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Thermogravimetric study of the pyrolysis characteristics and kinetics of coal blends with corn and sugarcane residues

机译:玉米和甘蔗渣混煤热解特性和动力学的热重研究

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This paper investigates the non-isothermal thermokinetics of the co-pyrolysis of sugarcane bagasse and corn residue blended with coal. The individual devolatilization behaviour of each of the fuels obtained separately was compared with the behaviour of the biomass blends with coal at various mix ratios. Possible synergistic behaviour that points to the existence of chemical interactions during pyrolysis between the coal and biomass fractions of the blends could thus be quantified. Synergistic interactions in the blends resulted in higher than expected volatile yields. The interactions occurred between 300 °C and 500 °C, corresponding to the end of biomass devolatilization and the start of coal decomposition. Isoconversional kinetic analysis revealed that apparent activation energy values varied between 165-180, 162-190, 160-175, and 225-260 kj mol~(-1) for sugarcane bagasse, corn cobs, corn stover, and coal in the 0.1 to 0.8 conversion range. A comparison of E(α) for single fuels and coal-biomass blends gave further evidence of synergistic behaviour as demonstrated by larger variation in E(α) during the decomposition of the blends, compared to the individual fuels.
机译:本文研究了甘蔗渣和玉米渣与煤混合共热解的非等温热力学。将分别获得的每种燃料的各自的脱挥发分行为与不同混合比下的煤与生物质混合物的行为进行了比较。从而可以指出在共混物中煤和生物质部分之间热解过程中化学相互作用的存在的可能的协同行为。共混物中的协同相互作用导致挥发物收率高于预期。相互作用发生在300°C和500°C之间,对应于生物质脱挥发分的结束和煤分解的开始。同向转化动力学分析表明,甘蔗渣,玉米芯,玉米秸秆和煤在0.1-120 kj mol〜(-1)之间的表观活化能值在165-180、162-190、160-175和225-260 kj mol〜(-1)之间变化。 0.8转换范围。单一燃料与煤-生物质混合物的E(α)的比较提供了进一步的协同行为证据,与单个燃料相比,混合物的分解过程中E(α)的变化更大,从而证明了这种协同行为。

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