DEM simulation of biomass pyrolysis in a novel interconnected screw reactor

IF 1.6 4区 工程技术 Q3 Chemical Engineering International Journal of Chemical Reactor Engineering Pub Date : 2022-12-22 DOI:10.1515/ijcre-2022-0171
Wentao Ou, Tong Liu, Chen Wang, R. Xiao, Dewang Zeng
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Abstract

Abstract A novel interconnected screw reactor was proposed to convert biomass to bio-oil and bio-char in this study. This reactor is expected to achieve direct heating of pyrolysis feedstocks and increase the reactor processing capacity through the recycling of biochar between the inner and outer screw. Here, we simulated the biomass particle flow and reaction process in this interconnected reactor by an extended discrete element method (DEM), the effect of char circulation on the reactor temperature distribution and the product yields are investigated. The results show that the char circulation increased the heating rate of biomass. At the inner and outer screw speed of 10 rpm and 1 rpm, the char circulation can reach 5.15 kg/h and the average temperature of biomass under the char circulation is about 30 °C higher than that without char circulation. The reaction simulation results show that at 500 °C, the yield of char, bio-oil and non-condensable gas are 18.9%, 40.6% and 40.5% respectively. The predicted product yields of char, bio-oil and non-condensable gas are also in good agreement with the experimental measurements.
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新型互连螺杆反应器中生物质热解的DEM模拟
摘要本研究提出了一种新型的互连螺杆反应器,用于将生物质转化为生物油和生物炭。该反应器有望实现热解原料的直接加热,并通过内外螺杆之间的生物炭回收来提高反应器的处理能力。在这里,我们通过扩展离散元法(DEM)模拟了该互联反应器中生物质颗粒的流动和反应过程,研究了焦炭循环对反应器温度分布和产物产率的影响。结果表明,焦炭循环提高了生物质的加热速率。在10 rpm和1 rpm的内外螺杆转速下,焦炭循环可达到5.15 kg/h,焦炭循环下生物质的平均温度比没有焦炭循环的生物质高约30°C。反应模拟结果表明,在500°C下,焦炭、生物油和不凝性气体的产率分别为18.9%、40.6%和40.5%。预测的焦炭、生物油和不凝性气体的产物产率也与实验测量结果吻合良好。
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来源期刊
CiteScore
2.80
自引率
12.50%
发文量
107
审稿时长
3 months
期刊介绍: The International Journal of Chemical Reactor Engineering covers the broad fields of theoretical and applied reactor engineering. The IJCRE covers topics drawn from the substantial areas of overlap between catalysis, reaction and reactor engineering. The journal is presently edited by Hugo de Lasa and Charles Xu, counting with an impressive list of Editorial Board leading specialists in chemical reactor engineering. Authors include notable international professors and R&D industry leaders.
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