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REACTIVITY AND GASIFICATION KINETICS OF SEMI-COKE FROM PYROLYSIS OF BIOMASS BY MICROWAVE HEATING

机译:微波加热从生物质热解的反应性和气化动力学

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In this study, a semi-coke was obtained via pyrolysis of biomass(pine wood) by microwave heating. The gasification reactivity of the semi-coke was investigated and compared with that of the semi-coke from pyrolysis by conventional heating by a thermal analyzer utilizing carbon dioxide as a gasifying agent. The results indicate that the former is more reactive at the same gasification conditions. In addition, the effects of eight inorganic additives NaOH,Na2CO3,Na2SiO3,NaCl,TiO2, HZSM-5, H3PO4 and Fe2(SO4)3) on reactivity of the semi-coke from pyrolysis of microwave heating were investigated. NaOH,Na2CO3,NaCl, Fe2(SO4)3) have made the semi-coke gasify more quickly. The other additives, however, have made gasification completion time longer more or less as compared to gasification of the bare sample. Gasification kinetics of the semi-coke from pyrolysis of biomass by microwave heating were also preliminarily studied by employing homogeneous reaction model and shrinking unreacted core model.
机译:在该研究中,通过微波加热通过生物质(松木)的热解获得半焦。研究了半焦的气化反应性,并通过使用二氧化碳作为气化剂的热分析仪通过常规加热来进行半焦化从热解的半焦。结果表明,前者在相同的气化条件下更具反应性。此外,研究了八种无机添加剂NaOH,Na 2 CO 3,Na 2 SiO 3,NaCl,TiO 2,HZSM-5,H3PO4和Fe 2(SO 4)3)对微波加热热解的半焦炭反应性的影响。 NaOH,Na2CO3,NaCl,Fe2(SO4)3)使半焦化更快地气化。然而,与裸样本的气化相比,其他添加剂使气化完成时间更长或多或少。通过使用均匀反应模型和收缩未反应的核心模型,还预先研究了通过微波加热进行微波加热的半焦的气化动力学。

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