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Fuel properties and combustion kinetics of hydrochar derived from co-hydrothermal carbonization of tobacco residues and graphene oxide

机译:烟草残基与石墨烯烃碳化的烃源性燃料特性及燃烧动力学

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摘要

Tobacco residues produced from domestic cigarette industry are an abundant biomass resource which have the potential to be exploited and utilized as solid fuel. In the present study, a comprehensive investigation was performed on the fuel properties of hydrochars which were derived from hydrothermal carbonization (HTC) of tobacco residues in the presence of minute amount of graphene oxide (GO). The effect of HTC temperature and residence time on the chemical compositions, structure, and combustion performance of the resultant GO-assisted hydrochars was evaluated. The carbon content and energy densification increased with the hydrothermal treatment intensity accompanying with the decline in hydrogen and oxygen contents. Meanwhile, the combustion behavior of hydrochars was analyzed based on the thermogravimetric curves and isoconversional Kissinger-Akahira-Sunose method. The activation energy varied with conversion degrees for the tested samples, indicating the complexity of hydrochar combustion. Notably, the decreased activation energies for GO-assisted hydrochars may indicate the catalytic role of GO during the combustion process of components in hydrochars.
机译:由国内卷烟行业生产的烟草残留物是一种丰富的生物量资源,具有可利用和用作固体燃料的潜力。在本研究中,对富含烟草残留物的水热碳化(HTC)的燃料特性进行了综合性研究,在微量石墨烯氧化物(GO)中衍生自烟草残基的水热碳化(HTC)。评价HTC温度和停留时间对所得助核化学组成,结构和燃烧性能的影响。碳含量和能量致密化随着伴随氢气和氧含量下降的水热处理强度而增加。同时,基于热重曲线和异组曲折的吻合法分析了水质的燃烧行为和异核曲线 - 阳光方法。活化能量随着测试样品的转化度而变化,表明氢碳燃烧的复杂性。值得注意的是,用于去辅助水质的可激活能量降低可能表明在Hydrochars中组分的燃烧过程中的催化作用。

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