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Effects of pore size distribution of activated carbon (AC) on CuCl dispersion and CO adsorption for CuCl/AC adsorbent

机译:活性炭(AC)对CuCl / Ac吸附剂CuCl分散体和Cucl分散和Co吸附的影响

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Cu(I) adsorbents have high adsorption capacity and high selectivity for CO, thanks to the strong pi-complexation bonds formed between CO and Cu(I) ions. It is important that the porous support for making Cu(I) adsorbents should have high surface area, however, the effect of pore size has never been reported. In the current study, Cu (I) adsorbents were prepared by impregnating activated carbons (ACs) with Cu(II) chloride and Cu(II) carboxylate, followed by heat treatment at mild condition in vacuum to get highly dispersed CuCl/AC adsorbents. Four ACs with different pore size distribution were studied as the supports for making CuCl/AC adsorbents. The pore size distribution characterized by Ar adsorption at 87 K was defined as ultramicropore (< 0.7 nm), supermicropore (0.7-2 nm), small mesopore (2-2.5 nm) and large mesopore (2.5-50 nm). It was found that ultramicropores loaded with CuCl (d = 0.462 nm) did not leave enough space for the accommodation of CO molecules (d = 0.376 nm), resulting in low CO adsorption; large mesopores had large enough pore size for CuCl loading but low surface area for the dispersion of CuCl, leading to low CO adsorption as well. By contrast, supermicropores and small mesopores gave high surface area and suitable pore size for well dispersion of CuCl and enough space for CO adsorption, which makes ACs with mainly supermicropores and small mesopores perfect supports for making robust CO adsorbents.
机译:由于在CO和Cu(I)离子之间形成的强PI-络合键,Cu(I)吸附剂具有高吸附能力和高选择性。重要的是,制备Cu(I)吸附剂的多孔载体应具有高表面积,然而,从未报道过孔径的效果。在目前的研究中,Cu(I)通过用Cu(II)氯化物和Cu(II)羧酸盐浸渍活性的碳(AC)来制备Cu(I)吸附剂,然后在真空中以温和条件进行热处理以获得高度分散的Cucl / Ac吸附剂。研究了具有不同孔径分布的四种AC作为制备CuCl / Ac吸附剂的支撑件。在87 k下的Ar吸附特征的孔径分布定义为超微孔(<0.7nm),超微孔(0.7-2nm),小型oesopore(2-2.5nm)和大型中孔(2.5-50nm)。发现,用CuCl(d = 0.462nm)负载的超微孔没有留出足够的空间用于CO分子(D = 0.376nm),导致CO吸附低;大型中孔具有足够大的孔径,用于CuCl负荷,但是CuCl分散的低表面积,导致低于CO吸附。相比之下,超级缺乏和小型中孔具有高表面积和合适的孔径,用于良好的CuCl和足够空间用于共同吸附的空间,这使得主要具有超级孔和小型中小型的ACS,适合制造强大的CO吸附剂。

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