首页> 外文会议>AIChE Annual Meeting >CO2/N2 Separation Using Cu-BTC, Uio-66 and MIL-53(Al) Metal Organic Frameworks
【24h】

CO2/N2 Separation Using Cu-BTC, Uio-66 and MIL-53(Al) Metal Organic Frameworks

机译:Co2 / N2使用Cu-BTC,UIO-66和MIL-53(AL)金属有机框架分离

获取原文

摘要

In recent years Metal Organic Frameworks (MOFs) have gained much attention for adsorptive separations due to their exceptional capacities, tunable pore Structures and ease of regenarability. MOF materials are being extensively studied in terms of equilibrium measurements, but for the practical application point of view, they have to be tested for their cyclic and thermal stabilities under process conditions. In this presentation, the results of breakthrough and cyclic adsorption experiments for CO2 / N2 separation on different MOFs viz. Cu-BTC, Uio-66 and a flexible metal organic framework MIL-53(Al) will be reported. MOF powders are made into beads using PVA/H2O as binder. Different ratios of MOF to binder were prepared and the binder content was optimized based on its strength and surface area. The adsorbent column was filled with MOF beads and this column was used for breakthrough as well as the cyclic PSA adsorption experiments. A mixture of 15% CO2 in N2 was used as the feed. During the experiments, the column pressure history, feed inlet flow rate, and column outlet flow rate are recorded using data acquisition system. The column outlet stream composition was analyzed using a Gas Chromatograph. The performance of a three step PSA cycle consisting of pressurization, feed and blowdown as well as cycles incorporating N2 purge and CO2 rinse steps will be reported. In a typical experiment about 10-12 grams of the adsorbent was used and the feed flow rate was about 200 cc/min. The adsorption step was carried out at about 1.3 bar, while desorption was done at 0.1 bar.
机译:近年来,由于其出色的能力,可调谐孔隙结构和可容易的可再生性,金属有机框架(MOFS)对吸附分离有很大的关注。在均衡测量方面正在广泛研究MOF材料,但对于实际应用的观点来说,必须在过程条件下进行它们的循环和热稳定性。在该介绍中,在不同MOFS viz上的CO2 / N2分离的突破和循环吸附实验的结果。将报告Cu-BTC,UIO-66和柔性金属有机框架MIL-53(AL)。使用PVA / H 2 O作为粘合剂将MOF粉末制成珠子。制备将MOF与粘合剂的不同比例,并基于其强度和表面积优化粘合剂含量。吸附柱填充有MOF珠粒,该塔用于突破以及环状PSA吸附实验。使用N 2中15%CO 2的混合物作为进料。在实验期间,使用数据采集系统记录柱压历史,进料入口流速和列出口流速。使用气相色谱仪分析柱出口流组合物。将报告三步PSA循环的性能,包括加压,进料和排污以及含有N2吹扫和CO 2漂洗步骤的循环。在典型的实验中,使用约10-12克吸附剂,进料流速约为200cc / min。吸附步骤在约1.3巴下进行,同时解吸在0.1巴下进行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号