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弥散强化Pt-3Rh合金高温性能(英文) 被引量:5
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作者 苏中华 彭晓东 +2 位作者 谢卫东 刘伟廷 杨宗伦 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2012年第3期402-405,共4页
用粉末冶金-内氧化-烧结方法制备ZrO2弥散强化Pt-3Rh合金并测试、分析其高温性能。结果表明,Pt-3Rh合金被弥散强化以后,800℃以下的膨胀系数比Pt-3Rh大,800℃以上的膨胀系数比Pt-3Rh小;高温抗拉强度和延伸率得到提高;高温晶体结构稳定... 用粉末冶金-内氧化-烧结方法制备ZrO2弥散强化Pt-3Rh合金并测试、分析其高温性能。结果表明,Pt-3Rh合金被弥散强化以后,800℃以下的膨胀系数比Pt-3Rh大,800℃以上的膨胀系数比Pt-3Rh小;高温抗拉强度和延伸率得到提高;高温晶体结构稳定性增加;用其制备的拉丝漏板高温使用寿命与Pt-10Rh合金漏板相当。 展开更多
关键词 pt-3rh ZRO2 弥散强化 高温性能 拉丝漏板
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Investigation of fluorescence characterization and electrochemical behavior on the catalysts of nanosized Pt-Rh/y-AI203 to oxidize gaseous ammonia
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作者 Chang-Mao HUNG Wen-Liang LAI Jane-Li LIN 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2013年第3期428-434,共7页
This work describes the environmentally friendly technology for oxidation of ammonia (NH3) to form nitrogen at temperatures range from 423K to 673K by selective catalytic oxidation (SCO) over a nanosized Pt- Rh/γ... This work describes the environmentally friendly technology for oxidation of ammonia (NH3) to form nitrogen at temperatures range from 423K to 673K by selective catalytic oxidation (SCO) over a nanosized Pt- Rh/γ-A12O3 catalyst prepared by the incipient wetness impregnation method of hexachloroplatinic acid (H2PtC16) and rhodium (Ⅲ) nitrate (Rh(NO3)3) with γ-A12O3 in a tubular fixed-bed flow quartz reactor (TFBR). The characterization of catalysts were thoroughly measured using transmission electron microscopy (TEM), three- dimensional excitation-emission fluorescent matrix (EEFM) spectroscopy, UV-Vis absorption, dynamic light- scattering (DLS), zeta potential meter, and cyclic voltam- metry (CV). The results demonstrated that at a temperature of 673K and an oxygen content of4%, approximately 99% of the NH3 was removed by catalytic oxidation over the nanosized Pt-Rh/γ-A12O3 catalyst. N2 was the main product in NH3-SCO process. Further, it reveals that the oxidation of NH3 was proceeds by the over-oxidation of NH3 into NO, which was conversely reacted with the NH3 to yield N2. Therefore, the application ofnanosized Pt-Rh/γ-A12O3 catalyst can significantly enhance the catalytic activity toward NH3 oxidation. One fluorescent peak for fresh catalyst was different with that of exhausted catalyst. It indicates that EEFM spectroscopy was proven to be an appropriate and effective method to characterize the Pt clusters in intrinsic emission from nanosized Pt-Rh/γ-A12O3 catalyst. Results obtained from the CV may explain the significant catalytic activity of the catalysts. 展开更多
关键词 ammonia (NH3 nanosized pt- rh/γ-A12O3catalyst excitation-emission fluorescent matrix (EEFM) selective catalytic oxidation (SCO) tubular fixed-bedreactor (TFBR)
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