A Study on the Hydro-Liquefaction Kinetics of Shengli Lignite during the Heating-Up and Isothermal Stages under Mild Conditions

Author:

Li Liang1ORCID,Zhang Quan1,Huang Shunjin2,Yan Yanyan2,Qin Yingyue1,Huang Xiaochen1,Liu Muxin1,Wu Shiyong3,Gao Jinsheng3

Affiliation:

1. School of Materials and Chemical Engineering, Bengbu University, Bengbu 233030, China

2. School of Chemistry & Chemical Engineering, Anhui University of Technology, Ma’anshan 243002, China

3. College of Resource & Environmental Engineering, East China University of Science and Technology, Shanghai 200237, China

Abstract

Studying the hydro-liquefaction kinetics of lignite contributes to optimizing the mild liquefaction process for lignite. In this paper, the direct liquefaction performance of Shengli lignite (SL) was investigated using a H2/THN system with 4 MPa of initial pressure, and reaction kinetic models were established for the heating-up stage and the isothermal stage. The result showed that the liquefaction performance of the SL was excellent, with a conversion of 62.18% and an oil and gas (O + G) yield of 29.88% at 698.15 K. After one hour of reaction, the conversion and O + G yield were 94.61% and 76.78%, respectively. During the heating-up stage, the easily reactive part of the SL was 50.07%, and it was converted directly into oil, gas, asphaltene (AS), and preasphaltene (PA) simultaneously. There was no significant secondary hydrogenation conversion of the AS and PA products. During the isothermal stage, the hard-to-react part was predominantly converted into AS and PA, while the remaining easily reactive part continue to react completely. The conversion of AS and PA into oil and gas was a rate-controlling step during this stage. The amount of unreacted coal estimated using the model calculated in the isothermal stage was 2.98%, which was significantly consistent with the experimental value of 2.81%.

Funder

key project of Natural Science Research of Anhui Provincial Department of Education

Opening Foundation of Anhui Province Key Laboratory of Coal Clean Conversion and High-Valued Utilization

Natural Science Foundation of Anhui Province

University Natural Science Research Project of Anhui Province

Cultivation Program for the Outstanding Young Teachers of Anhui Province

Research Project for Outstanding Youth of Department of Education of Anhui Province

Excellent Young Talents Fund Program of Higher Education Institutions of Anhui Province

Scientific Research Foundation for Advanced Talents of Bengbu University

Publisher

MDPI AG

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