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Simultaneous catalytic removal of NOx and diesel soot particulate over perovskite-type oxides and supported Ag catalysts 被引量:4
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作者 LiuZM HaoZP 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2002年第3期289-295,共7页
A series of perovskite type oxides and supported Ag catalysts were prepared, and characterized by X ray diffraction (XRD) and X ray photoelectron spectroscopy (XPS). The catalytic activities of the catalyst... A series of perovskite type oxides and supported Ag catalysts were prepared, and characterized by X ray diffraction (XRD) and X ray photoelectron spectroscopy (XPS). The catalytic activities of the catalysts as well as influencing factors on catalytic activity have been investigated for the simultaneous removal of NOx and diesel soot particulate. An increase in catalytic activity for the selective reduction of NOx was observed with Ag addition in these perovskite oxides, especially with 5% Ag loading. This catalyst could be a promising candidate of catalytic material for the simultaneous elimination of NOx and diesel soot. 展开更多
关键词 perovskite type catalysts supported Ag catalyst NOx diesel soot
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Regulating Zn Deposition via an Artificial Solid–Electrolyte Interface with Aligned Dipoles for Long Life Zn Anode 被引量:9
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作者 Kai Wu Jin Yi +6 位作者 Xiaoyu Liu Yang Sun Jin Cui Yihua Xie Yuyu Liu Yongyao Xia Jiujun Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第5期107-117,共11页
Aqueous zinc ion batteries show prospects for next-generation renewable energy storage devices.However,the practical applications have been limited by the issues derived from Zn anode.As one of serious problems,Zn den... Aqueous zinc ion batteries show prospects for next-generation renewable energy storage devices.However,the practical applications have been limited by the issues derived from Zn anode.As one of serious problems,Zn dendrite growth caused from the uncontrollable Zn deposition is unfavorable.Herein,with the aim to regulate Zn deposition,an artificial solid–electrolyte interface is subtly engineered with a perovskite type material,BaTiO3,which can be polarized,and its polarization could be switched under the external electric field.Resulting from the aligned dipole in BaTiO3 layer,zinc ions could move in order during cycling process.Regulated Zn migration at the anode/electrolyte interface contributes to the even Zn stripping/plating and confined Zn dendrite growth.As a result,the reversible Zn plating/stripping processes for over 2000 h have been achieved at 1 mA cm^(−2) with capacity of 1 mAh cm−2.Furthermore,this anode endowing the electric dipoles shows enhanced cycling stability for aqueous Zn-MnO2 batteries.The battery can deliver nearly 100%Coulombic efficiency at 2 Ag^(−1) after 300 cycles. 展开更多
关键词 Regulated Zn deposition Artificial solid-electrolyte interface perovskite type dielectric material Zn anode Zn ion battery
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Photocatalytic Degradation of Water-Soluble Dyes by LaCoO_3 被引量:9
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作者 傅希贤 杨秋华 +2 位作者 王俊珍 白树林 桑丽霞 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第4期424-426,共3页
Perovskite type oxides LaCoO 3 was prepared by citrate method in granula of 20~30 nm. Using a fluorescent Hg lamp or sunlight as irradiator, the degradation experiments of various water soluble dyes were carried o... Perovskite type oxides LaCoO 3 was prepared by citrate method in granula of 20~30 nm. Using a fluorescent Hg lamp or sunlight as irradiator, the degradation experiments of various water soluble dyes were carried out in the suspension system of LaCoO 3. The results show that the perovskite type oxide LaCoO 3 has good photocatalytic activity. With the study of X ray photoelectron spectroscopy and photoacoustic spectra, its photocatalytic activity is mainly related with the factors such as the d electron structure of ion Co 3+ , Co O binding energy and adsorbed oxygen on the surface etc. 展开更多
关键词 catalytic chemistry water soluble dye perovskite type LaCoO 3 photocatalytic degradation rare earths
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Effects of Concentration of La^(3+) Vacancies in LaMnO_(3+λ) on the Catalytic Activity of Oxidation of CO
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作者 孙永安 张文韬 +1 位作者 胡瑞生 沈岳年 《Journal of Rare Earths》 SCIE EI CAS CSCD 1997年第2期39-42,共4页
A series of LaMnO 3+ λ catalysts have been synthesized under various partial pressures of oxygen. The structures of these catalysts were determined by XRD. The percentage of Mn 4+ ion in the catalysts wa... A series of LaMnO 3+ λ catalysts have been synthesized under various partial pressures of oxygen. The structures of these catalysts were determined by XRD. The percentage of Mn 4+ ion in the catalysts was measured by chemical analysis. The activity of oxidation of CO over that series of catalysts was tested by pulsing process in differential reactor. The results of various measurements are discussed in this paper as well. 展开更多
关键词 Rare earths LaMnO 3+ λ Oxidaion of CO perovskite type oxides Complex oxides
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Preparation of La _(0.9)RE_(0.1) MnO_3 Ultra fine Particles Used for CH_4 Oxidation
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作者 刘源 郑海涛 +1 位作者 刘全生 张通 《Journal of Rare Earths》 SCIE EI CAS CSCD 2002年第5期457-464,共8页
A technique for preparing perovskite type oxides was developed. By this technique, ultra fine particles of La 0.9 RE 0.1 MnO 3 (RE: Y, Ce, Pr, Sm, Gd,or Dy) with high surface area and single perovskite stru... A technique for preparing perovskite type oxides was developed. By this technique, ultra fine particles of La 0.9 RE 0.1 MnO 3 (RE: Y, Ce, Pr, Sm, Gd,or Dy) with high surface area and single perovskite structure were prepared, and the series of La 0.9 RE 0.1 MnO 3 catalysts were studied experimentally. The so prepared ultra fine particles exhibites high catalytic activity for CH 4 total oxidation. The ultra fine particles of La 0.9 RE 0.1 MnO 3 (except for La 0.9 Pr 0.1 MnO 3) prepared by this method are thermally much more stable than LaMnO 3. Of the La 0.9 RE 0.1 MnO 3 series, La 0.9 Y 0.1 MnO 3 is most thermally stable, and La 0.9 Y 0.1 MnO 3 or La 0.9 Gd 0.1 MnO 3 (varies with calcination temperature) exhibits the highest catalytic activity for total oxidation of methane. The specific surface area of La 0.9 Y 0.1 MnO 3 calcined at 1000 ℃ reaches 14.9 m 2·g -1 , while the specific surface area of LaMnO 3 calcined at the same temperature is only 1.8 m 2·g -1 . 展开更多
关键词 rare earths perovskite type oxides ultra fine particles catalytic combustion
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