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1)  steam reforming
水蒸汽转化
1.
A series of CuxZnyAlz catalysts were prepared by impregnation method for hydrogen production by steam reforming of methanol.
采用浸渍法制备了一系列CuxZnyAlz催化剂,考察了催化剂焙烧温度和组成对甲醇水蒸汽转化制氢反应性能的影响,用TG-DTA、XRD和SEM等方法对催化剂性能进行了表征。
2.
Effects of CuO content and calcination temperature on properties of catalysts for steam reforming of methanol have been studied.
研究了催化剂的不同组成和焙烧温度对甲醇水蒸汽转化催化剂性能的影响 ,且采用X射线衍射分析 (XRD)、程序升温还原 (TPR)试验及热重分析等方法对催化剂的表面性质及表面组成进行了探讨。
3.
This research aims at exploiting a kind of catalyst as a substitute of the Ni/Si-Al catalyst for naphane steam reforming imported from Austria.
分别以正丁烷和含烯烃30%的液化石油气为原料,对进口催化剂和自制催化剂的水蒸汽转化催化活性进行了评价。
2)  steam hydrocarbon reformer
烃水蒸汽转化炉
3)  steam conversion
蒸汽转化
1.
Study on catalyst for energy-saving steam conversion of natural gas;
节能型天然气蒸汽转化催化剂的研究
2.
Macrokinetics of methane-steam conversion by CN-18 catalyst;
气态烃在CN-18催化剂上蒸汽转化宏观动力学
3.
Cu/ZnO/ZrO2/Al2O3 catalysts with the low Cu content were prepared by the impregnation technology for hydrogen production from methanol steam conversion.
采用浸渍法制备了具有较低铜含量的甲醇水蒸汽转化制氢Cu/ZnO/ZrO2/Al2O3催化剂,并用X射线衍射(XRD)表征其性能,考察了Zr含量对催化活性的影响,优选出Cu/Zn/Al/Zr物质的量比为1/1/5。
4)  steam reforming
蒸汽转化
1.
A method for determining the ratio of reforming gas to feedstock natural gas in primary steam reforming;
确定一段蒸汽转化转化气量/天然气量比值的方法
2.
Steam/carbon ratio is a controls parameter of hydrogen plant by steam reforming of mixed hydrocarbon feedstocks.
水碳比是烃类蒸汽转化制氢装置的一个控制参数,而本文所提出的水碳反应比则是评价制氢装置运转水平的一个重要参数,在生产实践中,它有多种用途。
3.
The high-temperature natural gas steam reforming catalysts using α-Al_2O_3 roasted in very high temperature as support and rare-earth as modifier are prepared and evaluated.
采用La、Al改性载体和浸渍法制备出了天然气高温蒸汽转化组合催化剂。
5)  reformer [英][rɪ'fɔ:mə(r)]  [美][rɪ'fɔrmɚ]
烃水蒸汽转化装置
6)  steam oxidation
水蒸汽氧化
1.
The high temperature steam oxidation corrosion in the inner wall of boiler superheater and reheater tube was presented and its cause and harm was discussed.
介绍了国内外亚临界、超临界大型火力发电机组过、再热器内壁高温水蒸汽氧化腐蚀情况、形成的主要原因和危害,并提出了相应的处理措施。
2.
It discusses the factors affecting 18-8 austenitic stainless steel steam oxidation thickness and points out that using fine grain material would effectively improve the performance of anti-oxidation.
主要观察了TP304H不锈钢管子内壁高温水蒸汽氧化层形貌及其剥离失效情况,讨论了影响18-8奥氏体不锈钢蒸汽氧化层的因素,指出采用细晶粒的材料,可有效提高其抗水蒸汽氧化性能。
补充资料:蒸汽转化
      见合成气。
  

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