Characteristics of Pore Structure in the Evaporated Stage of Wood-Derived Carbon

被引:0
|
作者
Yang, Tian-Shu [1 ]
Hu, Jin-Bo [1 ]
Yu, Zhao-Yang [1 ]
Liu, Gong-Gang [1 ]
Liu, Yuan [1 ]
Zhang, Ming-Long [1 ]
Liao, Yuan-Yuan [1 ]
Chang, Shan-Shan [1 ]
机构
[1] Cent South Univ Forestry & Technol, Coll Mat Sci & Engn, Changsha 410004, Peoples R China
基金
中国国家自然科学基金;
关键词
Water Loss; Pore Variation; Mesopores and Macropores; Fractal Model; SURFACE FRACTAL DIMENSION; SIZE DISTRIBUTION; FIBERS;
D O I
10.1166/sam.2022.4244
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Major water loss in the first stage of wood-derived carbon preparation had a direct impact on pore structure during the subsequent pyrolysis of biochar materials. To explore the changes in pore space at this stage, poplar was used as the subject of this study. The pore morphology before and after water evaporation was quantitatively characterized by scanning electron microscope, nitrogen adsorption method, and mercury injection method. Both the fractal dimensions of the multistage pores were obtained by the Frenkel-Halsey-Hill model and the thermodynamic relationship model. The results showed as follows: the adsorption isotherms were presented the mixed type of II and IV after supercritical drying, indicating the mesopores and macropores of wood. The adsorption isotherms after conventional drying were characterized a type II, which was inferred to the reduced mesopores compared to supercritical drying. The hysteresis loops of all wood samples were examined for the H3 type, which was deduced from the presence of slit-like pores. After treatment at 103 ?? 2 ??C, the porosity and its connectivity properties are reduced by the mercury pressure data. For <50 nm the pore size distribution of the samples shows a shoulder peak at around 6.5 nm. Simultaneously, the pore structure is IP: 14.98.160.66 On: Fri, 01 Jul 2022 12:44:37 significantly deformed and the pore size disribution producs smaller peakat 3014 and 12510 nm. The pore Copyright: American Scientific Publishers fractal dimension increases in the 50 nm stage. The fractal dimension of pores decreases when the pore size Delivered by Ingenta is 50 nm???5 ??m. Stability of the pore fractal dimension in the pore size 50 nm stage. This indicates that the conventional drying treatment made the micropore complexity increase, and leads to a reduced or invariable pore structure complexity for the >50 nm. The fractal analysis could assist in better analyzing the changes of pore structure and provide a new perspective for studying the pore structure in the carbonation stage.
引用
收藏
页码:595 / 602
页数:8
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