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首页> 外文期刊>Journal of thermal analysis and calorimetry >Effects of hydrothermal treatment coupled with mechanical expression on combustion performance of Loy Yang lignite
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Effects of hydrothermal treatment coupled with mechanical expression on combustion performance of Loy Yang lignite

机译:水热处理与机械表达式对水杨木褐煤燃烧性能的影响

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摘要

The combustion characteristics and kinetics of hydrothermal treatment (HT) without addition of extra water and of HT coupled with mechanical expression (HT-ME) were investigated using thermogravimetric analysis at various heating rates. The relationships between various physicochemical properties, i.e., amounts of volatile matter and fixed carbon, specific surface area, and pore volume, and combustion performance were also investigated. The activation energy was calculated using the Kissinger-Akahira-Sunose isoconversional method. The results showed that for samples treated using HT and HT-ME, the ignition temperatures and temperatures at which the mass loss rates were at maximum, mainly because of char combustion, were significantly higher than those for raw lignite. They increased slightly with increasing processing temperature, suggesting that HT and HT-ME decrease the reactivity of Loy Yang lignite. The maximum combustion rates of the treated samples were higher than those of raw lignite and the values for the HT and HT-ME samples differed slightly from each other. The higher maximum combustion rates indicate that HT and HT-ME modify the combustion intensity of Loy Yang lignite. Furthermore, the combustion of raw lignite can be described by multistep kinetics, whereas single rate-limiting step kinetics can be used to describe the kinetics of the other samples. Average activation energies of samples treated using HT and HT-ME at 200 degrees C reached the maximum values.
机译:使用热重分析在各种加热速率下,研究了不加水和不加机械表达(HT-ME)的水热处理(HT)的燃烧特性和动力学。还研究了各种理化性质之间的关系,即挥发性物质和固定碳的量,比表面积和孔体积与燃烧性能之间的关系。活化能使用基辛格-赤平-Sunose同转化方法计算。结果表明,对于使用HT和HT-ME处理的样品,主要由于炭燃烧,着火温度和质量损失率最大的温度显着高于未加工褐煤的温度。它们随着加工温度的升高而略有增加,表明HT和HT-ME降低了Loy Yang褐煤的反应性。处理过的样品的最大燃烧速率高于原始褐煤,并且HT和HT-ME样品的值彼此略有不同。最高最大燃烧速率表明HT和HT-ME改变了Loy Yang褐煤的燃烧强度。此外,原始褐煤的燃烧可以通过多步动力学来描述,而单速率限制步动力学可以用来描述其他样品的动力学。使用HT和HT-ME在200摄氏度下处理的样品的平均活化能达到最大值。

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