首页 | 本学科首页   官方微博 | 高级检索  
     检索      

中温沥青超声萃取物的热解特性与分子结构间关联性的FTIR解析
引用本文:胡朝帅,徐允良,褚宏宇,程俊霞,高丽娟,朱亚明,赵雪飞.中温沥青超声萃取物的热解特性与分子结构间关联性的FTIR解析[J].光谱学与光谱分析,2022,42(3):889-895.
作者姓名:胡朝帅  徐允良  褚宏宇  程俊霞  高丽娟  朱亚明  赵雪飞
作者单位:1. 辽宁科技大学化工学院,辽宁 鞍山 114051
2. 辽宁科技大学,辽宁省化学冶金重点实验室,辽宁 鞍山 114051
基金项目:辽宁省教育厅优秀青年科技人才项目;辽宁科技大学优秀人才培养项目;国家自然科学基金;辽宁科技大学研究生教育改革与科技创新创业项目;辽宁省自然科学基金
摘    要:沥青分子结构和沥青热转化行为的调控是制备高品质沥青基炭材料的关键.为进一步明晰沥青热解行为与沥青分子结构间的关联性,选用8种有机溶剂对中温沥青(AGM P)在常温下进行超声萃取处理得到8种萃取物.利用PeakFit v4.12软件对各种萃取物的红外光谱吸收峰700~900,1000~1800,2800~3000和300...

关 键 词:超声萃取  FTIR分峰拟合  分子结构参数  热解特性
收稿时间:2021-01-31

FTIR Analysis of the Correlation Between the Pyrolysis Characteristics and Molecular Structure of Ultrasonic Extraction Derived From Mid-Temperature Pitch
HU Chao-shuai,XU Yun-liang,CHU Hong-yu,CHENG Jun-xia,GAO Li-juan,ZHU Ya-ming,ZHAO Xue-fei.FTIR Analysis of the Correlation Between the Pyrolysis Characteristics and Molecular Structure of Ultrasonic Extraction Derived From Mid-Temperature Pitch[J].Spectroscopy and Spectral Analysis,2022,42(3):889-895.
Authors:HU Chao-shuai  XU Yun-liang  CHU Hong-yu  CHENG Jun-xia  GAO Li-juan  ZHU Ya-ming  ZHAO Xue-fei
Institution:1. College of Chemical Engineering, University of Science and Technology Liaoning, Anshan 114051, China 2. Key Laboratory of Chemical Metallurgy Liaoning Province, University of Science and Technology Liaoning, Anshan 114051, China
Abstract:The regulation of molecular structure and thermal conversion behavior of coal tar pitch is the key to preparing high-quality coal tar pitch-based carbon materials. In order to further clarify the relationship between pyrolysis behavior and molecular structure of coal tar pitch, 8 kinds of extracts derived from Medium temperature pitch (AGMP) were extracted by ultrasonic extraction with 8 kinds of organic solvents at room temperature in this paper. The PeakFit v4.12 software was used to perform peak fitting the infrared spectra of the extracts in four regions of 700~900, 1 000~1 800, 2 800~3 000 and 3 000~3 100 cm-1 to achieve the fine structure information about various functional groups. In addition, six molecular structure parameters (I1-I6) were introduced to characterize the relationship between molecular structure and pyrolysis activation energy of the extracts. FTIR spectra analysis shows that the 8 extracts are complex compounds composed of condensed aromatic ring structures mainly comprised of aliphatic hydrocarbon side chains containing oxygen and nitrogen and other heteroatoms. Moreover, due to the difference in the extractant’s structure, the extract’s molecular structure parameters are also slightly different. The extract obtained from the linear structure extractant has a higher content of chain hydrocarbons (I5), and the extract obtained from the ring structure extractant has more aromatic rings substituted structures (I6). Thermogravimetric analysis (TGA) was used to study the thermal weight loss behavior of 8 extracts at different heating rates (3, 6, 10, 15 K·min-1). Under the condition of equal conversion rate without considering the reaction mechanism, the pyrolytic activation energy (Ea) were calculated and analyzed using the Flynn-Wall-Ozawa method and Kissingr-Akahira-Sunose method. The results indicated that the eight extracts’ pyrolytic activation energies ranged from 78 to 116 kJ·mol-1, which are closely related to the structure and content of functional groups. The structural parameters of the extracts obtained by IR quantitative are correlated with the pyrolysis activation energy. The fitting results of the one-element linear equation Ea=f(Ii) between the structural parameters of the extracts and the pyrolysis activation energy found that the aromaticity index (I3) and the degree of branching (I5) are the two main indicators that determine the pyrolysis activation energy of the extracts. The fitting results of positive and negative correlation between the pyrolysis activation energy with every single index (Ii) indicate the difficulty of the structure being destroyed by pyrolysis. Considering the interaction of various infrared structural parameters, the fitting relationship model between the Ea of AGMP extracts and the infrared spectral structure indexes was shown as followed: Ea=-4 294.53I1+73 812.16I2+207 673.32I3-20 324.20I4-168.56I5+857.86I6. The results, which combined analysis of FTIR spectra, reveal more details about thermal characterization and kinetic characterization and they can be expected to lead to a well-understood coal tar pitch’s pyrolysis.
Keywords:Ultrasonic extraction  FTIR peak fitting  Molecular structure parameters  Pyrolysis characteristics  
本文献已被 万方数据 等数据库收录!
点击此处可从《光谱学与光谱分析》浏览原始摘要信息
点击此处可从《光谱学与光谱分析》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号