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Comparison of Combustion and Pyrolysis Behavior of the Peanut Shells in Air and N2: Kinetics, Thermodynamics and Gas Emissions

机译:花生壳在空气和N2中的燃烧和热解作业的比较:动力学,热力学和气体排放

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摘要

The influences of four heating rates on the combustion and pyrolysis behavior in the N2 and air atmosphere were investigated by the Fourier transform infrared spectrometry (FTIR) and thermogravimetric (TG) analysis. the distributed activation energy model (DEAM) and Flynn-Wall-Ozawa (FWO) were used to estimate Ea and A, ΔH, ΔG and ΔS. Experimental results showed that the similar thermal behavior emerged, but the temperatures in the air and N2 atmospheres representing the end of the reaction were about 500 °C and 550 °C, respectively. The results of FTIR showed the peak positions were basically the same, but the concentrations of aromatics, aldehydes and ketones produced by pyrolysis in the N2 atmosphere were higher. When the heating rate was 20 K/min, the comprehensive combustion parameters were 56.442 and 6.871 × 10−7%2/(min2• K3) in the air and N2 atmospheres, respectively, indicating that the peanut shells had great potential to become bioenergy.
机译:通过傅里叶变换红外光谱(FTIR)和热重度(TG)分析研究了四种加热速率对N 2和空气气氛中的燃烧和热解作业的影响。分布式激活能量模型(DEAM)和Flynn-Wall-ozawa(FWO)用于估计EA,ΔH,ΔG和ΔS。实验结果表明,出现了相似的热行为,但是空气中的温度和表示反应末端的N 2大气中的温度分别为约500℃和550℃。 FTIR的结果表明峰值位置基本相同,但通过在N 2气氛中热解产生的芳烃,醛和酮的浓度较高。当加热速率为20 k / min时,综合燃烧参数分别为空气和N2大气压的56.442和6.871×10-7%2 /(Min2•K3),表明花生壳具有巨大的潜力成为生物能源。

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