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用于从天然气中去除硫醇的混合聚合物/UiO-66(Zr)和聚合物/NaY纤维吸附剂。

Hybrid Polymer/UiO-66(Zr) and Polymer/NaY Fiber Sorbents for Mercaptan Removal from Natural Gas.

作者信息

Chen Grace, Koros William J, Jones Christopher W

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology , 311 Ferst Drive, Atlanta, Georgia 30332-0100, United States.

出版信息

ACS Appl Mater Interfaces. 2016 Apr 20;8(15):9700-9. doi: 10.1021/acsami.6b00897. Epub 2016 Apr 5.

Abstract

Zeolite NaY and metal organic frameworks MIL-53(Al) and UiO-66(Zr) are spun with cellulose acetate (CA) polymer to create hybrid porous composite fibers for the selective adsorption of sulfur odorant compounds from pipeline natural gas. Odorant removal is desirable to limit corrosion associated with sulfur oxide production, thereby increasing lifetime in gas turbines used for electricity generation. In line with these goals, the performance of the hybrid fibers is evaluated on the basis of sulfur sorption capacity and selectivity, as well as fiber stability and regenerability, compared to their polymer-free sorbent counterparts. The capacities of the powder sorbents are also measured using various desorption temperatures to evaluate the potential for lower temperature, energy, and cost-efficient system operation. Both NaY/CA and UiO-66(Zr)/CA hybrid fibers are prepared with high sorbent loadings, and both have high capacities and selectivities for t-butyl mercaptan (TBM) odorant sorption from a model natural gas (NG), while being stable to multiple regeneration cycles. The different advantages and disadvantages of both types of fibers relative are discussed, with both offering the potential advantages of low pressure drop, rapid heat and mass transfer, and low energy requirements over traditional sulfur removal technologies such as hydrodesulfurization (HDS) or adsorption in a pellet packed beds.

摘要

将沸石NaY、金属有机框架材料MIL-53(Al)和UiO-66(Zr)与醋酸纤维素(CA)聚合物纺丝,以制备混合多孔复合纤维,用于选择性吸附管道天然气中的含硫气味化合物。去除气味有助于限制与硫氧化物产生相关的腐蚀,从而延长用于发电的燃气轮机的使用寿命。为了实现这些目标,与不含聚合物的吸附剂相比,根据硫吸附容量和选择性以及纤维稳定性和可再生性来评估混合纤维的性能。还使用各种解吸温度测量粉末吸附剂的容量,以评估低温、节能和低成本系统运行的潜力。NaY/CA和UiO-66(Zr)/CA混合纤维均以高吸附剂负载量制备,并且对模型天然气(NG)中的叔丁基硫醇(TBM)气味吸附具有高容量和选择性,同时对多个再生循环稳定。讨论了两种纤维各自不同的优缺点,与传统的脱硫技术如加氢脱硫(HDS)或颗粒填充床吸附相比,两者都具有低压降、快速传热传质和低能量需求的潜在优势。

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