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Adsorption and Desorption Performance of Dichloromethane over Activated Carbons Modified by Metal Ions

机译:金属离子改性活性炭对二氯甲烷的吸附和解吸性能

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Activated carbons (ACs) were modified separately by impregnation with different types of metal ions, Al~(3+), Mg~(2+), Li~+, Fe~(3+), and Ag~+ in this work. Adsorption breakthrough experiments of dichloromethane (DCM) were carried out for measuring working adsorption capacities (Q_m) of modified ACs toward DCM, and temperature programmed desorption (TPD) experiments were conducted for estimating desorption activation energy (E_d) of DCM on these ACs. The effects of metal ions on the adsorption/ desorption of DCM on the modified ACs were discussed with the help of hard and soft acid and base (HSAB) theory. Results showed that Q_m of DCM on these ACs followed the order; Q_(Al(III)/ac) Q_(Li(I)/AC) > Q_(Mg(II)/AC) > Q_(Fe(III)/AC )> Q_(AC) > Q_(Ag(I)/AC) and the E_a of DCM followed the same order. As compared to that of the original AC, the surface local acid hardness of the modified ACs was enhanced with the doping of hard acid metal ions such as Al~(3+), Li~+, Mg~(2+) and Fe~(3+), and thus the interactions between DCM and AL(III)/AC, Li(I)/AC, Mg(II)/AC, and Fe(III)/AC surfaces were also enhanced due to the hard base characteristic of DCM. However, when the AC was doped with soft acid Ag~+, its surface local acid hardness was decreased. As a result, the interaction between DCM and Ag(I)/AC was weakened.
机译:在这项工作中,活性炭(ACs)通过浸渍不同类型的金属离子Al〜(3 +),Mg〜(2 +),Li〜+,Fe〜(3+)和Ag〜+分别进行了改性。进行了二氯甲烷(DCM)吸附突破实验,以测量改性AC对DCM的工作吸附容量(Q_m),并进行了程序升温脱附(TPD)实验,以估计DCM在这些AC上的解吸活化能(E_d)。借助硬,软酸和碱(HSAB)理论,讨论了金属离子对改性ACs上DCM吸附/解吸的影响。结果表明,这些AC上DCM的Q_m遵循顺序。 Q_(Al(III)/ ac)Q_(Li(I)/ AC)> Q_(Mg(II)/ AC)> Q_(Fe(III)/ AC)> Q_(AC)> Q_(Ag(I) / AC)和DCM的E_a遵循相同的顺序。与原始AC相比,改性AC的表面局部酸硬度通过掺杂Al〜(3 +),Li〜+,Mg〜(2+)和Fe〜等硬酸金属离子而增强。 (3+),由于硬碱特性,DCM与AL(III)/ AC,Li(I)/ AC,Mg(II)/ AC和Fe(III)/ AC表面之间的相互作用也得到增强DCM。然而,当AC掺杂有软酸Ag〜+时,其表面局部酸硬度降低。结果,DCM与Ag(I)/ AC之间的相互作用被削弱。

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