首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.6 (Desalination Vol.149) Jul 7-12, 2002 Toulouse, France >Improving membrane integrity monitoring indirect methods to reduce plant downtime and increase microbial removal credit
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Improving membrane integrity monitoring indirect methods to reduce plant downtime and increase microbial removal credit

机译:改善膜完整性监测的间接方法,以减少设备停机时间并增加微生物去除的信誉

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This work reports an ongoing AWWARF research project on integrity testing of low-pressure membrane processes. The project includes an evaluation of existing and improved methods through testing at full-scale plants representing different membrane systems. The assessment and advancement of integrity monitoring methods is being performed using five essential criteria: sensitivity, continuity, identifiability, reliability, and cost effectiveness. The project approach focuses on full-scale surveying, representation, testing, correlation, and validation of several existing and improved or newly developed integrity monitoring methods and concepts. The plant survey has been completed at testing and the full scale facilities is ongoing. The international plant survey results indicate that amongst direct methods, the pressure decay test (PDT) was the most frequently used method for integrity monitoring. Turbidity monitoring, routine microbial analysis, and particle counting were the most frequently used indirect methods. Particle counting, though sometimes considered to be relatively costly, was seen to be utilized by almost half of the plants surveyed. Particle monitoring is currently not employed by most plants. It appears that if improvements can be made to online indirect methods for monitoring membrane integrity, such as better sensitivity for traditional instruments (e.g. improvements to turbidimeter) or better economics for more advanced instruments (e.g. less costly particle counters), then the advantages of no plant downtime can be combined with advantages of online monitoring with required sensitivity and affordable cost.
机译:这项工作报告了AWWARF正在进行的有关低压膜工艺完整性测试的研究项目。该项目包括对代表不同膜系统的大型工厂进行测试,评估现有方法和改进方法。完整性监视方法的评估和改进使用五个基本标准进行:敏感性,连续性,可识别性,可靠性和成本效益。该项目方法侧重于对几种现有的和改进的或新开发的完整性监控方法和概念进行全面的调查,表示,测试,关联和验证。工厂调查已在测试中完成,并且正在进行全面的生产。国际工厂调查结果表明,在直接方法中,压力衰减测试(PDT)是完整性监控最常用的方法。浊度监测,常规微生物分析和颗粒计数是最常用的间接方法。颗粒计数尽管有时被认为是相对昂贵的,但据观察,几乎一半的被调查植物都在使用颗粒计数。大多数工厂目前不使用粒子监视。看来,如果可以改进用于监测膜完整性的在线间接方法,例如,对传统仪器的灵敏度更高(例如浊度仪的改进)或对更先进的仪器的更好的经济性(例如成本更低的颗粒计数器),则无需工厂停机时间可以与在线监测的优势相结合,具有所需的敏感性和可承受的成本。

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