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低浓度煤层气流态化燃烧技术的研究进展 被引量:1
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作者 杨仲卿 杨鹏 +3 位作者 张力 冉景煜 郭名女 闫云飞 《天然气工业》 EI CAS CSCD 北大核心 2015年第12期98-104,共7页
低浓度煤层气由于热值低、流量变化大,利用较困难,大部分都未经处理就直接被排放,不仅浪费资源,而且还污染环境,引起了国内外的密切关注。较之常规的煤层气利用技术,以惰性颗粒和催化颗粒为床料的流态化燃烧技术具有热容量大、燃料适应... 低浓度煤层气由于热值低、流量变化大,利用较困难,大部分都未经处理就直接被排放,不仅浪费资源,而且还污染环境,引起了国内外的密切关注。较之常规的煤层气利用技术,以惰性颗粒和催化颗粒为床料的流态化燃烧技术具有热容量大、燃料适应性广的特点,在低浓度煤层气燃烧利用方面表现出巨大的潜力。为此,综述了该技术的研究现状,分析了惰性颗粒和催化颗粒作用下,床层温度、进气浓度、流化风速及气固两相流对其燃烧特性的影响,介绍了在流化床中催化燃烧反应的模型及其动力学特性,探讨了杂质性气体对气固催化反应的作用机制,明确了SO_2作用下硫酸铜的生成是催化剂硫中毒的根本原因,提出了相应的抗硫中毒措施,讨论了水蒸气对低浓度甲烷催化燃烧的影响。最后,就该技术的未来发展进行了分析与展望,得出的认识如下:①后续的研究应该侧重颗粒尺寸变化对流态化燃烧带来的影响;②应寻找更加廉价、催化活性更优的催化剂替代;③对惰性颗粒下低浓度甲烷流态化燃烧,缺乏燃烧机理分析,需要进一步从理论角度进行深度挖掘。 展开更多
关键词 煤层气 甲烷 流态化燃烧 惰性颗粒 催化颗粒 动力学模型 杂质气体
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Preparation of ultrafine Co_3O_4 powders by continuous and controllable combustion synthesis 被引量:2
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作者 吴冲浒 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第3期679-684,共6页
The continuously dynamic-controlled combustion synthesis (CDCCS) was developed based on the continuous fluidization and combustion synthesis technologies. CoC2O4·2H2O powders were transformed to Co3O4 in a gas-... The continuously dynamic-controlled combustion synthesis (CDCCS) was developed based on the continuous fluidization and combustion synthesis technologies. CoC2O4·2H2O powders were transformed to Co3O4 in a gas-solid fluid bed unit designed and build independently, where the reactant of CoC2O4·2H2O powders and the reactant of air were poured and introduced from the top and the bottom of the bed at a certain rates respectively. The reagents met in the bed and ignited at a given low temperature, resulting in formation of Co3O4. The results show a significant difference in combustion wave models. In the case of CDCCS, there was an immobile combustion wave, floating in the combustion zone located in the middle of the bed, instead of propagating of the combustion wave. The temperature of the combustion wave can be controlled by adjusting the flow rate of carrier gas. The resultant Co3O4 powders (diameter size ≤0.8 μm) have a narrow particle size distribution and spherical or quasi-spherical shape. This novel technique has many advantages, such as continuation, efficiency, energy conservation and environmental friendly and has been used in mass production. 展开更多
关键词 combustion synthesis FLUIDIZATION cobalt oxide ultrafine powders
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