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无烟煤热解过程中表面官能团的演变 被引量:17

Evolution of Surface Function Group During Anthracite Coal Pyrolysis
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摘要 FTIR和光谱的曲线拟合方法被用于研究无烟煤在高温O_2/N_2和O_2/CO_2气氛下热解时表面官能团的演变。为了揭示不同温度和气氛下热解过程中煤焦结构的变化规律,热解在不同的火焰环境(1670 K和1770 K,O_2/H_2O/CO_2/N_2)下开展。通过对比分析不同煤焦的红外光谱,得出以下结论:相比于N_2焦,CO_2焦含有更长的脂肪链或烷基侧链;由于煤焦表面化学吸附的CO_2在高温下与芳香环发生的裂解反应可以生成脂肪族共轭C=O,这使得CO_2焦含有更多的含氧官能团结构,同时也使得CO_2焦的芳香度略低于N_2焦。 FTIR and curve-fitting method were used to study the evolution of surface functional groups of anthracite coal during Pyrolysis in O2/N2 and O2/CO2 atmosphere at high temperature. In order to reveal the evolution mechanism of char structure during pyrolysis in different temperatures and atmospheres, Pyrolysis experiments were carried out in different flame environments (1670 K and 1770 K, O2/H2O/CO2/N2). Through the comparative analysis of different spectra, the following results are got: Compared to char-N2, char-CO2 contained longer aliphatic chain or alkyl side chain. The cracking reaction of CO2 absorbed in char surface and aromatic rings could generate more aliphatic conjugated C=O, which resulted that char-CO2 contained more O-containing structure and lead that the aromaticity of char-CO2 was lower than that of char-N2.
出处 《工程热物理学报》 EI CAS CSCD 北大核心 2013年第5期969-972,共4页 Journal of Engineering Thermophysics
基金 国家科技支撑计划资助项目(No.2011BAC05B03) 国家高技术研究发展计划资助项目(No.2009AA052315) 国家自然科学基金重点项目(No.50936001) 国家基金委创新研究群体基金(No.50721008)
关键词 O_2 CO_2 无烟煤 煤焦 表面官能团 FTIR O2/CO2 anthracite coal char surface function group FTIR
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  • 1Buhre B J P, Elliott L K, Sheng C D, et al. Oxy-Fuel Combustion Technology for Coal-Fired Power Generation [J]. Progress in Energy and Combustion Science, 2005, 31(4): 283-307. 被引量:1
  • 2Chen L, Yong S Z, Ghoniem A F. Oxy-Fuel Combustion of Pulverized Coal: Characterization, Fundamentals Sta- bilization and CFD Modeling [J]. Progress in Energy and Combustion Science, 2012, 38(2): 156 214. 被引量:1
  • 3Borrego A G, A1varez D. Comparison of Chars Obtained under Oxy-Fuel and Conventional Pulverized Coal Com- bustion Atmospheres [J]. Energy Fuels, 2007, 21(6): 3171-3179. 被引量:1
  • 4Rathnam R K, Eillott L K, Wall T F, et al. Differences in Reactivity of Pulverised Coal in Air (O2/N2) and Oxy- el (O2/CO2) Conditions [J]. Fuel Processing Technol- ogy, 2009. 90(6): 797-802. 被引量:1
  • 5Brix J, Jensen P A, Jensen A D. Coal Devolatilization and Char Conversion Under Suspension Fired Conditions in O2/N2 and O2/CO2 Atmospheres [J]. Fuel, 2010, 89(11): 3373-3380. 被引量:1
  • 6Kobayashi H, Howard J B, Sarofim A F. Coal Devolatiliza- tion at High Temperatures [J]. Symposium (International) on Combustion, 1977, 16(1): 411 425. 被引量:1
  • 7Vrhegyi G, Szab6 P, Jakab E, et al. Mathematical Mod- eling of Char Reactivity in Ar-O2 and CO2-O2 Mixtures [J]. Energy & Fuels, 1996, 10(6): 1208-1214. 被引量:1
  • 8Painter P C, Snyder R W, Starsinic M, et al. Concerning the Application of FT-IR to the Study of Coal: A Criti- cal Assessment of Band Assignments and the Application of Spectral Analysis Programs[J]. Applied Spectroscopy, 1981, 35:475-485. 被引量:1
  • 9Ibarra J, Mufioz E, Moliner R. FTIR Study of the Evo- lution of Coal Structure During the Coalification Process [J]. Organic Geochemistry, 1996, 24(6/7): 725-735. 被引量:1

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