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利用月球含氧矿物制取氧气的方法学比较 被引量:6
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作者 李芃 王世杰 +2 位作者 李雄耀 唐红 陈丰 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2009年第2期183-188,共6页
氧气作为人类未来在月球上生存的基本条件,研究制取方法是月球基地建设中的一个主要目标。本文分类总结了利用月球含氧矿物制氧方法;就制氧方法适合就地利用月球资源、反应的高效率、反应过程易实现性等方面比较了各类方法的优缺点,提... 氧气作为人类未来在月球上生存的基本条件,研究制取方法是月球基地建设中的一个主要目标。本文分类总结了利用月球含氧矿物制氧方法;就制氧方法适合就地利用月球资源、反应的高效率、反应过程易实现性等方面比较了各类方法的优缺点,提出就地利用微波能加热、氢气作为还原剂、月壤中钛铁矿作为反应物的月球基地制氧的优选方案。 展开更多
关键词 就地资源利用 矿物 制氧方法 微波加热 月球基地
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实验室制取氧气方法的对比及建议 被引量:9
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作者 潘国荣 白显圣 陈正美 《化学教学》 CAS 北大核心 2015年第9期45-48,共4页
讨论了KMnO4、KClO4、H2O2三种物质制取氧气方法的特点,旨在为中学化学教学探寻一种实验室制取氧气的优化方案。通过从成本、操作、环保、安全等对比得出,使用过氧化氢分解制取氧气是一种比较高效、节能、环保、安全的好方法。此结论... 讨论了KMnO4、KClO4、H2O2三种物质制取氧气方法的特点,旨在为中学化学教学探寻一种实验室制取氧气的优化方案。通过从成本、操作、环保、安全等对比得出,使用过氧化氢分解制取氧气是一种比较高效、节能、环保、安全的好方法。此结论可为优化实验室制取氧气的方法及相关教学提供有益的参考。 展开更多
关键词 实验室 制氧方法对比 实验方案优化
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Preparation and application of perovskite-type oxides for electrocatalysis in oxygen/air electrodes 被引量:2
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作者 ZHUANG Shu-xin HE Jia-yi +4 位作者 ZHANG Wei-peng ZHOU Nan LU Mi LIAN Ji-qiong SUN Jing-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1387-1401,共15页
Recent advances in the preparation and application of perovskite-type oxides as bifunctional electrocatalysts for oxygen reaction and oxygen evolution reaction in rechargeable metal-air batteries are presented in this... Recent advances in the preparation and application of perovskite-type oxides as bifunctional electrocatalysts for oxygen reaction and oxygen evolution reaction in rechargeable metal-air batteries are presented in this review.Various fabrication methods of these oxides are introduced in detail,and their advantages and disadvantages are analyzed.Different preparation methods adopted have great influence on the morphologies and physicochemical properties of perovskite-type oxides.As a bifunctional electrocatalyst,perovskite-type oxides are widely used in rechargeable metal-air batteries.The relationship between the preparation methods and the performances of oxygen/air electrodes are summarized.This work is concentrated on the structural stability,the phase compositions,and catalytic performance of perovskite-type oxides in oxygen/air electrodes.The main problems existing in the practical application of perovskite-type oxides as bifunctional electrocatalysts are pointed out and possible research directions in the future are recommended. 展开更多
关键词 perovskite-type oxides ELECTROCATALYSTS PREPARATION oxygen/air electrodes
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TiO2 preparation by improved homogeneous precipitation and application in SCR catalyst 被引量:3
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作者 YAO Jie 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2139-2145,共7页
Ultrasonic treatment and hydrothermal method were applied in the traditional homogeneous precipitation for nano-TiO_2 preparation, which was used as carrier material for the production of honeycomb selective catalytic... Ultrasonic treatment and hydrothermal method were applied in the traditional homogeneous precipitation for nano-TiO_2 preparation, which was used as carrier material for the production of honeycomb selective catalytic reduction(SCR) catalyst. The influence rules of the two improved methods on characterization of TiO_2 samples, denitration activity and mechanical strength of honeycomb SCR catalyst samples were mainly focused on. The results indicate that the specific surface area, particle size and uniformity of TiO_2 samples are significantly improved by both of the ultrasonic and hydrothermal treatments compared with the traditional homogeneous precipitation. Also, the denitration activities of catalyst samples are enhanced by the two improved methods(the NO_x reduction ratio increases from 88.89% to 95.45% by ultrasonic homogeneous precipitation process, and to 94.12% by hydrothermal homogeneous precipitation process). On the other hand, because of good spherical shape and high particle distribution of TiO_2 sample from hydrothermal homogeneous precipitation process, the corresponding honeycomb catalyst samples get the best mechanical strength, which is even higher than that of the reference sample from commercial nano-TiO_2. So, it is concluded that the hydrothermal homogeneous precipitation can be a feasible and effective preparation method of TiO_2 carrier for the honeycomb SCR catalyst production. 展开更多
关键词 NANO-TIO2 honeycomb SCR catalyst homogeneous precipitation ultrasonic treatment hydrothermal method
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