1.
Basic Study on a Nonflame Combustion Technique with Thermal Cyclic Carrier of Molten Salt
熔融盐循环热载体无烟燃烧技术的基础研究
2.
Low-nitrogen combustion technology, smokeless and odorless, without harmful gas.
无二次污染低氮燃烧技术,无烟,无臭,无有害气体。
3.
Investigation of the Tangential Firing Anthracite Boiler for Nayong Power Plant;
四角切圆炉燃烧无烟煤技术在纳雍电厂300MW机组上的应用研究
4.
Study on the Desulphurization and Utilization of Ashes Form CFB Boiler Combustion Fujian Anthracite
燃烧福建无烟煤CFB锅炉炉内脱硫及脱硫灰渣利用技术的研究
5.
Application of Plasma Combustion Technology in High Ash Content Bituminous Boiler
等离子燃烧技术在高灰分烟煤锅炉的应用
6.
Recent Research Progress of Absorption and Control Technique of CO_2 in Coal Combustion Flue Gas
煤燃烧烟气中CO_2的吸收控制技术研究进展
7.
Numerical Simulation of Combustion Process in a 200MW Tangential Fired Boiler with Anthracite;
200MW四角燃烧无烟煤锅炉燃烧工况的数值模拟
8.
Experimental Study on High Efficiency Combustion of Anthracite in a 440t/h CFB Boiler;
440t/h燃烧无烟煤CFB锅炉优化燃烧试验研究
9.
Character of the anthracite and combustion adjustment and the operation of the chain boiler
无烟煤特性和无烟煤链条炉的燃烧调整与操作
10.
A Study of Distorted PC Concentration Combustion and Its Application in a Power Boiler Furnace
变异煤粉浓度燃烧技术的研究及其在劣质烟煤锅炉上的应用
11.
Experimental and Mechanism Study on Mercury Transformation and Mercury Removal in Simulated Combustion Flue Gases;
模拟燃烧烟气中汞形态转化及脱除技术的实验及机理研究
12.
Theoretical Analysis and Experimental Study on Differential Optical Absorption Spectroscopy (DOAS) for Flue Gas Monitoring;
燃烧排放烟气监测的差分吸收光谱技术理论分析与实验研究
13.
Numerical Simulation of Soot in the Furnace of Coal-Smokeless Combustion Boiler;
煤无烟燃烧锅炉炉内碳黑的数值模拟
14.
Anthracite combustion catalyzed by Ca-Fe-Ce series catalyst
Ca-Fe-Ce系催化剂对无烟煤燃烧的影响
15.
Precombustion technology for 240 spark plug gas engine
240火花塞式燃气机预燃燃烧技术研究
16.
Experimental Study of the Combustion Characteristics of Anthracite Coal Mixed with MSW
生活垃圾掺烧无烟煤燃烧特性热重实验分析
17.
Experimental study on mechanism of lowering ignition temperature of anthracite combustion catalyzed by Fe_2O_3
Fe_2O_3催化无烟煤燃烧燃点降低机理的实验研究
18.
The emission amount of sulfur dioxide and fuel dust are reduced by cleaner coal, innovative combustion technology and end phase wet sulfur removal technology.
二氧化硫、烟尘排放量的控制,可采用选用清洁煤,改变燃烧技术及末尾脱硫除尘技术。