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Performance of an Electrothermal Swing Adsorption System with Postdesorption Liquefaction for Organic Gas Capture and Recovery

机译:具有解吸后液化的电热摆动吸附系统用于有机气体捕获和回收的性能

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摘要

The use of adsorption on activated carbon fiber cloth (ACFC) followed by electrothermal swing adsorption (ESA) and postdesorption pressure and temperature control allows organic gases with boiling points below 0 ℃ to be captured from air streams and recovered as liquids. This technology has the potential to be a more sustainable abatement technique when compared to thermal oxidation. In this paper, we determine the process performance and energy requirements of a gas recovery system (GRS) using ACFC-ESA for three adsorbates with relative pressures between 8.3 × 10~(-5) and 3.4 × 10~(-3) and boiling points as low as -26.3 ℃. The GRS is able to capture > 99% of the organic gas from the feed air stream, which is comparable to destruction efficiencies for thermal oxidizers. The energy used per liquid mole recovered ranges from 920 to 52 000 kJ/mol and is a function of relative pressure of the adsorbate in the feed gas. Quantifying the performance of the bench-scale gas recovery system in terms of its ability to remove organic gases from the adsorption stream and the energy required to liquefy the recovered organic gases is a critical step in developing new technologies to allow manufacturing to occur in a more sustainable manner. To our knowledge, this is the first time an ACFC-ESA system has been used to capture, recover, and liquefy organic compounds with vapor pressures as low as 8.3 × 10~(-5) and the first time such a system has been analyzed for process performance and energy consumption.
机译:通过在活性炭纤维布(ACFC)上进行吸附,然后进行电热摆动吸附(ESA)以及后脱附压力和温度控制,可以将沸点低于0℃的有机气体从气流中捕获并作为液体回收。与热氧化相比,该技术有可能成为更可持续的减排技术。在本文中,我们确定了使用ACFC-ESA的三种吸附物(相对压力在8.3×10〜(-5)和3.4×10〜(-3)之间且沸腾)的气体回收系统(GRS)的工艺性能和能量要求点低至-26.3℃。 GRS能够从进料气流中捕获> 99%的有机气体,这与热氧化剂的破坏效率相当。每回收的液体摩尔所使用的能量为920至52000kJ / mol,并且是进料气中被吸附物的相对压力的函数。根据从吸附流中去除有机气体的能力以及液化回收的有机气体所需的能量来量化台式规模的气体回收系统的性能,这是开发新技术以使制造能够以更大的速度进行的关键步骤。可持续的方式。据我们所知,这是第一次使用ACFC-ESA系统捕获,回收和液化蒸汽压低至8.3×10〜(-5)的有机化合物,并且这是首次对这种系统进行分析用于过程性能和能耗。

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  • 来源
    《Environmental Science & Technology》 |2013年第13期|7373-7379|共7页
  • 作者单位

    Department of Civil and Environmental Engineering, University of Illinois, Urbana, Illinois 61801, United States;

    Department of Civil and Environmental Engineering, University of Illinois, Urbana, Illinois 61801, United States;

  • 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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