Energy and Power Engineering

Volume 2, Issue 2 (May 2010)

ISSN Print: 1949-243X   ISSN Online: 1947-3818

Google-based Impact Factor: 0.66  Citations  

Co-liquefaction of Coal and Used Tire in Supercritical Water

HTML  Download Download as PDF (Size: 303KB)  PP. 95-102  
DOI: 10.4236/epe.2010.22014    4,858 Downloads   9,148 Views  Citations

Affiliation(s)

.

ABSTRACT

The co-liquefaction of lignite coal and used tire was performed in a 250-ml batch reactor, in supercritical water under a nitrogen atmosphere to investigate the effects of temperature (380-440℃), water/feedstock ratio (4/1-10/1 (wt./wt.)) and the % used tire content in the feedstock (0-100 wt.%) on the conversion efficiency, liquid yield and oil composition attained. The maximum conversion and oil yield were 67 and 50%, respectively, obtained at 400℃ at 1 min, with water/feedstock ratio of 10/1 and 80% used tire content. The distillation characteristics of the oil products, analyzed by simulated distillation gas chromatography, revealed that the oil composition depended significantly on the reaction temperature. The co-liquefaction of coal and used tire yielded a synergistically increased level of oil production. Moreover, the total conversion level obtained with co-liquefaction alone was almost equal to those obtained in the presence of either Fe2O3 or NiMo as catalysts, under the same conditions. Therefore, supercritical water is a good medium for the dissolution of the volatile matter from a coal and used tire matrix.

Share and Cite:

K. Onsri, P. Prasassarakich and S. Ngamprasertsith, "Co-liquefaction of Coal and Used Tire in Supercritical Water," Energy and Power Engineering, Vol. 2 No. 2, 2010, pp. 95-102. doi: 10.4236/epe.2010.22014.

Cited by

[1] Waste Tyres Pyrolysis for Obtaining Limonene
2020
[2] * Department of Physics, University of Otago, Dunedin, New Zealand Department of Food Science, University of Otago, Dunedin, New Zealand
2019
[3] Green solvents in urban mining
2018
[4] * Department of Physics, University of Otago, Dunedin, New Zealand
2018
[5] Thermolysis of scrap tire and rubber in sub/super-critical water
Waste Management, 2018
[6] Conversion of low-grade coals in sub-and supercritical water: A review
Fuel, 2018
[7] CHARACTERIZATION, CALCULATION OF CALORIFIC VALUES, AND BIO-OIL PRODUCTION VIA THERMOCHEMICAL PROCESSES OF MUNICIPAL SOLID …
2017
[8] Effects of mechanical activation on the co-liquefaction of Xigou sub-bituminous coal from Xinjiang and Karamay petroleum vacuum residues
Fuel Processing Technology, 2017
[9] Reactor and method for upgrading heavy hydrocarbons with supercritical fluids
2017
[10] Estudio experimental del procesamiento de llantas usadas en la producción de biodiesel por medio de transesterificación supercrítica
2016
[11] Influence of operating parameters in high biomass conversion under sub‐and supercritical water conditions
Chemical Engineering & Technology, 2016
[12] The Influence of Temperature and Residence Time on Tire Thermolysis in Subcritical and Supercritical Water
Clean Coal Technology and Sustainable Development, 2016
[13] Influence of operating parameters in high biomass conversion under sub-and supercritical water conditions
Chemical Engineering & Technology, 2016
[14] Energy and fuel systems integration
2015
[15] Activated Carbons from Co-Mingled Liquid and Solid Organic Wastes
Eurasian Chemico-Technological Journal, 2015
[16] Large-scale synthesis and catalysis of oleic acid-coated Fe 2 O 3 for co-liquefaction of coal and petroleum vacuum residues
Fuel Processing Technology, 2015
[17] 超临界水中煤基多孔炭孔隙形成过程的研究
燃料化学学报, 2015
[18] Large-scale synthesis and catalysis of oleic acid-coated Fe2O3 for co-liquefaction of coal and petroleum vacuum residues
Fuel Processing Technology, 2015
[19] Supercritical Water Gasification of Coal with Waste Black Liquor as Inexpensive Additives
Energy & Fuels, 2014
[20] Activated Carbons from Co-Mingled Liquid
2014
[21] Co-extraction of Lignite and Waste Tire Mixtures
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2014
[22] Water for energy and fuel production
2014
[23] Nghiên cứu phân hủy cao su phế thải bằng phương pháp nhiet xuc tac
2012
[24] Nghiên cứu phân hủy cao su phế thải bằng phương pháp hóa nhiệt xúc tác
2012

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.