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首页> 外文期刊>Journal of Hazardous Materials >Caveats and technical challenges in performance evaluation of activated carbon (AC) and non-AC filtration for NO_2 abatement toward energy- efficient and healthy ventilation
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Caveats and technical challenges in performance evaluation of activated carbon (AC) and non-AC filtration for NO_2 abatement toward energy- efficient and healthy ventilation

机译:活性炭(AC)和非AC过滤性能评估中的注意事项和技术挑战,以实现NO_2减排以实现节能高效和健康通风

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摘要

As the awareness of public health/safety becomes important and the desire to provide clean/safe indoor air in a sustainable way increases, air filtration technology has become essential at urban built facilities, which are challenged by significant outdoor air pollution due to dense population and heavy traffic. To provide comparable/objective data for designers and professionals of gas-phase filtration equipment in HVAC systems, it is important to understand the performance and characteristics of possible filter medium candidates within a reasonable testing period at low levels of target hazard concentration (typically, similar to 0.05 ppm). The present study investigated the 2000-time scale-down evaluation evidence and its behind reasons between practical high concentration tests (similar to 100 ppm NO2) and actual low-concentration ones, and investigated potential dangers identified during the study in utilizing activated carbon (AC)-based virgin filter media in indoor applications due to unexpected NO-desorption phenomenon. Six filter media of AC -based and non-AC with different type/pellet/shape/size/target compound were selected and tested for abating NO2 mainly originated outdoors. A multi-channel simultaneous testing system was utilized for similar standard testing conditions. The study findings provide previously unavailable experimental data and new insight into the behavior of widely used filtration media against NO2 for the enhancement of urban resilience.
机译:随着公众健康/安全意识的提高以及以可持续方式提供清洁/安全的室内空气的需求不断增加,空气过滤技术已成为城市建筑设施中必不可少的组成部分,由于人口密集和交通拥挤,室外空气污染受到挑战交通繁忙。为了向HVAC系统中的气相过滤设备的设计人员和专业人员提供可比较/客观的数据,重要的是要了解在合理的测试时间内,在目标危害浓度较低的情况下(典型地,类似的)可能的过滤介质候选物的性能和特性。至0.05 ppm)。本研究调查了2000倍按比例缩小的评估证据及其在实际高浓度测试(类似于100 ppm NO2)和实际低浓度测试之间的背后原因,并调查了在研究过程中发现的利用活性炭(AC)的潜在危险在室内应用中使用基于)的纯净过滤介质,这是由于出现了意外的NO脱附现象。选择了六种不同类型/颗粒/形状/大小/目标化合物的基于AC和非AC的过滤介质,并进行了测试,以消除主要源自室外的NO2。多通道同时测试系统用于类似的标准测试条件。该研究结果提供了以前无法获得的实验数据,并为广泛使用的过滤介质对抗NO2的行为提供了新的见识,以增强城市的适应能力。

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  • 来源
    《Journal of Hazardous Materials 》 |2018年第15期| 560-570| 共11页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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