Fu Wenming, Zhang Yaning, Cui Longfei, Liu Hui, Maqsood Tarique
School of Energy Science and Engineering, Harbin Institute of Technology (HIT), Harbin 150001, China.
School of Energy Science and Engineering, Harbin Institute of Technology (HIT), Harbin 150001, China.
Bioresour Technol. 2023 Feb;369:128378. doi: 10.1016/j.biortech.2022.128378. Epub 2022 Nov 21.
Microwave-assisted heating is an effective heating method for thermochemical conversion of biomass. In this study, experimental syngas production from microwave-assisted air gasification of biomass in a fluidized bed reactor at different gasification temperatures, equivalence ratios and silicon carbide loads, was studied and reported. The results showed that the highest syngas yield (78.2 wt%), higher heating value (6.3 MJ/Nm) and cold gas efficiency (81.8 %) were obtained at gasification temperature of 900 °C, equivalence ratio of 0.35 and silicon carbide load of 30 g, and the gasification temperature had significant influence on the syngas production. Microwave-assisted heating showed positive effect on tar reduction, i.e., the tar content at 900 °C (2.1 wt%) in this study was even lower than the tar content (3.2 wt%) from catalytic electrical air gasification of rice husk at 950 °C. Generally, the introduction of microwave-assisted heating showed positive effect on biomass gasification.
微波辅助加热是生物质热化学转化的一种有效加热方法。在本研究中,对在流化床反应器中不同气化温度、当量比和碳化硅负载量下生物质微波辅助空气气化制取合成气进行了实验研究并报告了结果。结果表明,在气化温度900℃、当量比0.35和碳化硅负载量30g时,合成气产率最高(78.2 wt%)、高位发热量最高(6.3 MJ/Nm)且冷煤气效率最高(81.8%),并且气化温度对合成气的产生有显著影响。微波辅助加热对减少焦油有积极作用,即本研究中900℃时的焦油含量(2.1 wt%)甚至低于稻壳在950℃下催化电空气气化的焦油含量(3.2 wt%)。总体而言,引入微波辅助加热对生物质气化有积极作用。