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Li_2ZrO_3材料吸收CO_2性能的进一步研究; Further study on the property of absorbing CO2 with Li2ZrO3 material
王银杰 ; 其鲁
2004
关键词Li_2ZrO_3 ZrO_2 CO_2 Li2ZrO3 absorption CO2 ZrO2 吸收
英文摘要用不同结构的ZrO_2合成了一系列在高温下吸收CO2的Li2ZrO3材料,并详细的研究了反应物质的物理和化学性质对生成物吸收CO2性能的影响。采用SEM、XRD以及TG分析法分别进行了材料结构及其吸收CO2性能的表征,并使用XPS法测定了材料表面的元素组成。实验结果表明,使用不同结构的ZrO2合成的Li2ZrO3,其吸收CO2的性能明显的不同。用ZrO2(t)(四方)合成的Li2ZrO3吸收CO2的速度快,在500℃下,20%CO2(80%空气)的气氛中保持3h,其吸收量可达25(±0.6)%(wt),而以ZrO2(m)(单斜)为原料制备的Li2ZrO3在上述吸收条件下重量仅增加9(±0.6)...; Lithium zirconate (Li2ZrO3) materials were synthesized from two different structured zirconium oxide (ZrO2), monoclinic ZrO2 (ZrO2(m)) and tetragonal ZrO2 (ZrO2(t)), and their absorption rate Of CO2 were compared. The results showed, in 20% CO2 (80% Air) atmosphere, their absorption abilities were significantly different where the ZrO2(t)-synthesized material evidently absorbed at a faster rate than the ZrO2(m)-synthesized one. The ZrO2(O-synthesized Li2ZrO3 reached absorption equilibrium after being kept for 3 h at 500 degreesC in 20% CO2 (80% Air) atmosphere, and attain to absorption capacity of 25(+/-0.6)%(wt). While at the same conditions, the absorption capacity for ZrO2(m)-synthesized Li2ZrO3 is only 9(+/-0.6)%(wt). In addition, the effects on the structure of Li2ZrO3, and the absorption capability Of CO2 from the amount of Li2CO3 in the reactants were investigated. Doping potassium (K) impacted the CO2 absorption rate of the Li2ZrO3, synthesized front ZrO2(t) slightly, but obviously on the Li2ZrO3 synthesized from ZrO2 (m),and the absorption rate reached peak value at Li2CO3:ZrO2:K2CO3=1:1:0.03.; http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000222365000003&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=8e1609b174ce4e31116a60747a720701 ; SCI(E); 中文核心期刊要目总览(PKU); 中国科技核心期刊(ISTIC); 中国科学引文数据库(CSCD); 10; 07; 770-774+747; 20
语种中文
出处知网 ; 万方 ; SCI
出版者无机化学学报
内容类型其他
源URL[http://hdl.handle.net/20.500.11897/80063]  
专题化学与分子工程学院
推荐引用方式
GB/T 7714
王银杰,其鲁. Li_2ZrO_3材料吸收CO_2性能的进一步研究, Further study on the property of absorbing CO2 with Li2ZrO3 material. 2004-01-01.
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