Research on gasification of low-grade fuels in a continuous layer
DOI:
https://doi.org/10.15587/1729-4061.2017.96995Keywords:
LHV (LCV or NCV), synthesis gas (syngas), gasification of low-grade fuels, regression dependenceAbstract
The technology of thermal processing of low-grade fuel into gaseous fuel is an essential problem whose solution will create clean energy as an alternative to natural gas and coal gasification. It also can solve the problems of the ecological utilization of industrial and household waste as well as of obtaining cheap energy and improving industrial effects for the environment.
The analysis of the theoretical provisions and experimental tests has proved the possibility of processing wood during its gasification in a gas generator with a continuous layer; it is processed into gaseous fuel with the lower calorific value being 1.5 times higher in comparison with the calorific value of the gaseous fuel that is produced by other known gas generators of this type.
The experimental results have specified the regression dependence of heat that is produced by burning the synthesis gas during the gasification of low-grade fuel on the fractional composition of the fuel, the amount of air, and the fuel layer height. The resulting regression equations can be the basis for implementing the studied process and its rational management. The equations of the input factors’ dependence on the original setting make it possible to determine every possible parameter of assessing the process under study at any value of the factors between the upper and lower levels. The tests have revealed the rational values of the input parameters for operating a gas generator with a continuous layer at which the lower heating value of burning the syngas reaches its maximum.References
- Puigjaner, L. (Ed.) (2011). Syngas from waste: emerging technologies. Green energy and technology. Springer-Verlag London Limited, UK, 339. doi: 10.1007/978-0-85729-540-8
- Shahbaz, M., yusup, S., Inayat, A., Patrick, D. O., Ammar, M. (2017). The influence of catalysts in biomass steam gasification and catalytic potential of coal bottom ash in biomass steam gasification: A review. Renewable and Sustainable Energy Reviews, 73, 468–476. doi: 10.1016/j.rser.2017.01.153
- Basu, P. (2010). Biomass gasification and pyrolysis. Academic Press is an imprint of Elsevier, USA, 376. doi: 10.1016/c2009-0-20099-7
- Zheleznaya, T. A., Geletuha, G. G. (2006). Obzor sovremennyih tehnologiy gazifikatsii biomassyi. Promyishlennaya teplotehnika, 2, 61–74.
- Lys, S. S. (2009). Ohliad tekhnolohii hazyfikatsii derevyny. Naukovyi visnyk NLTU Ukrainy, 19.12, 101–105.
- Brown, R. C. (Ed.) (2011). Thermochemical processing of biomass: conversion into fuels, chemicals and power. John Wiley & Sons Ltd., UK, 348. doi: 10.1002/9781119990840
- Phillips, S. D., Tarud, J. K., Biddy, M. J., Dutta, A. (2011). Gasoline from wood via integrated gasification, synthesis, and methanol-to- gasoline technologies. National Renewable Energy Laboratory, USA, 115. doi: 10.2172/1004790
- De Souza-Santos, M. (2010). Solid fuels combustion and gasification. Dekker Mechanical Engineering. CRC Press Taylor & Francis Group, USA, 508. doi: 10.1201/9781420047509
- Lys, S. S. (2010). Analiz eksperymentalnykh doslidzhen hazoheneratora z sutsilnym sharom. Naukovyi visnyk NLTU Ukrainy, 20.7, 64–68.
- Higman, C., van der Burgt, M. (2008). Gasification. Gulf professional publishing, 456.
- Prins, M. J. (2008). Thermodynamic analysis of biomass gasification: including torrefaction as a thermal pre-treatment. VDM Verlag Dr. Müller, USA, 160.
- Hnatyshyn, Y., Dzyadevych, B., Lys, S. (2010). An analysis of experimental researches of gasogene with a continuous layer. Przyrodnicze wykorzystanie ubocznych produktow spalania wegla, biomasy oraz wpolspalnia wegla z biomasa. Szczecin, 23–30.
- La Villetta, M., Costa, M., Massarotti, N. (2017). Modelling approaches to biomass gasification: A review with emphasis on the stoichiometric method. Renewable and Sustainable Energy Reviews, 74, 71–78. doi: 10.1016/j.rser.2017.02.027
- Lys, S. S., Mysak, Y. S. (2012). Thermal recycling of wood by method of a continuous layer in the gaseous fuel. Eastern-European Journal of Enterprise Technologies, 3 (8 (57)), 47–49. Available at: http://journals.uran.ua/eejet/article/view/4076/3742
- Pylypchuk, M. I., Hryhoryev, A. S., Shostak, V. V. (2007). Osnovy naukovykh doslidzhen'. Lviv: Vyd-vo “Znannya”, 234.
- Romanchykov, V. I. (2007). Osnovy naukovykh doslidzhen. Kyiv: Tsentr uchbovoyi literatury, 254.
- Lys, S. S. (2010). Matematychne modeliuvannia protsesu vyroblennia syntez-hazu dlia riznykh porid derevyny v hazoheneratori z sutsilnym sharom. Naukovyi visnyk NLTU Ukrainy, 20.11, 71–76.
- Bashtovoy, A. Y., Sklyarenko, E. V. (2006). Matematycheskoye modelyrovanye protsessa hazyfykatsyy drevesyny. Prom. teplotekhnyka, 28 (6), 71–77.
- Lys, S. S., Mysak, Y. S. (2012). Influence humidity of wood on the process gasification of wood in a continuous layer. Eastern-European Journal of Enterprise Technologies, 4 (8 (58)), 4–6. Available at: http://journals.uran.ua/eejet/article/view/5629/5071
- Lys, S. S., Mysak, Y. S. (2012). Fizyko-khimichna model protsesu hazyfikatsii derevyny. Visnyk inzhenernoi akademii Ukrainy, 2, 301–304.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2017 Joseph Mysak, Stepan Lys, Marta Martynyak-Andrushko
This work is licensed under a Creative Commons Attribution 4.0 International License.
The consolidation and conditions for the transfer of copyright (identification of authorship) is carried out in the License Agreement. In particular, the authors reserve the right to the authorship of their manuscript and transfer the first publication of this work to the journal under the terms of the Creative Commons CC BY license. At the same time, they have the right to conclude on their own additional agreements concerning the non-exclusive distribution of the work in the form in which it was published by this journal, but provided that the link to the first publication of the article in this journal is preserved.
A license agreement is a document in which the author warrants that he/she owns all copyright for the work (manuscript, article, etc.).
The authors, signing the License Agreement with TECHNOLOGY CENTER PC, have all rights to the further use of their work, provided that they link to our edition in which the work was published.
According to the terms of the License Agreement, the Publisher TECHNOLOGY CENTER PC does not take away your copyrights and receives permission from the authors to use and dissemination of the publication through the world's scientific resources (own electronic resources, scientometric databases, repositories, libraries, etc.).
In the absence of a signed License Agreement or in the absence of this agreement of identifiers allowing to identify the identity of the author, the editors have no right to work with the manuscript.
It is important to remember that there is another type of agreement between authors and publishers – when copyright is transferred from the authors to the publisher. In this case, the authors lose ownership of their work and may not use it in any way.