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1.
Study on NO_x emission for high temperature air combustion
高温燃烧技术中NO_x排放控制研究
2.
The Experimental Studies on Calcium-injection Desulfurization During High Temperature Combustion in Fired Bed;
层燃炉炉内高温燃烧喷钙脱硫的试验研究
3.
Nitrogen oxides (NOX.) are produced when fuel is burned at very high temperatures.
氮氧化物(NOX)产生于高温下的燃料燃烧。
4.
Research of Temperature Field of Gas High Temperature Combustion at Low Oxygen and NOx Emission Characteristic
燃气高温低氧燃烧温度场及NOx排放特性的研究
5.
Combustion at high temperature causes decomposition to nitrogen and water.
氨在高温下燃烧分解成为氮和水。
6.
Energy Analysis of High Temperature Air Combustion;
高温空气燃烧系统的能量利用率分析
7.
The Experiment Research of Heating Ceramic with High Temperature Air Combustion Technology;
应用于陶瓷烧成的高温空气燃烧技术实验研究
8.
Study on Improving Combustion Efficiency of Oil by Using Room-temperature Far-infrared Ceramic Materials
常温远红外陶瓷材料提高燃油燃烧效果的研究
9.
Numerical Analysis of Burner Structure and Combustion Characteristics with High Temperature Air Combustion
高温空气燃烧喷嘴的优化设计和燃烧特性的数值分析
10.
The numerical simulation of HiTAC technology apply in new conceptual combustor
新概念燃烧室应用高温空气燃烧技术的数值模拟
11.
Mechanism Investigation on Aircraft Afterburner Flameholder of High Efficiency、Low Drag and High Temperature Resistance;
高温、低阻、高效加力燃烧室火焰稳定器机理研究
12.
Experimental Study on Combustion Characteristics of Dimethyl Ether-Air Premixed Mixtures at Elevated Pressure and Temperature
高温高压下二甲醚—空气预混层流燃烧特性研究
13.
A flame resistant textile will remain its shape and will not ignite after exposure to temperatures as high as 600 c.
抗燃纺织品在遇到高达600℃的高温时不会燃烧,并能保持原有的形状。
14.
If we burn less,then the increase will be less.
如果我们燃烧得少,那么气温会少升高些。
15.
It is light, high temperature resistant, dampness resistant, corrosion resistant, dampness resistant and burning-free, etc.
具有重量轻、高温、潮湿、腐蚀、易燃烧等优点。
16.
The high temperature necessary for the reaction is obtained by combustion of coke .
该反应所需的高温可通过燃烧焦碳达到。
17.
A NEW FORMULA TO CALCULATE PROMPT RACEWAY ADIABATIC FLAME TEMPERATURE OF BLAST FURNACES WITH OXYGEN-ENRICHMENT AND PCI
高炉富氧喷煤条件下理论燃烧温度的即时算法
18.
A Study on Mechanism of Self-Propagating High-Temperature Synthesis by Combustion front Quenching Technique;
用燃烧波淬熄法对自蔓延高温合成机理的研究