首页> 外文会议>Water Environment Federation 76th annual technical exhibition and conference (WEFTEC 2003) >A NOVEL ANALYTICAL APPROACH FOR EVALUATING PROTECTIVE COATINGS PERFORMANCE IN WASTEWATER ENVIRONMENTS
【24h】

A NOVEL ANALYTICAL APPROACH FOR EVALUATING PROTECTIVE COATINGS PERFORMANCE IN WASTEWATER ENVIRONMENTS

机译:评价废水环境中保护性涂料性能的新型分析方法

获取原文
获取原文并翻译 | 示例

摘要

Municipal wastewater collection and treatment systems have historically had corrosive conditions in the aerated headspaces of concrete and metal structures. This biogenic sulfide corrosion has become more severe in recent years due to longer detention times, increased usage of force mains, industrial pretreatment for metals removal and the covering of tanks and channels for odor control purposes. Protective coatings that performed well in wastewater headspaces in the past have repeatedly failed under these newer and more severe exposure conditions. Failure analysis experience has shown that the performance of coatings in these more aggressive environments is closely related to permeability properties. Low permeability of coatings and linings to the corrosive gases and liquids present in the wastewater vapor phase has been shown to substantially increase coating performance. rnEvaluating coatings that will provide the right barrier properties for long-term performance is currently based on in-service performance histories. This takes too much time for new coating formulations. Until recently, no existing laboratory test methods were available to more expeditiously evaluate coating performance for these newer, more aggressive conditions. rnTnemec Company, in collaboration with partners, established a testing project team and decided to develop a novel approach to accelerated laboratory testing for evaluation of coating performance in simulated wastewater headspace conditions. These coatings with superior barrier properties, combined with excellent substrate adhesion, are expected to offer the best performance. rnA unique laboratory test chamber was designed and built to simulate the contributing exposure conditions pertinent to coating permeability and chemical resistance. Electro-chemical impedance spectroscopy is being used to monitor and evaluate the barrier and permeability properties of coating systems exposed to these replicated conditions. rnA companion field test program is also been underway at the Deer Island Treatment Plant in Boston, Massachusetts. All coatings tested in the laboratory cabinet have also been exposed to real treatment plant exposure conditions, including intermittently high H2S gas concentrations. rnThis paper describes the simulated exposure conditions and the accelerated parameter capabilities of the cabinet. It further discusses the learnings from nearly two years of laboratory test results. rnThe paper will demonstrate conclusively that permeation resistance is the key factor in the successful performance of coatings in wastewater headspaces. It will further show that this accelerated testing method is the right tool to use when selecting coatings for those environments in the future.
机译:历史上,市政废水收集和处理系统在混凝土和金属结构的充气顶空具有腐蚀条件。近年来,由于更长的滞留时间,增加的主力管使用,用于金属去除的工业预处理以及用于气味控制目的的储罐和通道的覆盖,这种生物硫化物腐蚀变得更加严重。过去在废水顶部空间中表现良好的防护涂料在这些更新,更严苛的暴露条件下屡屡失效。失效分析的经验表明,在这些更具腐蚀性的环境中,涂层的性能与渗透性密切相关。涂层和衬里对废水蒸气相中存在的腐蚀性气体和液体的低渗透性已显示出可大大提高涂层性能。 rn目前,根据使用中的性能历史来评估将提供正确的阻隔性能以实现长期性能的涂料。对于新的涂料配方,这会花费太多时间。直到最近,还没有现有的实验室测试方法可以更快地评估这些更新,更苛刻的条件下的涂层性能。特奈麦克公司与合作伙伴合作,建立了一个测试项目团队,并决定开发一种新颖的方法来加速实验室测试,以评估模拟废水顶空条件下的涂层性能。这些具有优异阻隔性能和出色的基材附着力的涂料有望提供最佳性能。 rn设计并建造了一个独特的实验室测试室,以模拟与涂层渗透性和耐化学性有关的重要暴露条件。电化学阻抗谱正用于监测和评估暴露在这些重复条件下的涂料体系的阻隔性和渗透性。 rn在马萨诸塞州波士顿的鹿岛污水处理厂也正在进行同伴现场测试计划。在实验室柜中测试的所有涂层也已暴露于实际的处理厂暴露条件下,包括间歇性的高H2S气体浓度。 rn本文介绍了模拟的曝光条件和机柜的加速参数功能。它进一步讨论了将近两年的实验室测试结果。 rn本文将最终证明,抗渗透性是废水顶空处涂料成功运行的关键因素。这将进一步表明,这种加速测试方法是将来为这些环境选择涂料时使用的正确工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号