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Enthalpy changes during pyrolysis of biomass: Interpretation of intraparticle gas sampling

机译:生物质热解过程中的焓变:颗粒内气体采样的解释

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The results of birch wood pyrolysis are presented providing details on the gas, liquid and char mass production rates as a function of temperature from 25 °C to 500 °C. Quantitative measurements, using a Kr tracer, were taken from the center of a sphere sample enabling insight into the product gas formation profiles over the same temperature range. A unique calculation methodology was developed to combine data from TG measurements, quantitative GC measurements of the gaseous chemical species and ultimate analysis of the char product enabling the elucidation of the energetics of the pyrolysis process as a function of temperature. Precise calculations based on the measurements of gas, liquid and char production rates demonstrated the pyrolysis of birch wood transitions from endothermic to exothermic conditions at 280 °C. The reactions maintain an exothermic character until 480 °C then return to an endothermic nature at 500 °C. Changes in gas, char and liquid elemental compositions, plotted as a Van Krevelen diagram, indicated as temperature increases char and liquids trend toward lower O/C and H/C ratios. However, the gaseous H/C decreased slightly from 1.7 to 1.45 yet the O/C increased dramatically from 0.3 to 2.0.
机译:给出了桦木热解的结果,详细介绍了气体,液体和木炭的批量生产速率随温度从25°C到500°C的变化。使用Kr示踪剂从球形样品的中心进行定量测量,从而可以洞察在相同温度范围内的产品气体形成曲线。开发了一种独特的计算方法,以结合来自TG测量,气态化学物质的定量GC测量以及炭产物的最终分析的数据,从而阐明热解过程的能量随温度的变化。基于气体,液体和木炭生产率的测量结果的精确计算表明,桦木木材在280°C的温度下从吸热状态转变为放热状态时发生了热解。反应保持放热特性,直到480°C,然后在500°C返回吸热性质。气体,碳和液体元素组成的变化(以Van Krevelen图的形式绘制)表示,随着温度的升高,碳和液体趋向于降低O / C和H / C比。但是,气态H / C从1.7稍微降低到1.45,而O / C从0.3急剧增加到2.0。

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