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Effect of the porous structure in carbon materials for CO2 capture at atmospheric and high-pressure

机译:碳材料中多孔结构对常压和高压下CO2捕集的影响

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摘要

Activated carbons prepared from petroleum pitch and using KOH as activating agent exhibit an excellent behavior in CO2 capture both at atmospheric (∼168 mg CO2/g at 298 K) and high pressure (∼1500 mg CO2/g at 298 K and 4.5 MPa). However, an exhaustive evaluation of the adsorption process shows that the optimum carbon structure, in terms of adsorption capacity, depends on the final application. Whereas narrow micropores (pores below 0.6 nm) govern the sorption behavior at 0.1 MPa, large micropores/small mesopores (pores below 2.0–3.0 nm) govern the sorption behavior at high pressure (4.5 MPa). Consequently, an optimum sorbent exhibiting a high working capacity for high pressure applications, e.g., pressure-swing adsorption units, will require a poorly-developed narrow microporous structure together with a highly-developed wide microporous and small mesoporous network. The appropriate design of the preparation conditions gives rise to carbon materials with an extremely high delivery capacity ∼1388 mg CO2/g between 4.5 MPa and 0.1 MPa. Consequently, this study provides guidelines for the design of carbon materials with an improved ability to remove carbon dioxide from the environment at atmospheric and high pressure.
机译:由石油沥青制备并使用KOH作为活化剂的活性炭在大气压(298 K时约为168 mg CO2 / g)和高压下(298 K和4.5 MPa时约为1500 mg CO2 / g)表现出优异的CO2捕获性能。 。但是,对吸附过程的详尽评估表明,就吸附能力而言,最佳碳结构取决于最终应用。窄的微孔(低于0.6 nm的孔)决定了在0.1 MPa时的吸附行为,而大的微孔/小中孔(低于2.0–3.0 nm的孔)决定了在高压(4.5 MPa)下的吸附行为。因此,对于高压应用(例如变压吸附单元)而言,展现出高工作能力的最佳吸附剂将需要开发较差的窄微孔结构以及高度开发的宽微孔和小介孔网络。适当的制备条件设计可以生产出在4.5 MPa至0.1 MPa之间具有极高输送能力〜1388 mg CO2 / g的碳材料。因此,这项研究为碳材料的设计提供了指导原则,该碳材料具有在大气压和高压条件下从环境中去除二氧化碳的改进能力。

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