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Impact of supercritical adsorption mechanism on research of hydrogen carrier
作者姓名:SUN  Yan  ZHOU  Li  SU  Wei  ZHOU  YaPing
作者单位:Adsorption Laboratory of the Key State Laboratory of Chemical Engineering, Tianjin University, Tianjin 300072, China
基金项目:Supported by the National Natural Science Foundation of China (Grant Nos.90510013, 20336020, 50376047 and 29936100)
摘    要:Hydrogen storage receives the worldwide attention due to its importance in sustainable energy and the solution of greenhouse effect.Adsorption provides an efficient way to compress gases and,therefore, has been applied to the development of hydrogen storage technology.However,hydrogen is a super- critical gas at the temperature of engineering interest and follows a different adsorption mechanism compared to the sub-critical gases.The present work shows why only monolayer coverage mechanism functions at above-critical temperatures and what consequences will result in the application study. Although there are pros and cons to this point of view,understanding the adsorption mechanism is,in- deed,essential for the research of hydrogen storage method since it claims that any storage material based on adsorption will not satisfy the practical need of on board storage no matter how novel the material is.

关 键 词:超临界吸附  机制  氢能载体  储氢材料
收稿时间:2006-06-21
修稿时间:2006-06-212007-01-12

Impact of supercritical adsorption mechanism on research of hydrogen carrier
SUN Yan ZHOU Li SU Wei ZHOU YaPing.Impact of supercritical adsorption mechanism on research of hydrogen carrier[J].Chinese Science Bulletin,2007,52(8):1146-1152.
Authors:Yan Sun  Li Zhou  Wei Su  YaPing Zhou
Institution:(1) Adsorption Laboratory of the Key State Laboratory of Chemical Engineering, Tianjin University, Tianjin, 300072, China
Abstract:Hydrogen storage receives the worldwide attention due to its importance in sustainable energy and the solution of greenhouse effect.Adsorption provides an efficient way to compress gases and,therefore, has been applied to the development of hydrogen storage technology.However,hydrogen is a super- critical gas at the temperature of engineering interest and follows a different adsorption mechanism compared to the sub-critical gases.The present work shows why only monolayer coverage mechanism functions at above-critical temperatures and what consequences will result in the application study. Although there are pros and cons to this point of view,understanding the adsorption mechanism is,in- deed,essential for the research of hydrogen storage method since it claims that any storage material based on adsorption will not satisfy the practical need of on board storage no matter how novel the material is.
Keywords:supercritical adsorption  mechanism  impact  hydrogen storage
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