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典型室内浓度下活性炭纤维布对主要室内挥发性有机化合物的可处理性研究。

Investigation of the treatability of the primary indoor volatile organic compounds on activated carbon fiber cloths at typical indoor concentrations.

作者信息

Yao Meng, Zhang Qiong, Hand David W, Perram David L, Taylor Roy

出版信息

J Air Waste Manag Assoc. 2009 Jul;59(7):882-90. doi: 10.3155/1047-3289.59.7.882.

Abstract

Volatile organic compounds (VOCs) are a major concern for indoor air pollution because of the impacts on human health. In recent years, interest has increased in the development and design of activated carbon filters for removing VOCs from indoor air. Although extensive information is available on sources, concentrations, and types of indoor VOCs, there is little or no information on the performance of indoor air adsorption systems for removing low concentrations of primary VOCs. Filter designs need to consider various factors such as empty bed contact time, humidity effects, competitive adsorption, and feed concentration variations, whereas adsorption capacities of the indoor VOCs at the indoor concentration levels are important parameters for filter design. A preliminary assessment of the feasibility of using adsorption filters to remove low concentrations of primary VOCs can be performed. This work relates the information (including VOC classes in indoor air, the typical indoor concentrations, and the adsorption isotherms) with the design of a particular adsorbent/adsorbates system. As groundwork for filter design and development, this study selects the primary VOCs in indoor air of residences, schools, and offices in different geographical areas (North America, Europe, and Asia) on the basis of occurrence, concentrations, and health effects. Activated carbon fiber cloths (ACFCs) are chosen as the adsorbents of interest. It is demonstrated that the isotherm of a VOC (e.g., toluene on the ACFC) at typical indoor concentrations-parts per billion by volume (ppbv) level-is different than the isotherm at parts per million by volume (ppmv) levels reported in the publications. The isotherms at the typical indoor concentrations for the selected primary VOCs are estimated using the Dubinin-Radushkevitch equation. The maximum specific throughput for an indoor VOC removal system to remove benzene is calculated as a worst-case scenario. It is shown that VOC adsorption capacity is an important indicator of a filter's lifetime and needs to be studied at the appropriate concentration range. Future work requires better understanding of the realistic VOC concentrations and isotherms in indoor environments to efficiently utilize adsorbents.

摘要

挥发性有机化合物(VOCs)因其对人体健康的影响而成为室内空气污染的主要关注点。近年来,人们对开发和设计用于从室内空气中去除VOCs的活性炭过滤器的兴趣有所增加。尽管关于室内VOCs的来源、浓度和类型有大量信息,但关于去除低浓度主要VOCs的室内空气吸附系统性能的信息却很少或几乎没有。过滤器设计需要考虑各种因素,如空床接触时间、湿度影响、竞争吸附和进料浓度变化,而室内VOCs在室内浓度水平下的吸附容量是过滤器设计的重要参数。可以对使用吸附过滤器去除低浓度主要VOCs的可行性进行初步评估。这项工作将相关信息(包括室内空气中的VOC类别、典型室内浓度和吸附等温线)与特定吸附剂/吸附质系统的设计联系起来。作为过滤器设计和开发的基础工作,本研究根据不同地理区域(北美、欧洲和亚洲)住宅、学校和办公室室内空气中主要VOCs的出现情况、浓度和健康影响来进行选择。选择活性炭纤维布(ACFCs)作为感兴趣的吸附剂。结果表明,在典型室内浓度——体积十亿分之一(ppbv)水平下,一种VOC(如甲苯在ACFC上)的等温线与出版物中报道的体积百万分之一(ppmv)水平下的等温线不同。使用杜宾宁 - 拉杜什凯维奇方程估算所选主要VOCs在典型室内浓度下的等温线。计算了室内VOC去除系统去除苯的最大比通量,作为最坏情况的示例。结果表明,VOC吸附容量是过滤器寿命的重要指标,需要在适当的浓度范围内进行研究。未来的工作需要更好地了解室内环境中实际的VOC浓度和等温线,以便有效利用吸附剂。

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