Longevity of size-dependent particle removal performance of do-it-yourself box fan air filters.

IF 4.3 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL Environmental Science: Processes & Impacts Pub Date : 2024-10-28 DOI:10.1039/d4em00406j
Theresa Pistochini, Graham Jaeger, Christopher D Cappa, Richard L Corsi
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Abstract

Filtration performance of do-it-yourself (DIY) box fan filters deployed across a university campus was assessed over an academic year. Four DIY air filters were constructed from box fans and air filters with a minimum efficiency reporting value (MERV) of 13 and deployed in four spaces (two laboratories that include sources of particles and two offices). They were operated 9 hours daily with a programmable timer and were continuously monitored with power meters. Particle concentrations in the spaces were continuously monitored with low-cost nephelometers. The particle size dependent clean air delivery rate (CADR) and single pass filtration efficiency for each box was measured in a laboratory before deployment and every 10 weeks, for a total of five measurements over 40 weeks. We find that these DIY box fan filters maintain robust performance over time, with each air filter maintaining at least 60% of its initial CADR at the end of the 40 week study even with daily operation in environments with modest particle concentrations. CADR values for particles of 1.0-3.0 μm optical diameter averaged 34% higher than CADR values for 0.35-1.0 μm particles, aligning with MERV 13 filter size-dependent filtration expectations. Reductions in CADR over time were attributed to a reduction in filtration efficiency, likely due to a loss of filter electrostatic charge over time. There was no strong indication that increased resistance due to particle accumulation on filters appreciably decreased flow rates over time for any of the fans. The long-term robustness of DIY box fan air filters demonstrates their validity as a cost-effective, high performance, alternative to portable high efficiency particulate air (HEPA) filters.

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自己动手制作的箱式风扇空气过滤器的颗粒去除性能与尺寸相关的寿命。
在一个学年中,对大学校园内部署的 DIY 箱式风扇过滤器的过滤性能进行了评估。四个 DIY 空气过滤器由箱式风扇和最低效率报告值 (MERV) 为 13 的空气过滤器制成,分别安装在四个空间(两个含有颗粒源的实验室和两个办公室)。它们每天使用可编程定时器运行 9 小时,并使用功率计进行持续监测。空间中的颗粒浓度由低成本的浊度计持续监测。在使用前和每隔 10 周,我们在实验室测量了每个箱式风扇的与颗粒大小相关的洁净空气输送率(CADR)和单次过滤效率,在 40 周内共进行了 5 次测量。我们发现,这些 DIY 箱式风扇过滤器能够长期保持强劲的性能,在 40 周的研究结束时,即使在颗粒浓度适中的环境中每天运行,每个空气过滤器也能保持至少 60% 的初始 CADR。光学直径为 1.0-3.0 μm 的颗粒的 CADR 值比 0.35-1.0 μm 的颗粒的 CADR 值平均高出 34%,这与 MERV 13 过滤器的尺寸过滤预期相一致。随着时间的推移,CADR 值下降的原因是过滤效率降低,这可能是由于过滤器的静电电荷随着时间的推移而损失。没有明显的迹象表明,由于过滤器上的颗粒累积而导致的阻力增加会明显降低任何风扇的流量。DIY 盒式风扇空气过滤器的长期耐用性证明了其作为便携式高效微粒空气过滤器(HEPA)的一种高性价比、高性能替代品的有效性。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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