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High-pressure CO2/CH4 separation of Zr-MOFs based mixed matrix membranes

机译:基于ZR-MOF的混合基质膜的高压CO2 / CH4分离

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The gas separation properties of 6FDA-DAM mixed matrix membranes (MMMs) with three types of zirconium-based metal organic framework nanoparticles (MOF NPs, ca. 40 nm) have been investigated up to 20 bar. Both NPs preparation and MMMs development were presented in an earlier publication that reported outstanding CO2/CH4 separation performances (50:50 vol% CO2/CH4 feed at 2 bar pressure difference, 35 degrees C) and this subsequent study is to demonstrate its usefulness to the natural gas separation application. In the current work, CO2/CH4 separation has been investigated at high pressure (2-20 bar feed pressure) with different CO2 content in the feed (10-50 vol%) in the temperature range 35-55 degrees C. Moreover, the plasticization, competitive sorption effects, and separation of the acid gas hydrogen sulfide (H2S) have been investigated in a ternary feed mixture of CO2:H2S:CH4 (vol% ratio of 30:5:65) at 20 bar and 35 degrees C. The incorporation of the Zr-MOFs in 6FDA-DAM enhances both CO2 permeability and CO2/CH4 selectivity of this polymer. These MMMs exhibit high stability under separation conditions relevant to an actual natural gas sweetening process. The presence of H2S does not induce plasticization but increases the total acid gas permeability, acid gas/CH4 selectivity and only causes reversible competitive sorption. The overall study suggests a large potential for 6FDA-DAM Zr-MOF MMMs to be applied in natural gas sweetening, with good performance and stability under the relevant process conditions.
机译:采用三种锆基金属有机骨架纳米粒子(MOF NPS,CA.40nm)的6FDA型混合基质膜(MMMS)的气体分离性能得到了高达20巴。在早期的出版物中提出了NPS制备和MMMS开发,所述出版物报告出卓越的CO2 / CH4分离性能(在2巴压力差,35℃)和35摄氏度的50:50 Vol%CO 2 / CH 4饲料中,并且这种后续研究是证明其有用性天然气分离应用。在当前的工作中,在高压(2-20巴进料压力)中研究了CO 2 / CH 4分离,在35-55摄氏度的温度范围内具有不同的CO 2含量(10-50体积%)。此外,在20巴的三元饲料混合物中,研究了在20巴的三元饲料混合物中研究了酸气体硫化物(H2S)的塑化,竞争吸附效应和分离酸性气体硫化氢(H2S)的分离,35℃。在6FDA局​​部掺入ZR-MOF,增强了该聚合物的CO 2渗透性和CO 2 / CH 4选择性。这些MMM在与实际天然气甜味过程相关的分离条件下表现出高稳定性。 H2S的存在不会诱导增塑,但增加了总酸性渗透性,酸气/ CH4选择性,只会导致可逆的竞争吸附。整体研究表明,6FDA-DAM ZR-MOF MMMS在天然气蜂蜜中应用的大潜力,在相关工艺条件下具有良好的性能和稳定性。

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