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Double-solvent-assisted synthesis of bimetallic CuFe-incorporated MIL-101 (Cr) for improved CO-adsorption performance and oxygen-resistant stability

机译:双溶剂辅助合成双金属CuFe掺入的MIL-101(CR),用于改进的共吸收性能和耐氧稳定性

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In this study, a bimetallic CuFe-incorporated MIL-101(Cr) adsorbent was developed with enhanced CO-adsorption capacity and oxygen resistance. Different compositions of bimetallic Cu(II)-Fe(II) were incorporated into the MIL-101(Cr) framework with ultrahigh porosity by the double-solvent (DS) method, followed by facile reduction at a low temperature of 250 degrees C. By employing formate (HCOO-), Cu(II) was selectively reduced to Cu(I) at 250 degrees C. Moreover, the presence of the reducing agent, Fe(II), enhanced the reduction of Cu(II) in the adsorbent. The obtained results indicated that the synergistic effect of utilizing Fe(II) and employing the DS method significantly enhanced the dispersion of the formed Cu(I) in the support. The DS-assisted CuFe (4 mmol g(-1) of Cud and 1.0 mmol g(-1) FeCl2)-incorporated MIL-100(Fe) adsorbent exhibited a high CO-adsorption capacity of ca. 3.24 mmol g(-1) and CO/N-2 selectivity of 428 at 25 degrees C and 100 kPa, which were superior to those of the counterpart that was prepared by the wetness impregnation method. Additionally, the CO-adsorption capacity of the prepared CuFe-incorporated MIL-100(Fe) was still 90-65% after it was exposed to atmospheric humidity for 15-30 days, thereby demonstrating its superior oxygen-resistant stability compared to those of the benchmark pi-complexation adsorbents containing Cu(I).
机译:在该研究中,具有增强的共吸附能力和耐氧气,开发了一种双金属CuFe掺入的MIL-101(Cr)吸附剂。双金属Cu(II)的不同组合物 - 用双溶剂(DS)方法掺入MIL-101(CR)框架中,通过双溶剂(DS)方法,然后在低温为250℃的温度下进行舒适。通过使用甲酸酯(HCOO-),在250℃下选择性地减少Cu(II)至Cu(I)。此外,还原剂的存在,Fe(II),增强了吸附剂中的Cu(II)的还原。所得结果表明,利用Fe(II)和使用DS方法的协同效应显着增强了所形成的Cu(I)在载体中的分散。 DS辅助CUFE(4mmol G(-1)的CUD和1.0mmol G(-1)FECL2)-incorlated MIL-100(Fe)吸附剂表现出Ca的高共吸收能力。 3.24mmol g(-1)和Co / N-2在25℃和100kPa下选择性428,其优于由湿润浸渍方法制备的对应物的含量。另外,在将大气湿度暴露于大气湿度下15-30天之后,制备的CuFe掺入的MIL-100(Fe)的共吸收能力仍然是90-65%,从而与那些相比证明了其优异的耐受耐氧稳定性含Cu(i)的基准PI-络合吸附剂。

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