipes, partially deteriorated pipes and pipes that exhibited moderate-to-severe deterioration due to sulfuric acid attack. The design of the experiment and the execution of the electrokinetic coating process are also described. The results suggest that the approach could potentially serves as an effective method for coating of new and partially deteriorated reinforced concrete pipes.
机译:本文通过电动沉积方法将含有抗微生物剂的纳米颗粒驱动纳米颗粒,通过电动沉积方法驱动含有抗微生物剂的纳米颗粒,通过驱动含有抗微生物剂的纳米颗粒来减轻混凝土下水道管中的微生物诱导腐蚀(MIC)的创新方法。电动涂层涉及在管加强件和纳米颗粒的适当带电溶液之间施加弱电场。电电位差通过孔结构将溶液中的纳米颗粒驱动到硬化的混凝土浆料中,同时将抗微生物剂输送到孔中。这种新的涂层方法在涂布液和宿主基质之间产生了机械锚固,其具有在传统刷子或喷涂涂覆操作上具有固有的优势。本文简要介绍了喷涂涂层和衬砌方法的近期进步,保护废水输送系统中使用的混凝土管道。此后,提供了电动性的简要描述。呈现使用Chercous氧化亚氧化亚铜电气动力学涂层的实验测试程序的实验测试计划,已知的重金属氧化物对硫酸盐还原细菌(SRB)具有毒性作用。初步测试计划的重点是检查使用电动学治疗新管道的有效性,部分劣化的管道和管道,这些管道和管道由于硫酸发作而表现出中度至严重的劣化。还描述了实验的设计和电动涂覆方法的执行。结果表明,该方法可能是一种用于涂覆新的和部分恶化的混凝土管的有效方法。

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