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Environmental and Climate Dilemma: Coal for Heating or Clean Air for Breathing: A Case of Prishtina Cover

Environmental and Climate Dilemma: Coal for Heating or Clean Air for Breathing: A Case of Prishtina

Open Access
|Jul 2019

References

  1. [1] Krumins J., Yang Zh., Zhang Q., Yan M., Klavins M. A study of weathered coal spectroscopic properties. Energy Procedia 2017:128:51–58. doi:10.1016/j.egypro.2017.09.01410.1016/j.egypro.2017.09.014
  2. [2] Silinš K., Žandeckis A., Valtere S. Determination of Solid Particle Concentration at Coal Transshipment Site. Environmental and Climate Technologies 2010:3(3):97–101. doi:10.2478/v10145-009-0013-810.2478/v10145-009-0013-8
  3. [3] Bajçinovci B. Environment Quality: Impact from Traffic, Power Plant and Land Morphology, a Case Study of Prishtina. Environmental and Climate Technologies 2017:19:65–74. doi:10.1515/rtuect-2017-000610.1515/rtuect-2017-0006
  4. [4] World Health Organization. Ambient air pollution: A global assessment of exposure and burden of disease. Geneva: WHO, 2016.10.17159/2410-972X/2016/v26n2a4
  5. [5] Lillywhite S., Kemp D., Sturman K. Mining, resettlement and lost livelihoods: Listening to the Voices of Resettled Communities in Mualadzi, Mozambique. 2015. International Mining for Development Centre. Melbourne: Oxfam, 2015.
  6. [6] Hastorun S. The Mineral Industry of Kosovo. 2014 Minerals Yearbook [Online]. [Accessed 7.01.2017]. Available: https://minerals.usgs.gov/minerals/pubs/country/2014/myb3-2014-kv.pdf
  7. [7] Van den Berg C., et al. World Bank. Kosovo, Country Environmental Analysis, Cost Assessment of Environmental Degradation, Institutional Review, and Public Environmental Expenditure Review [Online]. [Accessed 5.11.2017]. Available: http://siteresources.worldbank.org/INTKOSOVO/Resources/KosovoCEA.pdf
  8. [8] Liu F., et al. A comparison of the consumption and carbon emissions for different modes of transportation in open-cut coal mines. International Journal of Mining Science and Technology 2015:25:261–266. doi:10.1016/j.ijmst.2015.02.01510.1016/j.ijmst.2015.02.015
  9. [9] Kittipongvises S., Chavalparit O., Sutthirat C. Greenhouse Gases and Energy Intensity of Granite Rock Mining Operations in Thailand: A Case of Industrial Rock-Construction. Environmental and Climate Technologies 2016:18:64–75. doi:10.1515/rtuect-2016-001410.1515/rtuect-2016-0014
  10. [10] Asere L., Blumberga A. Government and municipality owned building energy efficiency system dynamics modelling. Energy Procedia 2015:72:180–187. doi:10.1016/j.egypro.2015.06.02610.1016/j.egypro.2015.06.026
  11. [11] Kosovo Energy Corporation. Environmental Report for 2016. Kosovo: KEK, 2016. (in Albanian)
  12. [12] Environmental Protection Agency, EPA, AirNow US 2017. Air Quality Index [Online]. [Accessed 06.01.2019]. Available: https://airnow.gov/index.cfm?action=airnow.global_summary#Kosovo$Pristina
  13. [13] Sabbioni E., Goetz L., Bignoli G. Health and environmental implications of trace metals released from coal-fired power plants: an assessment study of the situation in the European Community’. Science of the Total Environment 1984:40(1):141–154. doi:10.1016/0048-9697(84)90348-610.1016/0048-9697(84)90348-6
  14. [14] David O., Valia M., Maiduc S. The impact of the mining activity on the economic sector, human health and environment. Hidraulica 2014:2:44–47.
  15. [15] Yukhananov A., Volcovici V. World Bank to limit financing of coal-fired plants [Online]. [Accessed 6.01.2018]. Available: https://www.reuters.com/article/us-worldbank-climate-coal/world-bank-to-limit-financing-of-coal-fired-plants-idUSBRE96F19U20130716
  16. [16] Republic of Kosovo. National Audit Office. The level of air pollution in Pristina dangerous to the health of citizens [Online]. [Accessed 17.10.2017]. Available: http://www.kosid.org/news/96
  17. [17] Bajcinovci B., Jerliu F. Achieving Energy Efficiency in Accordance with Bioclimatic Architecture Principles. Environmental and Climate Technologies 2016:18:54–63. doi:10.1515/rtuect-2016-001310.1515/rtuect-2016-0013
  18. [18] Klavins M., Bisters V., Burlakovs J. Small Scale Gasification Application and Perspectives in Circular Economy. Environmental and Climate Technologies 2018:22:42–54. doi:10.2478/rtuect-2018-000310.2478/rtuect-2018-0003
  19. [19] Bariss U., Bazbauers G., Blumberga A., Blumberga D. System Dynamics Modeling of Households' Electricity Consumption and Cost-Income Ratio: A Case Study of Latvia. Environmental and Climate Technologies 2017:20:36–50. doi:10.1515/rtuect-2017-000910.1515/rtuect-2017-0009
  20. [20] Blumberga A., Timma L., Blumberga D. System Dynamic Model for the Accumulation of Renewable Electricity using Power-to-Gas and Power-to-Liquid Concepts. Environmental and Climate Technologies 2016:16:54–68. doi:10.1515/rtuect-2015-001210.1515/rtuect-2015-0012
DOI: https://doi.org/10.2478/rtuect-2019-0003 | Journal eISSN: 2255-8837 | Journal ISSN: 1691-5208
Language: English
Page range: 41 - 51
Published on: Jul 15, 2019
Published by: Riga Technical University
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Bujar Bajcinovci, published by Riga Technical University
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.