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FT-IR study on CO2 adsorbed species of CO2 sorbents

机译:FT-IR研究CO2吸附剂的CO2吸附种类

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The stability of amine-functionalized silica sorbents prepared through the incipient wetness technique with primary, secondary, and tertiary amino organosilanes was investigated. The prepared sorbents were exposed to different gaseous streams including CO2/N-2, dry CO2/air with varying concentration, and humid CO2/air mixtures to demonstrate the effect of the gas conditions on the CO2 adsorption capacity and the stability of the different amine structures. The primary and secondary amine-functionalized adsorbents exhibited CO2 sorption capacity, while tertiary amine adsorbent hardly adsorbed any CO2. The secondary amine adsorbent showed better stability than the primary amine sorbent in all the gas conditions, especially dry conditions. Deactivation species were evaluated using FT-IR spectra, and the presence of urea was confirmed to be the main deactivation product of the primary amine adsorbent under dry condition. Furthermore, it was found that the CO2 concentration can affect the CO2 sorption capacity as well as the extent of degradation of sorbents.
机译:研究了通过初湿技术与伯,仲和叔氨基有机硅烷制备的胺官能化二氧化硅吸附剂的稳定性。将制得的吸附剂暴露于不同的气流中,包括CO2 / N-2,浓度不同的干燥CO2 /空气和潮湿的CO2 /空气混合物,以证明气体条件对CO2吸附能力和不同胺的稳定性的影响结构。伯胺和仲胺官能化的吸附剂表现出CO2吸附能力,而叔胺吸附剂几乎不吸附任何CO2。在所有气体条件下,特别是在干燥条件下,仲胺吸附剂的稳定性均优于伯胺吸附剂。使用FT-IR光谱评估失活种类,并且证实尿素的存在是伯胺吸附剂在干燥条件下的主要失活产物。此外,已发现CO 2浓度可影响CO 2吸附能力以及吸附剂的降解程度。

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