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Carbon dioxide reforming of methane over bimetallic catalysts of Pt-Ru/γ-Al_2O_3 for thermochemical energy storage 被引量:2
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作者 杜娟 杨晓西 +4 位作者 丁静 魏小兰 杨建平 王维龙 杨敏林 《Journal of Central South University》 SCIE EI CAS 2013年第5期1307-1313,共7页
The reaction of CO2 reforming of CH4 has been investigated with y-A1203-supported platinum and ruthenium bimetallic catalysts, with the specific purpose of thermochemical energy storage. The catalysts were prepared by... The reaction of CO2 reforming of CH4 has been investigated with y-A1203-supported platinum and ruthenium bimetallic catalysts, with the specific purpose of thermochemical energy storage. The catalysts were prepared by using the wetness impregnation method. The prepared catalysts were characterized by a series of physico-chemical characterization techniques such as BET surface area, thermo-gravimetric (TG), transmission electron microscope (TEM) and X-ray photoelectron spectroscopy (XPS). In addition, the amount of carbon deposits on the surface of the catalysts and the type of the carbonaceous species were discussed by TG. It was found that the bimetallic Pt-Ru/7-A1203 catalysts exhibit both superior catalytic activity and remarkable stability by comparison of monometallic catalysts. During the 500 h stability test, the bimetallic catalyst showed a good performance at 800 ~C in CO2 reforming of CH4, exhibiting an excellent anti-carbon performance with the mass loss of less than 8.5%. The results also indicate that CO2 and CH4 have quite stable conversions of 96.0 % and 94.0 %, respectively. Also, the selectivity of the catalysts is excellent with the products ratio of CO/H2 maintaining at 1.02. Furthermore, it was found in TEM images that the active carbonaceous species were formed during the catalytic reaction, and well-distributed dot-shaped metallic particles with a relatively uniform size of about 3 nm as well as amorphous carbon structures were observed. Combined with BET, TG, TEM tests, it is concluded that the selected bimetallic catalysts can work continuously in a stable state at the high temperature, which has a potential to be utilized for the closed-loop cycle of the solar thermochemical energy storage in future industry applications. 展开更多
关键词 carbon dioxide reforming of methane Pt-Ru/7-a1203 catalysts long-term stability thermochemical energy storage
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KOH/γ–Al_2O_3催化合成聚(碳酸三甘醇)酯二醇 被引量:2
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作者 殷宁 亢茂青 +5 位作者 刘振民 李其峰 冯月兰 赵雨花 王军威 王心葵 《化学推进剂与高分子材料》 CAS 2014年第2期71-75,86,共6页
以碳酸二乙酯(DEC)和三甘醇(TEG)为原料,KOH/γ-Al2O3为催化剂,通过酯交换缩聚反应合成了成本低、性能优越的聚(碳酸三甘醇)酯二醇(PTEGCDL)。考察了反应条件对该过程的影响,得到了最优合成工艺条件。当催化剂的质量为TEG... 以碳酸二乙酯(DEC)和三甘醇(TEG)为原料,KOH/γ-Al2O3为催化剂,通过酯交换缩聚反应合成了成本低、性能优越的聚(碳酸三甘醇)酯二醇(PTEGCDL)。考察了反应条件对该过程的影响,得到了最优合成工艺条件。当催化剂的质量为TEG质量的0.5%时,先常压、150~160℃下反应3h,然后减压180℃下反应5h,可得目的产物PTEGCDL。对合成产物的结构进行了表征,并推测了可能的反应机理。 展开更多
关键词 koh Γ-aL2O3 催化剂 碳酸二乙酯 三甘醇 酯交换 聚碳酸酯二元醇
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