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Effects of temperature and relative humidity on laboratory air filter loading test by hygroscopic salts

机译:温度和相对湿度对吸湿盐的实验室空气过滤器负载试验的影响

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摘要

Air filters are common control technologies of the atmosphere pollutant, which could be operated under different environments. The operating conditions include different temperatures, relative humidities, and particle states. However, typical filter testing conditions do not strictly regulate the aforementioned parameters; hence there is always a discrepancy between the lab filter testing and the actual operating conditions. Air filter loading results are valuable to predict the filter life, whereas it could be affected by testing conditions. In this study, the effects of temperature and relative humidity on the air filter loading by hygroscopic salts were studied. Potassium chloride, ammonium sulfate, and ammonium nitrate are used to represent the dry solid particles and wet particles in the atmosphere. The testing temperature covers from 5 ?C to 50 ?C and the testing RH covers from 30% to 75%. Importantly, the absolute humidity is considered in this study, which depends on both temperature and RH. Besides the experiments, the possible reasons that could affect the filter loading were also discussed. Based on the experiment results and theories discussed, it could be concluded that the testing RH is a major factor while the testing temperature is a minor factor, which affects the hygroscopic particle filter loading, regardless of the particle state (dry/wet). This article not only suggests the need of revising current filter testing standards by considering the air filter operating temperature and relative humidity but also offers an insight into how the atmospheric particles hygroscopicity can be linked with ambient particulate matter mitigation technologies.
机译:空气过滤器是大气污染物的常用控制技术,可在不同环境下运行。操作条件包括不同的温度、相对湿度和颗粒状态。然而,典型的过滤器测试条件没有严格规定上述参数;因此,实验室过滤器测试和实际操作条件之间总是存在差异。空气过滤器加载结果对预测过滤器寿命很有价值,但它可能会受到测试条件的影响。在本研究中,研究了温度和相对湿度对吸湿盐加载空气过滤器的影响。氯化钾、硫酸铵和硝酸铵用于表示大气中的干固体颗粒和湿颗粒。测试温度范围为5?C到50?C,测试相对湿度为30%至75%。重要的是,本研究考虑了绝对湿度,这取决于温度和相对湿度。除实验外,还讨论了影响过滤器负荷的可能原因。根据所讨论的实验结果和理论,可以得出结论,测试相对湿度是影响吸湿性颗粒过滤器负载的主要因素,而测试温度是次要因素,无论颗粒状态如何(干/湿)。本文不仅提出了通过考虑空气过滤器工作温度和相对湿度来修订现行过滤器测试标准的必要性,还提供了大气颗粒吸湿性如何与环境颗粒物缓解技术联系起来的见解。

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