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Thermodynamics and regeneration of CO2 adsorption on mesoporous spherical-silica particles

机译:介孔球形二氧化硅颗粒吸附CO2的热力学和再生

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Mesoporous spherical-silica particles (MSPs) were modified by N-[3-(trimethoxysilyl) propyl]ethylenedia-mine (EDA) solution and were employed as sorbents to study thermodynamics and regeneration of CO2 adsorption from gas streams. The thermodynamic analysis gave low isosteric heats of adsorption, which are typical for physical adsorption. The cyclic CO2 adsorption on MSP(EDA) showed that the adsorbed CO2 could be effectively desorbed via thermal treatment at 120 °C for 25 min while the adsorbed CO2 due to physical interaction could be effectively desorbed via vacuum suction at 0.145 bar for 30 min. If a combination of thermal treatment and vacuum suction was conducted at 120 °C and 0.145 bar, the time for effectively desorbing CO2 could be shortened to 7.5 min and thus reduces a significant amount of energy penalty. The adsorption capacities and the physicochemical properties of MSP(EDA) were preserved after 15 cycles of adsorption and regeneration. These results suggest that the MSP(EDA) can be stably employed in the prolonged cyclic adsorption and that they are thus possibly cost-effective sorbents for CO2 capture from flue gases.
机译:用N- [3-(三甲氧基甲硅烷基)丙基]乙二胺(EDA)溶液改性介孔球形二氧化硅颗粒(MSP),并用作吸附剂,研究热力学和从气流中吸收CO2的再生。热力学分析给出了低等规吸附热,这是物理吸附的典型特征。 MSP(EDA)对CO2的循环吸附表明,经120°C热处理25 min可以有效地脱附吸附的CO2,而通过0.145 bar的真空抽吸30 min可以有效吸附因物理相互作用而吸附的CO2。如果在120​​°C和0.145 bar下进行热处理和真空抽吸相结合,则可以有效地将CO2解吸的时间缩短至7.5分钟,从而显着减少了能量消耗。经过15个吸附和再生循环,MSP(EDA)的吸附能力和理化性质得以保留。这些结果表明,MSP(EDA)可以稳定地用于延长的循环吸附中,因此它们可能是从烟气中捕集CO2的经济有效的吸附剂。

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