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钾盐对烟草燃烧热解特性的作用机制

Functional mechanism of potassium salts on combustion and pyrolysis of tobacco

  • 摘要: 为深入揭示钾盐在烟草燃烧热解过程中的作用机制,利用同步热分析仪(STA)、全自动物理吸附分析仪(APA)、微燃烧量热仪(MCC)和实时升温红外光谱仪(RTR-IR)表征分析了柠檬酸钾和硝酸钾对烤烟烟叶燃烧热解特性的影响。结果表明:①柠檬酸钾和硝酸钾对烟草燃烧热解起双重作用,即催化加速低温(230℃~360℃)下生物大分子的降解,阻碍延缓高温(370℃~550℃)下焦炭的降解。②钾盐通过降低焦炭的总孔体积和比表面积来提高焦炭致密性。③钾离子催化加速烟草中含氧有机官能团(O-H、C-O和C=O)的降解,保护延缓无氧有机官能团(C=C、C-H、芳基等)的降解。④硝酸钾中硝酸根离子会氧化加速烟草中C-H的降解。

     

    Abstract: In order to investigate the functional mechanism of potassium salts on combustion and pyrolysis of tobacco, the influences of potassium citrate and potassium nitrate on the characteristics of combustion and pyrolysis of flue-cured tobacco were analyzed by synchronous thermal analyzer (STA), automated physisorption analyzer (APA), microscale combustion colorimeter (MCC) and real-time temperature-rising infrared spectrometer (RTR-IR). The results showed that:1) Both potassium citrate and potassium nitrate had dual effects on the combustion and pyrolysis of tobacco, which were the acceleration of the degradation of tobacco's biopolymers at low temperatures (230℃-360℃) and deceleration of the coke pyrolysis at high temperatures (370℃-550℃). 2) The addition of potassium salts reduced the total pore volume and specific surface area of the coke, thus improving the compactness of coke. 3) Potassium ion catalyzed the degradation of oxygen-containing organic functional groups (O-H, C-O and C=O), while retarded the degradation of oxygen-free organic functional groups (C-H bond, C=C bond and aromatic moieties). 4) The nitrate ion from potassium nitrate displayed an oxidation acceleration effect on the decomposition of C-H moiety in flue-cured tobacco.

     

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