American Journal of Energy Engineering

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Management of Thermal Quantity of Hydrogen and Sulphur During Combustion of Kosova’s Lignite

Received: 31 December 2014    Accepted: 18 January 2015    Published: 01 February 2015
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Abstract

The aim of paper is analyzing the issue related to the management of effective thermal quantity during lignite combustion and emissions of gases that are product of complete and non-complete combustion of lignite in the boilers. The real thermal amount of total burning lignite is 7524 kJ kg-1. Thus, the losses of thermal quantity at ignition and during combustion of lignite directly depend on the diameter of lignite pieces intended for combustion. Paper contains the analyses of the thermal value, the composition of combustible and non-combustible matters of Kosova’s lignite. The research on theoretical and practical field of management of thermal quantity of lignite is based and verified by DIN 1942, 1952, 1956 standards which describe effective thermal quantity. The paper reflects positively on management of the effective thermal quantity.

DOI 10.11648/j.ajee.20150301.12
Published in American Journal of Energy Engineering (Volume 3, Issue 1, January 2015)
Page(s) 6-10
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Boilers, Combustion, Hydrogen, Sulphur, Thermal

References
[1] Ekrem B, (1987) Tehnologija sa poznavanje robe. Pejë, 52-109.
[2] Laboratory of Energetic Corporation of Kosovo
[3] Feretič D,Tomišič Z, Śkanata D, Čavlina N, Subašič D (2000) Elektrane i okoliš. Zagreb, 213-218.
[4] Halili A, (1983) Furrat metalurgjike II. Tirane, 207-235.
[5] Haxhiaj A, Elezi D, Shkololli SH. (2006) “Mjedisi dhe menaxhimi i gazrave termike në zonën e parangrohjes të furrave vatërxhakete në Trepçë” simpoziumi i gjashtë ndërkombëtar Tirane.
[6] Haxhiaj A, and Haxhiaj E, (2010) “The Thermal Gas Processing in Pre-Heating Zone of “Water-Jacket” Furnaces in “Trepça”, TMS Annual Meeting & Exhibition, Seattle Washington, 205-215.
[7] Haxhiaj A, and Haxhiaj E, (2010) The Optimization of the Coke and Agglomerate Quantity in Lead Production in “Water-Jacket” Furnace, TMS Annual Meeting & Exhibition, Seattle Washington, 249-257.
[8] Haxhiaj A, and Haxhiaj E, (2010) The Air Pollution from the Port-Piri Furnaces Gases, Journal of International Environmental Application & Science, 357-363.
[9] Panariti A, Merollari J, (1987) Metalurgjia e gizës-2. Tirane, 7-12.
[10] Ranko R, (2010) Komercijalno Poznavanje robe. Beograd, 23-43.
Author Information
  • Faculty of Geosciences, University of Mitrovica “Isa Boletini”, Mitrovica, Republic of Kosovo

  • Faculty of Geosciences, University of Mitrovica “Isa Boletini”, Mitrovica, Republic of Kosovo

  • Faculty of Geosciences, University of Mitrovica “Isa Boletini”, Mitrovica, Republic of Kosovo

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  • APA Style

    Ahmet Haxhiaj, Nyrtene Deva, Mursel Rama. (2015). Management of Thermal Quantity of Hydrogen and Sulphur During Combustion of Kosova’s Lignite. American Journal of Energy Engineering, 3(1), 6-10. https://doi.org/10.11648/j.ajee.20150301.12

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    ACS Style

    Ahmet Haxhiaj; Nyrtene Deva; Mursel Rama. Management of Thermal Quantity of Hydrogen and Sulphur During Combustion of Kosova’s Lignite. Am. J. Energy Eng. 2015, 3(1), 6-10. doi: 10.11648/j.ajee.20150301.12

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    AMA Style

    Ahmet Haxhiaj, Nyrtene Deva, Mursel Rama. Management of Thermal Quantity of Hydrogen and Sulphur During Combustion of Kosova’s Lignite. Am J Energy Eng. 2015;3(1):6-10. doi: 10.11648/j.ajee.20150301.12

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  • @article{10.11648/j.ajee.20150301.12,
      author = {Ahmet Haxhiaj and Nyrtene Deva and Mursel Rama},
      title = {Management of Thermal Quantity of Hydrogen and Sulphur During Combustion of Kosova’s Lignite},
      journal = {American Journal of Energy Engineering},
      volume = {3},
      number = {1},
      pages = {6-10},
      doi = {10.11648/j.ajee.20150301.12},
      url = {https://doi.org/10.11648/j.ajee.20150301.12},
      eprint = {https://download.sciencepg.com/pdf/10.11648.j.ajee.20150301.12},
      abstract = {The aim of paper is analyzing the issue related to the management of effective thermal quantity during lignite combustion and emissions of gases that are product of complete and non-complete combustion of lignite in the boilers. The real thermal amount of total burning lignite is 7524 kJ kg-1. Thus, the losses of thermal quantity at ignition and during combustion of lignite directly depend on the diameter of lignite pieces intended for combustion. Paper contains the analyses of the thermal value, the composition of combustible and non-combustible matters of Kosova’s lignite. The research on theoretical and practical field of management of thermal quantity of lignite is based and verified by DIN 1942, 1952, 1956 standards which describe effective thermal quantity. The paper reflects positively on management of the effective thermal quantity.},
     year = {2015}
    }
    

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    AB  - The aim of paper is analyzing the issue related to the management of effective thermal quantity during lignite combustion and emissions of gases that are product of complete and non-complete combustion of lignite in the boilers. The real thermal amount of total burning lignite is 7524 kJ kg-1. Thus, the losses of thermal quantity at ignition and during combustion of lignite directly depend on the diameter of lignite pieces intended for combustion. Paper contains the analyses of the thermal value, the composition of combustible and non-combustible matters of Kosova’s lignite. The research on theoretical and practical field of management of thermal quantity of lignite is based and verified by DIN 1942, 1952, 1956 standards which describe effective thermal quantity. The paper reflects positively on management of the effective thermal quantity.
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