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Assessment of Devolatilization Schemes in Predicting Product Yields of Biomass Fast Pyrolysis

机译:脱挥发分方案评估生物质快速热解产物收率的评估

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Three devolatilization schemes to simulate biomass fast pyrolysis were tested and validated in this study. Fast pyrolysis is an attractive process in converting lignocellulosic biomass to valued products. Accurate numerical models can help understand the conversion process and be used for reactor design and optimization. This study used a numerical model that considered the multiphase hydrodynamics and chemical reactions of biomass fast pyrolysis. The gas and solid phases were simulated by using a multifluid model that considered multiple species in each phase. Three devolatilization schemes for biomass fast pyrolysis were incorporated into the model to simulate the tempo-spatial evolutions of all phases and species. The predicted product yields were compared and validated using experimental data. It was found that the best predictions were given by a scheme that used three components to represent biomass and also considered organic liquid cracking into gas. Under the reactor conditions studied, all three devolatilization schemes predicted relatively fast decomposition of biomass and the reactor hydrodynamics was not significantly affected by the specifics of the devolatilization schemes. Overall, an accurate devolatilization scheme to simulate the chemical changes of biomass particles is essential to predicting the product yield of biomass fast pyrolysis at the reactor scale.
机译:在本研究中测试并验证了三种模拟生物量快速热解的脱挥发分方案。快速热解是将木质纤维素生物质转化为有价值产品的有吸引力的过程。准确的数值模型可以帮助理解转化过程,并用于反应堆的设计和优化。这项研究使用的数值模型考虑了生物质快速热解的多相流体动力学和化学反应。气相和固相通过使用在每个相中考虑多个物种的多流体模型进行模拟。将用于生物量快速热解的三种脱挥发分方案纳入模型,以模拟所有阶段和物种的时空演变。比较了预测的产品产量,并使用实验数据进行了验证。发现最好的预测是通过使用三个组分表示生物质的方案给出的,并且还考虑了有机液体裂解成气体的方案。在研究的反应器条件下,所有三种脱挥发分方案均预测了生物质的相对快速分解,并且脱挥发分方案的具体特征并未显着影响反应器的流体动力学。总体而言,模拟生物质颗粒化学变化的精确脱挥发分方案对于预测反应器规模的生物质快速热解的产物收率至关重要。

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