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Study of the CO2 Adsorption Performance of a Metal– Organic Frameworks: Applications in Air Conditioning

机译:金属有机骨架CO2吸附性能研究:在空调中的应用

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摘要

Air conditioning systems introduce fresh outdoor air mainly to dilute indoor CO2 and meet the high demand for interior environment quality. However, in some cases, introducing fresh outdoor air cannot be done, because of high pollution of the outdoor air or because there is no fresh air. In these cases, limiting CO2 concentration can be done only through adsorption devices. In this study, innovative metal-organic frameworks (MOFs) were employed as adsorbents to handle CO2 independently in air conditioning systems. Three different MOFs, MIL- 101 (Cr), MIL-101 (Fe), and MIL-100 (Fe), were compared using a dynamic adsorption experimental device. The dynamic adsorption patterns of CO2 on the three adsorption materials and the corresponding performance index parameters were obtained. According to the experimental findings, when the temperature was raised from 298 K to 313 K, the adsorption breakthrough times for CO2 on the three adsorbent materials decreased from 590 s, 470 s, and 295 s to 305 s, 270 s, and 160 s, respectively. When the relative humidity was 30% and 60%, the carbon dioxide removal capacity of MIL-100(Fe) increased to 1.92 and 1.79 times that under dry conditions.
机译:空调系统引入室外新鲜主要空气稀释室内二氧化碳和满足高对室内环境质量的需求。在某些情况下,引入室外新鲜空气不能做,因为高污染的室外空气或因为没有新鲜的空气。这些情况下,限制二氧化碳浓度只有通过吸附设备完成。研究、创新有机框架(mof)被用作吸附剂处理二氧化碳独立的空调系统。不同的财政部,MIL - 101 (Cr)、MIL - 101 (Fe),mil - 100 (Fe),使用一个动态比较吸附实验装置。二氧化碳的吸附模式3和相应的吸附材料性能指标参数。根据实验发现,当温度从298 K到313 K吸附二氧化碳的突破时间三种吸附剂材料从590年代,减少470年代,305年代和295年代,270年代和160年代,分别。和60%,二氧化碳的去除能力mil - 100 (Fe)增加到1.92和1.79倍在干燥的条件下。

著录项

  • 来源
    《Chemistry Select》 |2023年第20期|1-10|共10页
  • 作者

    Famei Yang; Jinyu Ma; Liu Chen;

  • 作者单位

    Energy School Xi’an University of Science and Technology Yanta Road 58, Xi’an 710054, Shaanxi, China;

    Safety and Environment Section Xinjiang Tianchi Energy Co., Ltd. Beijing South Road, Chang Ji Hui Zu Zi Zhi Zhou, Changji 831100, Changji, China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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