稀土学报(英文版)
稀土學報(英文版)
희토학보(영문판)
JOURNAL OF RARE EARTHS
2014年
9期
842-848
,共7页
郑燕娥%祝星%王华%李孔斋%王禹皓%魏永刚
鄭燕娥%祝星%王華%李孔齋%王禹皓%魏永剛
정연아%축성%왕화%리공재%왕우호%위영강
rare earths%chemical-looping steam methane reforming%macroporous CeO2-ZrO2oxygen carrier%hydrogen%syngas
Chemical-looping steam methane reforming (CL-SMR) is a novel process towards the production of pure hydrogen and syngas, consisting of a syngas production reaction and a hydrogen production reaction. MacroporousCeO2-ZrO2 oxygen carriers with different pore sizes prepared by colloidal crystal templating method and characterized by techniques of scanning electron microscopy (SEM), transmission electron microscopy (TEM), Brunauer-Emmett-Teller (BET), X-ray diffraction (XRD) and temperature pro-grammed reduction (H2-TPR) were tested in CL-SMR process. For comparison, nonporous CeO2-ZrO2 oxygen carrier prepared by precipitation method was also investigated. It was found that macroporous CeO2-ZrO2 oxygen carriers owned higher reducibility and reactivity in CL-SMR process than nonporous samples. For the macroporous CeO2-ZrO2sample, the decline of pore size could im-prove the reducibility and reactivity. The macroporous sample with a pore size of 100 nm (labeled as Ce-Zr-100) showed the highest performance for the co-production of syngas and hydrogen during the successive CL-SMR redox cycles. After 10 redox cycles, it still retained good porous structure and reducibility. It was found that the porous structure could accelerate the oxygen release from bulk to surface, leading to a good mobility of oxygen and higher reducibility. In addition, it was also favorable for diffusion and penetration of methane and water steam into the sample particles to accelerate the reaction rate.