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The dynamic CO2 adsorption of polyethylene polyamine-loaded MCM-41 before and after methoxypolyethylene glycol codispersion

机译:甲氧基聚乙二醇共分散前后聚乙烯多胺负载的MCM-41的动态CO2吸附

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To reduce the cost of CO _(2) capture, polyethylene polyamine (PEPA), with a high amino density and relatively low price, was loaded into MCM-41 to prepare solid sorbents for CO _(2) capture from flue gases. In addition, methoxypolyethylene glycol (MPEG) was codispersed and coimpregnated with PEPA to prepare composite sorbents. The pore structures, surface functional groups, adsorption and regeneration properties for the sorbents were measured and characterized. When CO _(2) concentration is 15%, for 30, 40 and 50 wt% PEPA-loaded MCM-41, the equilibrium adsorption capacities were respectively determined to be 1.15, 1.47 and 1.66 mmol g ~(?1) at 60 °C; for 30 wt% PEPA and 20 wt% MPEG, 40 wt% PEPA and 10 wt% MPEG, and 50 wt% PEPA and 5 wt% MPEG codispersed MCM-41, the equilibrium adsorption capacities were respectively determined to be 1.97, 2.22 and 2.25 mmol g ~(?1) at 60 °C; the breakthrough and equilibrium adsorption capacities for 50 wt% PEPA and 5 wt% MPEG codispersed MCM-41 respectively reached 2.01 and 2.39 mmol g ~(?1) at 50 °C, all values showed a significant increase compared to PEPA-modified MCM-41. After 10 regenerations, the equilibrium adsorption capacity for codispersed MCM-41 was reduced by 5.0%, with the regeneration performance being better than that of PEPA-loaded MCM-41, which was reduced by 7.8%. The CO _(2) -TPD results indicated that the mutual interactions between PEPA and MPEG might change basic sites in MCM-41, thereby facilitating active site exposure and CO _(2) adsorption.
机译:为了降低捕获CO_(2)的成本,将具有高氨基密度和相对较低价格的聚乙烯多胺(PEPA)装入MCM-41中,以制备用于从烟道气中捕获CO_(2)的固体吸附剂。此外,将甲氧基聚乙二醇(MPEG)与PEPA共分散并共浸渍,以制备复合吸附剂。测量并表征了吸附剂的孔结构,表面官能团,吸附和再生性能。当CO _(2)浓度为15%时,对于30、40和50 wt%的PEPA负载MCM-41,在60°C下平衡吸附容量分别确定为1.15、1.47和1.66 mmol g〜(?1)。 C;对于30 wt%PEPA和20 wt%MPEG,40 wt%PEPA和10 wt%MPEG和50 wt%PEPA和5 wt%MPEG共分散MCM-41,平衡吸附容量分别确定为1.97、2.22和2.25在60°C下,mmol g〜(?1); 50 wt%PEPA和5 wt%MPEG共分散的MCM-41的突破和平衡吸附容量在50°C时分别达到2.01和2.39 mmol g〜(?1),与PEPA改性MCM-相比,所有值均显着增加41。经过10次再生后,共分散MCM-41的平衡吸附容量降低了5.0%,再生性能好于加载PEPA的MCM-41的平衡吸附性能降低了7.8%。 CO _(2)-TPD结果表明,PEPA和MPEG之间的相互作用可能会改变MCM-41中的基本位点,从而促进活性位点的暴露和CO _(2)的吸附。

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