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Steam gasification behavior of tropical agrowaste: A new modeling approach based on the inorganic composition

机译:热带种植废料的蒸汽气化行为:一种基于无机成分的新建模方法

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The steam gasification and co-gasification reactivity and kinetics of coconut shells, oil palm shells and bamboo guadua were studied from an isothermal thermogravimetric analysis, with temperatures ranging from 750 degrees C to 900 degrees C, and steam partial pressures from 3 to 10 kPa. In the analyzed experimental range, inorganics were identified as the most influential parameter in biomass reactivity and kinetics. Accordingly, a new modeling approach is proposed to predict the gasification behavior of lignocellulosic agrowaste based on their inorganic composition. A good agreement between the experimental and modeled data was found, showing that the proposed approach is suitable for the description and prediction of the gasification behavior of biomasses with different macromolecular structure and within a wide range of inorganic composition, and H/C and O/C ratios near 1.5 and 0.8 respectively. This kinetic model could constitute a valuable tool for reactor design and scale-up of steam gasification facilities using tropical lignocellulosic feedstocks.
机译:通过等温热重分析研究了椰子壳,油棕壳和竹瓜的蒸汽气化和共气化反应性和动力学,温度范围为750摄氏度至900摄氏度,蒸汽分压为3至10 kPa。在分析的实验范围内,无机物被确定为生物质反应性和动力学中最具影响力的参数。因此,提出了一种新的建模方法,以基于木质纤维素增稠剂的无机成分预测其气化行为。在实验数据和模型数据之间找到了很好的一致性,表明所提出的方法适用于描述和预测具有不同大分子结构且在宽范围的无机组成,H / C和O /下的生物质的气化行为。 C比分别接近1.5和0.8。该动力学模型可以为反应器设计和使用热带木质纤维素原料的蒸汽气化设施的规模放大提供有价值的工具。

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