烧焦
热解
生物炭
化学
盐(化学)
比表面积
熔盐
生物量(生态学)
打赌理论
化学工程
无机化学
有机化学
催化作用
农学
生物
工程类
作者
Bin Li,Jiazhen Tang,Xing Xie,Juntao Wei,Deliang Xu,Lei Shi,Kuan Ding,Shu Zhang,Xun Hu,Shihong Zhang,Dongjing Liu
出处
期刊:Fuel
[Elsevier BV]
日期:2022-08-31
卷期号:331: 125747-125747
被引量:73
标识
DOI:10.1016/j.fuel.2022.125747
摘要
Pyrolysis of wheat straw in Li2CO3-K2CO3 binary salt was conducted in a fixed-bed reactor, the char structure evolution under different pyrolysis temperatures was analyzed. The results showed that the biochar yield decreased with temperature increasing, the addition of Li2CO3-K2CO3 salt enhanced heat transfer and promoted charring reactions to form more char. At 450–550 °C, the changes in biochar structure from molten salt pyrolysis showed similar trend with those from conventional pyrolysis, the C content increased and the H and O contents decreased, the aromatization degree of biochar increased, the surface functionalities on char surface all decreased. At 600–700 °C, the effect of temperature on biochar structure from molten salt pyrolysis showed significantly different trend. The increase of temperature further decreased H content, but increased O content and decreased C content, the molar ratio of H/C decreased while that of O/C increased. The etching of K salt consumed more C and retained more O in char structure, thus caused insignificant increase in aromatization level of biochar and retaining more CO/COC and –OH functionalities. More porous structures were formed due to the enhanced activation effect of molten salt at higher temperature. The BET surface area of 700MBC could achieve 568.20 m2/g. A functionalized mesoporous biochar with enriched O-containing groups was thus obtained from molten salt pyrolysis of biomass.
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