tar(计算)
木质素
热解
化学
去壳
苯酚
生物量(生态学)
纤维素
木质纤维素生物量
有机化学
制浆造纸工业
加氢脱氧
废物管理
农学
催化作用
植物
程序设计语言
计算机科学
工程类
选择性
生物
作者
Gang Li,Zihan Wang,Longling Zuo,Tong Zhang,Wenbo Xiao,Tenglun Yang,Obid Tursunov,Nan Zhao,Yuguang Zhou
标识
DOI:10.1016/j.biortech.2024.131259
摘要
The utilization of biomass pyrolysis is a crucial approach for sustainable development. This study used the typical biomass of pine (PI), rice husk (RH), and corn straw (ST) as feedstocks to evaluate the pyrolysis mechanisms, features and conversion mechanisms of the phenol tar product. The phenolic gaseous products were more trailing in ST, which mostly concentrated around 320–500 °C. Primary phenol tar is produced from lignin through the homolytic cleavage of β-O and α-O, and C-C bond breakage, primarily occurring before 550 °C. As the degree of aromatization increases, the oxygenates progressively deoxygenate, and the primary tar demethoxylates to form secondary tar as the temperature increases. The pyrolysis of cellulose produces H radicals, which aid the transformation of lignin into phenol tar. This study can provide a theoretical basis for biomass pyrolysis to select the appropriate process parameters to improve the quality of bio-oil and regulate phenol tar products.
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