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ZrO_2空气焙烧与氮气焙烧对Au/ZrO_2水煤气变换催化剂性能的影响 被引量:1
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作者 张燕杰 陈崇启 +4 位作者 詹瑛瑛 林棋 娄本勇 郑国才 郑起 《闽江学院学报》 2018年第2期54-61,共8页
分别以空气和氮气焙烧的ZrO_2圆形纳米片(标记为ZrO_2-Air和ZrO_2-N_2)为载体,采用沉积-沉淀法制得1%Au/ZrO_2催化剂(标记为Au/ZrO_2-Air和Au/ZrO_2-N_2).考察了富氢气氛下上述催化剂的水煤气变换反应(WGSR)催化性能,发现Au/ZrO_2-Air... 分别以空气和氮气焙烧的ZrO_2圆形纳米片(标记为ZrO_2-Air和ZrO_2-N_2)为载体,采用沉积-沉淀法制得1%Au/ZrO_2催化剂(标记为Au/ZrO_2-Air和Au/ZrO_2-N_2).考察了富氢气氛下上述催化剂的水煤气变换反应(WGSR)催化性能,发现Au/ZrO_2-Air的催化活性明显高于Au/ZrO_2-N_2,且显著优于Au负载量较高的Au/Fe_2O_3和Au/CeO_2催化剂.采用XRD、AAS、N_2物理吸脱附、TEM、UV-Vis DRS及EPR等手段研究了两种气氛焙烧的ZrO_2载体和相应Au/ZrO_2催化剂的结构及表面性质.结果表明,两种ZrO_2载体的晶相结构及织构性能无明显差异,但两种ZrO_2载体上表面缺陷种类和浓度分布差别较大.相较于ZrO_2-N_2,ZrO_2-Air的表面具有较多的配位不饱和Zr3+,这些位点有助于提高负载Au的分散度,使得Au/ZrO_2-Air具有较高的催化活性. 展开更多
关键词 Au/ZrO2催化剂 水煤气变换反应 空气焙烧 氮气焙烧 配位不饱和Zr3+ Au分散度
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空气焙烧-碱浸法回收废加氢催化剂中的钼和钒 被引量:2
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作者 李雨恩 于博 +3 位作者 凌江华 张成 胡久刚 刘美 《过程工程学报》 CAS CSCD 北大核心 2023年第4期562-570,共9页
废加氢催化剂中含有大量的有机污染物和金属元素,如钼、钒、镍和铝,若处理不当,会造成严重的生态污染和资源浪费。本研究采用空气焙烧-碳酸钠浸出法处理废弃加氢催化剂以回收其中的钼和钒。通过热力学计算可知低温碳酸钠浸出可以实现废... 废加氢催化剂中含有大量的有机污染物和金属元素,如钼、钒、镍和铝,若处理不当,会造成严重的生态污染和资源浪费。本研究采用空气焙烧-碳酸钠浸出法处理废弃加氢催化剂以回收其中的钼和钒。通过热力学计算可知低温碳酸钠浸出可以实现废催化剂中钼、钒与铝、镍的分离。单因素实验考察了空气焙烧温度、碳酸钠浓度、反应时间、浸出温度、液固比等工艺条件对钼和钒浸出率的影响。实验结果表明,在焙烧温度500℃,碳酸钠浓度4 mol/L,浸出温度80℃,反应时间90 min,液固比为20:1的条件下,钼和钒的浸出率可分别达到98.02%和94.36%。为了最大限度地回收钼和钒,采用二段逆流浸出流程处理废加氢催化剂,可将钼和钒的浸出率维持在98%和97%。浸出渣中主要含有Al_(2)O_(3),NiO和NiAl_(26)O_(40),而绝大部分钼和钒被转移至浸出液中。 展开更多
关键词 废加氢催化剂 空气焙烧-碱浸 二段逆流浸出
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对大型硫铁矿制酸装置发展的几点思考 被引量:1
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作者 徐光泽 《硫酸工业》 CAS 2006年第5期12-15,共4页
介绍了硫铁矿制酸的精料政策、富氧焙烧和废热回收情况。加强低品位硫铁矿精选、高铁烧渣回收、富氧空气焙烧、废热回收,不仅符合国家循环经济的产业政策,而且可大幅度提升硫铁矿制酸企业的经济效益。
关键词 硫酸生产 硫铁矿 高铁烧渣 富氧空气焙烧 废热回收
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Influence of heat treatment on nanocrystalline zirconia powder and plasma-sprayed thermal barrier coatings 被引量:2
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作者 蒋显亮 刘纯波 +1 位作者 刘敏 朱晖朝 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第12期2272-2280,共9页
Nanostructured zirconia top coat was deposited by air plasma spray and NiCoCrAlTaY bond coat was deposited on Ni substrate by low pressure plasma spray.Nanostructured and conventional thermal barrier coatings were hea... Nanostructured zirconia top coat was deposited by air plasma spray and NiCoCrAlTaY bond coat was deposited on Ni substrate by low pressure plasma spray.Nanostructured and conventional thermal barrier coatings were heat-treated at temperature varying from 1050 to 1 250oC for 2-20 h.The results show that obvious grain growth was found in both nanostructured and conventional thermal barrier coatings(TBCs)after high temperature heat treatment.Monoclinic/tetragonal phases were transformed into cubic phase in the agglomerated nano-powder after calcination.The cubic phase content increased with increasing calcination temperature.Calcination of the powder made the yttria distributed on the surface of the nanocrystalline particles dissolve in zirconia when grains grew.Different from the phase constituent of the as-sprayed conventional TBC which consisted of diffusionlesstransformed tetragonal,the as-sprayed nanostructured TBC consisted of cubic phase. 展开更多
关键词 nanocrystalline material ZIRCONIA thermal barrier coating heat treatment phase composition
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Study on Al2O3 Extraction From Activated Coal Gangue under Different Calcination Atmospheres 被引量:7
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作者 DONG Ling LIANG Xinxing +4 位作者 SONG Qiang GAO Gewu SONG Lihua SHU Yuanfeng SHU Xinqian 《Journal of Thermal Science》 SCIE EI CAS CSCD 2017年第6期570-576,共7页
Coal gangue was calcinated under air, nitrogen, carbon dioxide, air-hydrogen, and hydrogen atmospheres. The effects of different calcination temperatures and atmospheres on the mineral composition of activated coal ga... Coal gangue was calcinated under air, nitrogen, carbon dioxide, air-hydrogen, and hydrogen atmospheres. The effects of different calcination temperatures and atmospheres on the mineral composition of activated coal gangue were investigated by X-ray diffraction. Moreover, the acid leaching kinetics of aluminum oxide from coal gangue was investigated with sulfuric acid. It showed that the air atmosphere promoted kaolinite decomposition during coal gangue calcination. The hydrogen atmosphere promoted the activation and decomposition of kaolinite at reaction temperatures exceeding 650℃. The carbon dioxide atmosphere eliminated the influence of residual carbon on coal gangue. When the ratio of acid/coal gangue was 1.5 and reaction temperature was 650℃, the sulfuric acid leaching rate under air, air-hydrogen, carbon dioxide, hydrogen and nitrogen atmospheres were 93.66%, 90.90%, 84.06%, 81.91% and 77.54% respectively. The acid leaching reaction process conformed to unreacted shrinking core model of particle unchanged, and was controlled by the interracial chemical reaction. The reaction kinetic equation for the leaching process was 1-(1-x)1/3=kt with an apparent activation energy of 48.97 kJ/mol. 展开更多
关键词 coal gangue aluminum oxide calcination and activation ATMOSPHERE
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