Effects of torrefaction pretreatment on fuel quality and combustion characteristics of biomass: A review

加热 生物量(生态学) 环境科学 制浆造纸工业 可再生能源 燃烧热 生物燃料 惰性气体 燃烧 废物管理 生物能源 材料科学 化学 热解 农学 工程类 复合材料 有机化学 电气工程 生物
作者
Xu Yang,Zhong Zhao,Yaying Zhao,Li Xu,Shuo Feng,Zhuozhi Wang,Lei Zhang,Boxiong Shen
出处
期刊:Fuel [Elsevier BV]
卷期号:358: 130314-130314 被引量:38
标识
DOI:10.1016/j.fuel.2023.130314
摘要

Biomass is renewable and clean energy source, the utilization of biofuel derived from biomass is an important strategy to reduce CO2 emissions and mitigate the greenhouse effect during power generation process. Biomass poses obstacles to its wide utilization in industry because of the self-characteristics such as low calorific value, high water content, poor grindability and easy corrosion decomposition. In the modern biomass conversion technologies, torrefaction pretreatment technology has attracted much attention. Torrefaction technology can generally be divided into dry torrefaction and wet torrefaction. Meanwhile, the dry torrefaction can be divided into inert torrefaction and oxidative torrefaction. From the perspective of economy and practicality, oxidative torrefaction has more prospects and advantages, such as high efficiency, low energy consumption, short pretreatment duration, et al. Based on the existing researches, a review was conducted on the field of biomass torrefaction pretreatment. Firstly, the detailed effects of torrefaction temperature, atmosphere, pressure and duration on the compositional and elemental variations of biomass were explored. Moreover, the efficiency analysis of inert torrefaction, oxidative torrefaction and flue gas torrefaction for different type biomass were also summarized and reviewed systematically. In this paper, the fuel quality and emission characteristics of torrefied biomass during thermal conversion process were also discussed respectively. Thence, the challenges and prospects of biomass torrefaction technology for the future development were also analyzed. Finally, future directions and technological challenges associated with the torrefaction process are proposed and its application potential is also evaluated.
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