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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Combustion behaviors of spent mushroom substrate using TG-MS and TG-FTIR: Thermal conversion, kinetic, thermodynamic and emission analyses
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Combustion behaviors of spent mushroom substrate using TG-MS and TG-FTIR: Thermal conversion, kinetic, thermodynamic and emission analyses

机译:用TG-MS和TG-FTIR燃烧蘑菇基材的燃烧行为:热转换,动力学,热力学和排放分析

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摘要

The present study systematically investigated the combustion characteristics of spent mushroom substrate (SMS) using TG-MS (thermogravimetric/mass spectrometry) and TG-FTIR (thermogravimetric/Fourier transform infrared spectrometry) under five heating rates. The physicochemical characteristics and combustion index pointed to SMS as a promising biofuel for power generation. The high correlation coefficient of the fitting plots and similar activation energy calculated by various methods indicated that four suitable iso-conversional methods were used. The activation energy varied from 130.06 to 192.95 kJ/mol with a mean value of 171.49 kJ/ mol using Flynn-Wall-Ozawa and decreased with the increased conversion degree. The most common emissions peaked at the range of 200-400 degrees C corresponding to volatile combustion stage, except for CO2, NO2 and NO. The peak CO2 emission occurred at 439.11 degrees C mainly due to the combustion of fixed carbon.
机译:本研究通过在五种加热速率下系统地研究了废蘑菇基板(SMS)的燃烧特性(热量分布/质谱)和TG-FTIR(热标分流/傅里叶变换红外光谱法)。 物理化学特征和燃烧指标指向短信作为发电的有希望的生物燃料。 通过各种方法计算的配合图和类似的活化能量的高相关系数表明使用了四种合适的ISO-一致的方法。 活化能量从130.06至192.95 kJ / mol变化,平均值为171.49kJ / mol,使用Flynn-Wall-ozawa降低,转化程度增加。 除CO2,NO2和NO除外,最常见的排放量在200-400摄氏度的范围内达到挥发性燃烧阶段。 峰值二氧化碳发射在439.11摄氏度下发生,主要是由于固定碳的燃烧。

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