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首页> 外文期刊>International journal of hydrogen energy >Catalytic investigation of ceria-zirconia solid solutions for solar hydrogen production
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Catalytic investigation of ceria-zirconia solid solutions for solar hydrogen production

机译:二氧化铈-氧化锆固溶体用于太阳能制氢的催化研究

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This study addresses the solar thermochemical production of hydrogen from water-splitting cycles using ceria-zirconia solid solutions prepared via soft chemistry methods. The effect of zirconium doping on the catalytic activity of ceria for hydrogen production was studied using thermogravimetric analysis. The influence of the zirconium content between 10% and 50% on the redox properties of the Ce_(1-δ)Zr_δO_2 material was investigated. The higher the amount of zirconium, the higher the reduction yields. The reduction yield at 1400 ℃ in inert atmosphere was 9% for 10% Zr, 16% for 25% Zr, and 28% for 50% Zr. However, increasing the Zr content did not automatically lead to the highest amount of hydrogen produced during cycling. Indeed, the powder with 25% Zr produced 334 and 298 nmol H_2/g at 1050℃ during the first and the second cycle, respectively. In contrast, the powder with 50% Zr yielded 468 and 266 nmol H_2/g during the two successive cycles. Moderate Zr contents thus favored H_2 production during repeated cycles without any significant reactivity losses. A kinetic study of the reduction and the hydrolysis steps was proposed. The activation energies for the thermal reduction and the hydrolysis of Ce_((0.75)Zr_((0.25)O2 were 221 kJ/mol and 51 kj/mol, respectively. Finally, the use of a template molecule during synthesis was considered, which improved the reduction yield markedly (up to 52%) but strong sintering phenomena limited the hydrogen production and the material cyclability.
机译:这项研究涉及使用软化学方法制备的氧化铈-氧化锆固溶体,通过水分解循环产生的太阳热化学生产氢。用热重分析法研究了锆掺杂对二氧化铈催化制氢活性的影响。研究了锆含量在10%到50%之间对Ce_(1-δ)Zr_δO_2材料的氧化还原性能的影响。锆含量越高,还原产率越高。惰性气体在1400℃下的还原产率为10%Zr为9%,25%Zr为16%,50%Zr为28%。但是,增加Zr含量并不能自动导致循环过程中产生最大量的氢。实际上,具有25%Zr的粉末在第一个和第二个循环中在1050℃分别产生334和298 nmol H_2 / g。相反,在两个连续循环中,具有50%Zr的粉末分别产生468和266 nmol H_2 / g。因此,适度的Zr含量有利于在重复循环中产生H_2,而没有任何明显的反应性损失。提出了还原和水解步骤的动力学研究。 Ce _((0.75)Zr _((0.25)O2)的热还原和水解的活化能分别为221 kJ / mol和51 kj / mol,最后考虑了模板分子在合成过程中的使用,从而改善了还原率显着(高达52%),但强烈的烧结现象限制了氢气的产生和材料的可循环性。

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