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Study on oxygen species in the products of co-liquefaction of coal and petroleum residues

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  • Zhou, Xiao-Dong
  • Wu, Hao
  • Liu, Jing-Mei
  • Huang, Xue-Li
  • Fan, Xing
  • Jin, Li-Jun
  • Zhu, Yu-Fei
  • Ma, Feng-Yun
  • Zhong, Mei

Abstract

From the view of atom economy, it is important to know the form and apportion of oxygen in products, especially the apportion of oxygen in CO2 during direct coal liquefaction (DCL) and co-liquefaction of coal and petroleum residues (CCPR). Herein, co-liquefaction of Naomaohu lignite with Tahe petroleum residue (THPR) was conducted and the O distribution in liquefaction products including gas, n-hexane soluble (HS), asphaltene and pre-asphaltene (AP), and residue (Res) were analyzed by elemental analyzer, GC, GC-MS, FT-IR and APCI-MS. The results showed that CCPR did not change the oxygen speciation but the O distribution in products. O-containing radicals generated from coal pyrolysis would bind to the alkyl radicals from petroleum residue decomposition during CCPR, resulting in remarked increase in the content of O-containing alkanes. Compared with DCL, the apportion of organic oxygen (HS and AP) was increased by 25.94% during CCPR, and the inorganic oxygen (CO, CO2, H2O, and Res) was decreased by 7.10%, wherein, CO2 content in inorganic oxygen was reduced by 2.13%. This implies that the CCPR not only significantly enhances the utilization of organic oxygen in coal but also inhibits CO2 generation, which is vital for realizing the goal of carbon peak and neutrality.

Suggested Citation

  • Zhou, Xiao-Dong & Wu, Hao & Liu, Jing-Mei & Huang, Xue-Li & Fan, Xing & Jin, Li-Jun & Zhu, Yu-Fei & Ma, Feng-Yun & Zhong, Mei, 2022. "Study on oxygen species in the products of co-liquefaction of coal and petroleum residues," Energy, Elsevier, vol. 260(C).
  • Handle: RePEc:eee:energy:v:260:y:2022:i:c:s0360544222018448
    DOI: 10.1016/j.energy.2022.124945
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    References listed on IDEAS

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    1. Chaturvedi, Krishna Raghav & Narukulla, Ramesh & Amani, Mahmood & Sharma, Tushar, 2021. "Experimental investigations to evaluate surfactant role on absorption capacity of nanofluid for CO2 utilization in sustainable crude mobilization," Energy, Elsevier, vol. 225(C).
    2. Kong, Hui & Kong, Xianghui & Wang, Jian & Zhang, Jun, 2019. "Thermodynamic analysis of a solar thermochemical cycle-based direct coal liquefaction system for oil production," Energy, Elsevier, vol. 179(C), pages 1279-1287.
    3. Zhang, Yueling & Li, Junjie & Yang, Xiaoxiao, 2021. "Comprehensive competitiveness assessment of four coal-to-liquid routes and conventional oil refining route in China," Energy, Elsevier, vol. 235(C).
    4. Zhou, Xiao-Dong & Ma, Feng-Yun & Wu, Hao & Li, Yi-Zhao & Fan, Xing & Zhu, Yu-Fei & Wei, Xian-Yong & Liu, Jing-Mei & Zhong, Mei, 2021. "The effects of Fe2O3 and MoS2 on the catalytic activation pathway of hydrogen sources during direct coal liquefaction," Energy, Elsevier, vol. 234(C).
    5. Borugadda, Venu Babu & Kamath, Girish & Dalai, Ajay K., 2020. "Techno-economic and life-cycle assessment of integrated Fischer-Tropsch process in ethanol industry for bio-diesel and bio-gasoline production," Energy, Elsevier, vol. 195(C).
    6. Siang, T.J. & Jalil, A.A. & Abdulrasheed, A.A. & Hambali, H.U. & Nabgan, Walid, 2020. "Thermodynamic equilibrium study of altering methane partial oxidation for Fischer–Tropsch synfuel production," Energy, Elsevier, vol. 198(C).
    7. Gu, Suqian & Xu, Zhiqiang & Ren, Yangguang & Tu, Yanan & Sun, Meijie & Liu, Xiangyang, 2021. "An approach for upgrading lignite to improve slurryability: Blending with direct coal liquefaction residue under microwave-assisted pyrolysis," Energy, Elsevier, vol. 222(C).
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