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Low temperature molten salt synthesis of porous La_(1-x)Sr_xMn_(0.8)Fe_(0.2)O_3(0≤x≤0.6) microspheres with high catalytic activity for CO oxidation 被引量:4
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作者 黄学辉 牛鹏举 商晓辉 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第8期1431-1439,共9页
A molten salt method was developed to prepare porous La1‐xSrxMn0.8Fe0.2O3 (0≤ x ≤ 0.6) micro‐spheres using hierarchical porous δ‐MnO2 microspheres as a template in eutectic NaNO3‐KNO3. X‐ray diffraction patt... A molten salt method was developed to prepare porous La1‐xSrxMn0.8Fe0.2O3 (0≤ x ≤ 0.6) micro‐spheres using hierarchical porous δ‐MnO2 microspheres as a template in eutectic NaNO3‐KNO3. X‐ray diffraction patterns showed that single phase LaMn0.8Fe0.2O3 with good crystallinity was syn‐thesized at 450℃ after 4 h. Transmission electron microscope images exhibited that the LaMn0.8Fe0.2O3 sample obtained at 450?? after 4 h possessed a porous spherical morphology com‐posed of aggregated nanocrystallites. Field emission scanning electron microscope images indicated that the growth of the porous LaMn0.8Fe0.2O3 microspheres has two stages. SEM pictures showed that a higher calcination temperature than 450?? had an adverse effect on the formation of a po‐rous spherical structure. The LaMn0.8Fe0.2O3 sample obtained at 450?? after 4 h displayed a high BET surface area of 55.73 m2/g with a pore size of 9.38 nm. Fourier transform infrared spectra suggested that Sr2+ions entered the A sites and induced a decrease of the binding energy between Mn and O. The CO conversion with the La1‐xSrxMn0.8Fe0.2O3 (0≤x≤0.6) samples indicated that the La0.4Sr0.6Mn0.8Fe0.2O3 sample had the best catalytic activity and stability. Further analysis by X‐ray photoelectron spectroscopy demonstrated that Sr2+doping altered the content of Mn4+ions, oxygen vacancies and adsorbed oxygen species on the surface, which affected the catalytic performance for CO oxidation. 展开更多
关键词 Molten salt method δ-MnO2 microsphere Porous spherical structure Calcination temperature Carbon monoxide oxidation
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硝酸与氯化钾直接制取硝酸钾工艺研究 被引量:2
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作者 史忠录 杜佩英 +2 位作者 于雪峰 牛莉慧 汪万清 《无机盐工业》 CAS CSCD 北大核心 2019年第8期37-39,共3页
利用青海盐湖工业股份有限公司(简称“公司”)自产的硝酸和氯化钾制取高纯度熔盐级硝酸钾,通过反应结晶得到的固相即为产品硝酸钾;过滤后的母液通过萃取法将反应生成的盐酸和过量的硝酸分离,萃取时先萃取硝酸,萃取出的稀硝酸作为原料和... 利用青海盐湖工业股份有限公司(简称“公司”)自产的硝酸和氯化钾制取高纯度熔盐级硝酸钾,通过反应结晶得到的固相即为产品硝酸钾;过滤后的母液通过萃取法将反应生成的盐酸和过量的硝酸分离,萃取时先萃取硝酸,萃取出的稀硝酸作为原料和氯化钾反应可以重复利用,萃取出的盐酸作为副产物可以在公司内部其他单位当作原料使用,这样既可以降低企业生产成本,同时也起到保护环境的作用,并为企业创造更大的经济效益。 展开更多
关键词 萃取 熔盐级 硝酸钾
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Electrical conductivity and viscosity of cryolite electrolytes for solar grade silicon(Si-SoG) electrowinning 被引量:3
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作者 Michal KORENKO Zuzana VASKOV +3 位作者 Frantiek IMKO Michal IMURDA Marta AMBROV 石忠宁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3944-3948,共5页
Electrical conductivity of molten binary and ternary mixtures based on the system NaF-AlF3-SiO2 was investigated by means of a tube–cell (made of pyrolytic boron nitride) with stationary electrodes. Viscosity of th... Electrical conductivity of molten binary and ternary mixtures based on the system NaF-AlF3-SiO2 was investigated by means of a tube–cell (made of pyrolytic boron nitride) with stationary electrodes. Viscosity of the binary system Na3AlF6-SiO2 was measured by computerized torsion pendulum method. It was found that conductivity and viscosity varied linearly with temperature in all investigated mixtures. Obtained content dependence of electrical conductivity (isotherms) was divided into two parts. First, one represented the content region up to 10%(mole fraction) of SiO2;second, the region was with a higher content of SiO2 (from 10%up to 40%). While the conductivity considerably decreased with content of SiO2 in the second part; it surprisingly rose in the low content range. A small addition of SiO2 to the molten cryolite (up to 10%) could slightly increase viscosity, but had no influence on the slope of this dependence since it is responsible for a glassy-networks formation in the melt. Further addition of SiO2 to the molten cryolite had a huge effect on the viscosity. 展开更多
关键词 electrical conductivity VISCOSITY solar grade silicon molten salts molten cryolite-silica melts
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