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Thermal Characteristics and Kinetic Analysis of Woody Biomass Pyrolysis in the Presence of Bifunctional Alkali Metal Ceramics

机译:双官能碱金属陶瓷在存在下木质生物质热解的热特性和动力学分析

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摘要

Effects of alkali ceramics, Na2ZrO3 (NZ) and Li4SiO4 (LS), were quantified in the catalytic pyrolysis of sawdust, using thermogravimetric analysis and kinetic modeling. Results indicated that the alkali ceramics were able to initiate thermal decomposition at lower temperatures and enhanced H-2 yield. The mean activation energies estimated by Kissinger-Akahira-Sunose (KAS), Flynn-Wall-Ozawa (FWO) and Friedman methods were within the range of 162-166, 114-116, 112-117 kJ mol(-1) for sawdust (SD), sawdust mixed with Li4SiO4 (SD-LS) and sawdust mixed with Na2ZrO3 (SD-NZ), respectively. The theoretical and experimental master plots constructed for SD closely match with theoretical master plot corresponding to three-dimensional diffusion (Ginstling-Brounshtein equation) (D4) reaction model. The SD-LS and SD-NZ samples followed first-order (F1) reaction model at lower conversions and shifted from F1 to three-dimensional diffusion (D4) reaction model at higher conversions.
机译:碱陶瓷,Na 2 Zro3(NZ)和Li4SiO4(LS)的影响在锯末催化热解中定量,采用热重分析和动力学建模。 结果表明,碱陶瓷能够在较低温度下引发热分解,并增强H-2产量。 由基辛格-Akahira-Sunose(KAS),Flynn-Wall-Ozawa(FWO)和弗里德曼方法估计的平均激活能量在162-166,114-116,112-117 kJ摩尔(-1)的范围内,用于锯末 (SD),锯末与Li4SiO4(SD-LS)和锯末分别与Na 2 Zro3(SD-NZ)混合。 为SD构建的理论和实验母图与对应于三维扩散(Ginstling-Broounshtein方程)(D4)反应模型的理论主图匹配。 SD-LS和SD-NZ样品在较低转换下遵循一阶(F1)反应模型,并在较高转换下从F1转移到三维扩散(D4)反应模型。

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