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煤粉喷燃热烟气炉在褐煤提质中的应用研究
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作者 张诚 张洪波 《工业加热》 CAS 2014年第4期65-66,共2页
介绍了煤粉喷燃热烟气炉的工作原理,阐述了热烟气炉工艺过程和特点,直接消化了褐煤干燥过程产生的煤粉,解决了煤粉不易输送和储存及产生飞扬不环保等问题。煤粉喷燃热烟气炉适合在褐煤提质干燥工程中推广使用。
关键词 热烟气炉 褐煤提质 煤粉
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热烟气炉颗粒轨迹数值模拟
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作者 张合强 《中国化工贸易》 2012年第6期229-229,共1页
本文介绍了热烟气炉的主要工作原理,通过Fluent软件模拟热烟气炉内的燃烧过程,分析了辐射温度分布数据、组份质量分数分布数据和颗粒轨迹运动数据,得出了颗粒轨迹对辐射温度的影响规律,为解决热烟气妒现存的问题提供参考。
关键词 颗粒轨迹 燃烧 热烟气炉 辐射
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Technical Measures and Selections for Reducing Flue Gas Heat Loss of Large Coal-Fired Boilers
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作者 Wang Chunchang 《Electricity》 2012年第1期36-39,共4页
The main technologies for reducing flue gas heat loss of pulverized coal-fired boilers are introduced, and the suitability of these technologies for boiler operation and the principles for selection of these technolog... The main technologies for reducing flue gas heat loss of pulverized coal-fired boilers are introduced, and the suitability of these technologies for boiler operation and the principles for selection of these technologies are explored. The main conclusions are: 1) the non-equilibrium control over flue gas flow rates at the inlet of the air heater and the reversal rotation of the air heater rotator should be popularized as regular technologies in large boilers; 2) increasing the area of the air heater to reduce the flue gas heat loss in pulverized coal-fired boilers should be the top option and increasing the area of the economizer be the next choice; 3) low- pressure economizer technology could save energy under special conditions and should be compared with the technology of increasing economizer area in terms of technical economics when the latter is feasible; 4) the hot primary air heater is only suitable to the pnlvefizing system with a large amount of cold air mixed. 展开更多
关键词 exhaust flue gas temperature air heater ECONOMIZER flue gas waste heat recovery hot primary air heater thermal system
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Waste heat recovery and denitrification of flue gases from gas-fired boilers 被引量:2
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作者 ZHAO Yan ZHU Xiao Lei +1 位作者 MENG Ji An LI Zhi Xin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第12期1874-1881,共8页
A waste heat recovery and denitrification system was developed for improving energy conservation and emissions control especially for control of PM2.5 particles and haze. The system uses enhanced heat and mass transfe... A waste heat recovery and denitrification system was developed for improving energy conservation and emissions control especially for control of PM2.5 particles and haze. The system uses enhanced heat and mass transfer techniques in a packed heat exchange tower with self-rotation and zero-pressure spraying, low temperature NO oxidation by ozone, and neutralization with an alkali solution. Operating data in a test project gave NOx in the exhaust flue gas of less than 30 mg/Nm3 with an ozone addition rate of 8 kg/h and spray water p H of 7.5–8, an average heat recovery of 3 MW, and an average heat supply of 7.2 MW. 展开更多
关键词 flue gas waste heat recovery denitrification ozone oxidation of NO neutralization with alkali solution heat pump
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