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Capture Of Co_2 From Flue Gas Via Multiwalled Carbon Nanotubes

机译:通过多壁碳纳米管从烟气中捕获Co_2

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摘要

Carbon nanotubes (CNTs) were modified by 3-aminopropyl-triethoxysilane (APTS) solution and were tested for its CO_2 adsorption potential at multiple temperatures (20-100 ℃). The physicochemical properties of CNTs were changed after the modification, which makes CNTs adsorb more CO_2 gases. The adsorption capacities of CO_2 via CNTs and CNTs(APTS) decreased with temperature indicating the exothermic nature of adsorption process and increased with water content in air at 0-7%. The mechanism of CO_2 adsorption on CNTs and CNTs(APTS) appears mainly attributable to physical force regardless of temperature change, which makes regeneration of spent CNTs at a relatively low temperature become feasible. The CNTs(APTS) have good adsorption performance of CO_2 at 20 ℃ as compared to many types of modified carbon or silica adsorbents documented in the literature. This suggests that the CNTs(APTS) are promising low-temperature adsorbents for CO_2 capture from flue gas.
机译:用3-氨丙基三乙氧基硅烷(APTS)溶液对碳纳米管(CNTs)进行了改性,并在多个温度(20-100℃)下测试了其对CO_2的吸附能力。改性后碳纳米管的理化性质发生改变,使碳纳米管吸附更多的CO_2气体。碳纳米管和碳纳米管(APTS)对CO_2的吸附能力随温度降低而降低,表明吸附过程放热,随空气中水的含量在0-7%增加。无论温度如何变化,CO_2吸附在CNTs和CNTs(APTS)上的机理主要归因于物理力,这使得废碳纳米管在较低温度下的再生变得可行。与文献中记载的多种类型的改性碳或二氧化硅吸附剂相比,CNTs(APTS)在20℃时具有良好的CO_2吸附性能。这表明CNTs(APTS)是从烟气中捕获CO_2的有前途的低温吸附剂。

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