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volume 21 issue 6 pages 4481-4496

Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale

Shaotao Xu 1
Xiaoshu Lü 2, 3, 4
HAN WANG 2, 5
Youhong Sun 1, 2, 5, 6
Shi-jie Kang 7
Zhendong Wang 8
Wei Guo 2, 5, 6
Sunhua Deng 2, 6
Publication typeJournal Article
Publication date2024-12-01
scimago Q1
wos Q1
SJR1.219
CiteScore9.4
Impact factor6.1
ISSN16725107, 19958226
Abstract
The oxygen initiation process, one of the key processes in the early stage of the autothermic pyrolysis in-situ conversion technology, has not been deeply investigated, which seriously limits its development. In this study, the reaction behaviors, kinetic parameters, heat and product release characteristics during the isothermal oxygen initiation process of Huadian oil shale in O2/N2 mixtures with different oxygen concentrations and initiation temperatures were investigated via TG/DSC-FTIR. The results show that the samples exhibit three different reaction behaviors during the initiation stage, consisting of two main parts, i.e., the oxidative weight-gain and the oxidative reaction phases. The former phase is mainly characterized by the oxygen addition reaction that produces oxidizing groups which increase the sample mass. And the latter stage consists of two main subreactions. The first subreaction involves the oxidative cracking and pyrolysis of oxidizing groups and kerogen to produce fuel deposits such as residual carbon, while the second subreaction focuses on the oxidation of the resulting fuels. Furthermore, increasing the oxygen concentration significantly promotes the above reactions, leading to an increase in the reaction intensity and reaction rate. Owing to the combined effect of oxygen concentration and residual organic matter content, the total heat release increases with the increasing initiation temperature and reaches its maximum at 330–370 °C. In addition, the preheating stage primarily produces hydrocarbon gases, while the initiation stage predominantly generates CO2. As the preheating temperature increases, the CO2 output intensifies, the required reaction time shortens, and the release becomes more concentrated. Based on these findings, a reaction mechanism for the oxygen initiation process of Huadian oil shale was proposed, and recommendations were provided for optimizing the construction process.
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GOST Copy
Xu S. et al. Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale // Petroleum Science. 2024. Vol. 21. No. 6. pp. 4481-4496.
GOST all authors (up to 50) Copy
Xu S., Lü X., WANG H., Sun Y., Kang S., Wang Z., Guo W., Deng S. Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale // Petroleum Science. 2024. Vol. 21. No. 6. pp. 4481-4496.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1016/j.petsci.2024.07.024
UR - https://linkinghub.elsevier.com/retrieve/pii/S1995822624002085
TI - Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale
T2 - Petroleum Science
AU - Xu, Shaotao
AU - Lü, Xiaoshu
AU - WANG, HAN
AU - Sun, Youhong
AU - Kang, Shi-jie
AU - Wang, Zhendong
AU - Guo, Wei
AU - Deng, Sunhua
PY - 2024
DA - 2024/12/01
PB - Elsevier
SP - 4481-4496
IS - 6
VL - 21
SN - 1672-5107
SN - 1995-8226
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2024_Xu,
author = {Shaotao Xu and Xiaoshu Lü and HAN WANG and Youhong Sun and Shi-jie Kang and Zhendong Wang and Wei Guo and Sunhua Deng},
title = {Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale},
journal = {Petroleum Science},
year = {2024},
volume = {21},
publisher = {Elsevier},
month = {dec},
url = {https://linkinghub.elsevier.com/retrieve/pii/S1995822624002085},
number = {6},
pages = {4481--4496},
doi = {10.1016/j.petsci.2024.07.024}
}
MLA
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MLA Copy
Xu, Shao-Tao, et al. “Characterization of oxygen initiation process in the autothermic pyrolysis in-situ conversion of Huadian oil shale.” Petroleum Science, vol. 21, no. 6, Dec. 2024, pp. 4481-4496. https://linkinghub.elsevier.com/retrieve/pii/S1995822624002085.