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A test-based method for estimating the service life of adsorptive portable air cleaners in removing indoor formaldehyde

机译:评估吸附型便携式空气净化器去除室内甲醛的使用寿命的基于测试的方法

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摘要

Portable air cleaners (PACs) with activated carbon filters are frequently used to remove gaseous contaminants. However, activated carbon has a limited adsorption capacity for small polar molecules, such as formaldehyde. Formaldehyde is a ubiquitous air contaminant with hazardous effects to human health. Thus, characterizing carbon filter performance decay and being able to predict the service life of PACs is of high importance. This study proposes a testing method which enables the continuous measurement of the clean air delivery rate (CADR). Vaporized formaldehyde was injected at a constant rate, i.e. 14 mg/h or 45 mg/h, into an air-tight chamber where the PAC was operating. The CADR was calculated from the steady-state concentration in the chamber according to the mass-balance equation. An adsorptive PAC with a pleated composite filter of activated carbon and high efficiency particulate air (HEPA) was tested until the CADR decreased to ca. 30% of its initial value. The functional relationship between the CADR and the cumulative adsorbed mass (CAM) of formaldehyde was established. Then, formaldehyde emission rates and ventilation rates in real Chinese residences were estimated by literature research. The obtained data were used in simulation to investigate PAC service life under a range of different situations. Test results showed that the CADR tended to decay exponentially with the CAM. According to the simulation, the CADR declined by 90% after a duration of 130-190 h under the most strenuous condition. However, PAC service life could be prolonged to more than 2000 h under realistic usage conditions.
机译:带有活性炭过滤器的便携式空气净化器(PAC)通常用于去除气态污染物。但是,活性炭对小极性分子(例如甲醛)的吸附能力有限。甲醛是一种普遍存在的空气污染物,会对人体健康造成危害。因此,表征碳过滤器性能下降并能够预测PAC的使用寿命非常重要。这项研究提出了一种能够连续测量清洁空气输送率(CADR)的测试方法。将汽化甲醛以恒定速率(即14 mg / h或45 mg / h)注入PAC运行所在的气密室中。根据质量平衡方程,从腔室内的稳态浓度计算出CADR。测试了带有活性炭和高效微粒空气(HEPA)的打褶复合过滤器的吸附式PAC,直到CADR降低到约200。初始值的30%。建立了CADR与甲醛累积吸附量(CAM)之间的功能关系。然后,通过文献研究估算了中国实际住宅中的甲醛释放率和通风率。将获得的数据用于仿真,以研究在各种不同情况下的PAC使用寿命。测试结果表明,CADR随CAM呈指数衰减。根据模拟,在最剧烈的条件下持续130-190小时后,CADR下降了90%。但是,在实际使用条件下,PAC的使用寿命可以延长到2000小时以上。

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