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Whole House Particle Removal and Clean Air Delivery Rates for In-Duct and Portable Ventilation Systems

机译:管道和便携式通风系统的全屋除尘和清洁空气输送率

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摘要

A novel method for determining whole house particle removal and clean air delivery rates attributable to central and portable ventilation/air cleaning systems is described. The method is used to characterize total and air-cleaner-specific particle removal rates during operation of four in-duct air cleaners and two portable air-cleaning devices in a fully instrumented test home. Operation of in-duct and portable air cleaners typically increased particle removal rates over the baseline rates determined in the absence of operating a central fan or an indoor air cleaner. Removal rates of 0.3- to 0.5-μm particles ranged from 1.5 hr~(-1) during operation of an in-duct, 5-in. pleated media filter to 7.2 hr~(-1) for an in-duct electrostatic air cleaner in comparison to a baseline rate of 0 hr~(-1) when the air handler was operating without a filter. Removal rates for total particulate matter less than 2.5 μm in aerodynamic diameter (PM_(2.5)) mass concentrations were 0.5 hr~(-1) under baseline conditions, 0.5 hr~(-1) during operation of three portable ionic air cleaners, 1 hr~(-1) for an in-duct 1-in. media filter, 2.4 hr~(-1) for a single high-efficiency particle arrestance (HEPA) portable air cleaner, 4.6 hr~(-1) for an in-duct 5-in. media filter, 4.7 hr~(-1) during operation of five portable HEPA filters, 6.1 hr~(-1) for a conventional in-duct electronic air cleaner, and 7.5 hr~(-1) for a high efficiency in-duct electrostatic air cleaner. Corresponding whole house clean air delivery rates for PM_(2.5) attributable to the air cleaner independent of losses within the central ventilation system ranged from 2 m~3/min for the conventional media filter to 32 m~3/min for the high efficiency in-duct electrostatic device. Except for the portable ionic air cleaner, the devices considered here increased particle removal indoors over baseline deposition rates.
机译:描述了一种用于确定可归因于中央和便携式通风/空气清洁系统的整个房屋颗粒清除和清洁空气输送速率的新颖方法。该方法用于表征设备齐全的测试室内的四个管道式空气滤清器和两个便携式空气滤清器在运行期间的总和特定于空气滤清器的颗粒去除率。管道式和便携式空气滤清器的运行通常会比没有操作中央风扇或室内空气滤清器时确定的基线速率提高颗粒去除率。 0.3 in至0.5μm颗粒的去除率在5英寸感应导管操作期间为1.5 hr〜(-1)。相比之下,当空气处理机在没有过滤器的情况下运行时,感应式静电空气滤清器的褶皱介质过滤器可过滤至7.2 hr〜(-1),而基线速率为0 hr〜(-1)。空气动力学直径(PM_(2.5))质量浓度中小于2.5μm的总颗粒物的去除率在基线条件下为0.5 hr〜(-1),在三台便携式离子空气净化器的操作过程中为0.5 hr〜(-1),1 hr〜(-1)用于管道内的1-in。介质过滤器,用于单个高效微粒抑制(HEPA)便携式空气滤清器的过滤器为2.4 hr〜(-1),对于管道内5英寸过滤器的过滤器为4.6 hr〜(-1)。介质过滤器,五个便携式HEPA过滤器运行期间为4.7 hr〜(-1),传统的感应式电子空气滤清器为6.1 hr〜(-1),高效率的进气为7.5 hr〜(-1)静电空气滤清器。独立于中央通风系统损失的空气滤清器,PM_(2.5)的相应整个房屋洁净空气输送速率从传统介质过滤器的2 m〜3 / min到32 m〜3 / min的高效率不等。导静电装置。除了便携式离子空气净化器外,此处考虑的设备在室内的去除率超过了基线沉积速率。

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