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1)  high temperature combustion
高温燃烧
1.
Principle of nanometer catalyst preparation through reverse microemulsion method and its application in preparation of high temperature combustion catalyst were introduced.
综述了反相微乳法制备纳米催化剂的原理及其在制备高温燃烧催化剂上的应用。
2.
It is reported that the content of total sulfur in coal can be rapidly determined by high temperature combustion and JR-absorption spectrometric method in this paper.
探讨了应用高温燃烧红外吸收光谱技术快速测定煤中全硫含量的方法。
3.
The principle and summary of application of infrared sulphur analyzor are introduced mainly,and the experiments show that the determination of total sulfur content by high temperature combustion & infrared absorption can meet the requirements of the national standard methods,moreover,the analysis by infrared sulphur analyzor is fast and easily maintenanced.
通过实验表明,高温燃烧红外吸收法测定煤中全硫可满足国家标准方法要求,而且红外测硫仪分析速度快捷,日常维护简便。
2)  high-temperature air combustion
高温空气燃烧
1.
Features of the high-temperature air combustion technique and its application prospects;
高温空气燃烧技术的特点及其应用前景
2.
The results indicate that new ladle heater in which the gas fluerics technology and the high-temperature air combustion technology are adopted,can improve the bake effect and the temperature uniformit.
研究结果表明,引入气体射流技术和高温空气燃烧技术的新型钢包烘烤器结构,能够有效地改善钢包烘烤效果以及加热均匀性,并较大程度地减小了污染物排放量。
3.
The operating principle and causes of damage of a honeycomb ceramic regenerator during high-temperature air combustion are described.
介绍了高温空气燃烧过程中蜂窝陶瓷蓄热体的工作原理和损毁原因 ,采用代数雷诺应力模型和修正的速度 -压力耦合算法SIMPLEC ,耦合蓄热体内流体的流动和换热过程 ,运用有限元分析方法 ,对蜂窝陶瓷蓄热体格孔壁面上的应力变化规律进行数值研究 ,并根据计算结果对操作参数进行了改进。
3)  high temperature air combustion
高温空气燃烧
1.
Theoretical analysis of heat transfer of ceramic regenerator in high temperature air combustion system;
高温空气燃烧系统中陶瓷蓄热体传热特性分析研究
2.
Numerical study of a new technique for low NO_x high temperature air combustion;
新型低NO_x排放高温空气燃烧的数值研究
3.
To get the more proper research methods to high temperature air combustion (HTAC), the influence of finite chemistry reaction rate model on HTAC is numerically analyzed by making use of reaction mechanisms.
为了探讨更恰当的高温空气燃烧研究方法,本文从燃烧机理的角度,通过数值分析方法研究了化学反应速率模型对高温空气燃烧特性的影响,分别研究了单步有限反应速率模型、多步有限反应速率模型和涡旋破散模型。
4)  high temperature air combustion with enriched oxygen content
高温富氧燃烧
5)  High temperature digestion
高温燃烧水解法
6)  high temperature catalytic combustion
高温催化燃烧
1.
The principle of high temperature catalytic combustion and the relationship between reaction rateand temperature is outlined.
本文简述了高温催化燃烧的原理,概括了燃烧速率与温度的关系,并详述了高温催化燃烧用催化剂的基体、载体和活性组分材料科研与开发近况,指出筛选和制备出一种以氧化铝或氧化镁或其它耐高温、比表面大的氧化物为基体,在其上引人高温下具较强活性组分的复合型氧化物涂层,使其获得较大的比表面积及较佳的热稳定性,并具有一定活性的催化剂是高温催化燃烧催化剂发展趋势。
2.
The recent R & D of carriers,supports and active components of catalysis in high temperature catalytic combustion is discussed.
分析了最近高温催化燃烧中催化剂的支撑体、载体和活性成分材料的研究发展状况,指出筛选和制备具有较大的表面积及较好的热稳定性、又有一定活性的催化剂是高温催化燃烧发展的关键。
补充资料:沸腾床燃烧(见流化床燃烧)


沸腾床燃烧(见流化床燃烧)
boiling-bed combustion:see fluidized-bed combustion

沸腾床燃烧(boiling一bed eombustion)见流化床燃烧。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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