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Co-firing of coal and biomass in oxy-fuel fluidized bed for CO2 capture: A review of recent advances 被引量:4

Co-firing of coal and biomass in oxy-fuel fluidized bed for CO2 capture: A review of recent advances
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摘要 The co-firing of coal and biomass in oxy-fuel fluidized beds is one of the most promising technologies for capturing CO2.This technology has attracted wide attention from academia and industry in recent years as a negative emission method to capture CO2 produced by carbon contained in biomass.In the past decades,many studies have been carried out regarding experiments and numerical simulations under oxy-fuel combustion conditions.This paper firstly briefly discusses the techno-economic viability of the biomass and coal co-firing with oxycombustion and then presents a review of recent advancements involving experimental research and computational fluid dynamics(CFD)simulations in this field.Experimental studies on mechanism research,such as thermogravimetric analysis and tube furnace experiments,and fluidized bed experiments based on oxy-fuel fluidized beds with different sizes as well as the main findings,are summarized as a part of this review.It has been recognized that CFD is a useful approach for understanding the behaviors of the co-firing of coal and biomass in oxyfuel fluidized beds.We summarize a recent survey of published CFD research on oxy-fuel fluidized bed combustion,which categorized into Eulerian and Lagrangian methods.Finally,we discuss the challenges and interests for future research. The co-firing of coal and biomass in oxy-fuel fluidized beds is one of the most promising technologies for capturing CO2. This technology has attracted wide attention from academia and industry in recent years as a negative emission method to capture CO2 produced by carbon contained in biomass. In the past decades, many studies have been carried out regarding experiments and numerical simulations under oxy-fuel combustion conditions.This paper firstly briefly discusses the techno-economic viability of the biomass and coal co-firing with oxycombustion and then presents a review of recent advancements involving experimental research and computational fluid dynamics(CFD) simulations in this field. Experimental studies on mechanism research, such as thermogravimetric analysis and tube furnace experiments, and fluidized bed experiments based on oxy-fuel fluidized beds with different sizes as well as the main findings, are summarized as a part of this review. It has been recognized that CFD is a useful approach for understanding the behaviors of the co-firing of coal and biomass in oxyfuel fluidized beds. We summarize a recent survey of published CFD research on oxy-fuel fluidized bed combustion, which categorized into Eulerian and Lagrangian methods. Finally, we discuss the challenges and interests for future research.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第10期2261-2272,共12页 中国化学工程学报(英文版)
基金 supported by the Key Program of the National Natural Science Foundation of China(51736002) the Natural Science Foundation of Jiangsu Province(BK20180386).
关键词 OXY-FUEL combustion CO-FIRING of COAL and BIOMASS OXY-FUEL fluidized BED CFD simulation Oxy-fuel combustion Co-firing of coal and biomass Oxy-fuel fluidized bed CFD simulation
作者简介 Corresponding author:Wenqi Zhong,E-mail address:wqzhong@seu.edu.cn.
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