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Enhanced adsorption of dibenzothiophene with zinc/copper-based metal-organic frameworks

机译:锌/铜基金属-有机骨架增强对二苯并噻吩的吸附

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摘要

A novel type of bimetallic-organic porous material (Zn/Cu-BTC) has been successfully synthesized with Zn2+ replacing Cu2+ in the paddle wheel unit. The as-synthesized sorbents were characterized by XRD, SEM, ICP, and TGA analyses and N-2 adsorption at 77 K. The desulfurization performance of the prepared adsorbents was evaluated by the selective adsorption of dibenzothiophene (DBT) from simulated oils in a fixed-bed breakthrough column at room temperature (298 K). From the obtained breakthrough curves, both the breakthrough capacity and the saturation capacity of the adsorbents for the sulfur element were determined. The results showed that Zn/Cu-BTC exhibited high desulfurization capacities, which are even superior to those reported previously in the literature. In addition, these novel adsorbents possessed good durability and affinities for the adsorption of dibenzothiophene in the presence of aromatic components and moisture. The saturated adsorbent Zn/Cu-BTC can be regenerated with a nitrogen atmosphere sweeping at 573 K for 5 h. More than 90% of the desulfurization capacity was recovered after regeneration.
机译:已经成功地合成了一种新型的双金属有机多孔材料(Zn / Cu-BTC),其中在桨轮单元中用Zn2 +代替了Cu2 +。通过XRD,SEM,ICP和TGA分析以及在77 K下的N-2吸附对合成后的吸附剂进行表征。通过在固定油中选择性吸附二苯并噻吩(DBT)来评估制得的吸附剂的脱硫性能。室温(298 K)的柱床穿透柱。根据获得的穿透曲线,确定了硫元素吸附剂的穿透能力和饱和能力。结果表明,Zn / Cu-BTC具有很高的脱硫能力,甚至优于以前文献中报道的能力。此外,这些新型吸附剂在芳香族成分和水分存在下,对二苯并噻吩的吸附具有良好的耐久性和亲和性。饱和吸附剂Zn / Cu-BTC可以在573 K的氮气气氛下再生5小时。再生后,回收了超过90%的脱硫能力。

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