Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The article presents a method of selecting the optimal option for the closure of a coal mine, from which it is planned to capture the methane remaining in the goaf and deposit it for many years for its economic use. Using the example of several options for the closure of one of the mines, for which the evaluation criteria have been defined, and the weights of their relevance have been determined, it is described how to create a special algorithm for the selection of the optimal option.
Wydawca
Czasopismo
Rocznik
Tom
Strony
442--449
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
autor
- Central Mining Institute - National Research Institute, Plac Gwarkow 1, 40-166 Katowice, Poland
autor
- Faculty of Economics and Management, Opole University of Technology, ul. Luboszycka 7, 45-036 Opole, Poland
Bibliografia
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- [2] Kononenko M, Khomenko O, Sadovenko I, Sobolev V, Pazynich Y, Smolinski A. Managing the rock mass destruction under the explosion. J Sustain Mining 2023;22(3):6. https://doi.org/10.46873/2300-3960.1391.
- [3] Magdziarczyk M, Smoliło J, Chmielą A, Smolinski A. Method of estimating the expenditures required to carry out the liquidation processes of a mining site. Scient Paper Silesian Univ Technol Organiz Manag Series 2023;182:201-16. https://doi.org/10.29119/1641-3466.2023.182.12.
- [4] Zawadzki P, Konczak B, Smolinski A. Municipal wastewater reclamation: reclaimed water for hydrogen production by electrolysis - a case study. Measurement 2023;216:112928. https://doi.org/10.1016/j.measurement.2023.112928.
- [5] Tokarski S, Magdziarczyk M, Smolinski A. An analysis of risks and challenges to the polish power industry in the year 2024. Energies 2024;17(5):1044. https://doi.org/10.3390/en17051044.
- [6] Balderas-Hernandez VE, Landeros Maldonado KP, Smolinski A, De Leon Rodriguez A. Improvement of hydrogen production by metabolic engineering of Escherichia coli: modification on both the PTS system and central carbon metabolism. Int J Hydrogen Energy 2020;45:5687-96. https://doi.org/10.1016/j.ijhydene.2019.01.162.
- [7] Smolinski A, Stanczyk K, Kapusta K, Howaniec N. Analysis of the organic contaminants in the condensate produced in the in- situ underground coal gasification process. Water Sci Technol 2013;67(3):644-50. https://doi.org/10.2166/wst.2012.558.
- [8] Wojtacha-Rychter K, Kucharski P, Smolinski A. Conventional and alternative sources of thermal energy in the production of cement - an impact on CO emission. Energies 2021;14(6):1539. https://doi.org/10.3390/en14061539.
- [9] Krawczyk P, Howaniec N, Smolinski A. Economic efficiency analysis of substitute natural gas (SNG) production in steam gasification of coal with the utilization of HTR excess heat. Energy 2016;114:1207-13.
- [10] Djakovic-Sekulic T, Smolinski A, Perisić-Janjić N, Janicka M. Chemometric characterization of (chromatographic) lipophilicity parameters of newly synthesized s-triazine derivatives. J Chemometr 2008;22:195-202.
- [11] Wojtacha-Rychter K, Król M, Golaszewska M, Całus- Moszko J, Magdziarczyk M, Smolinski A. Dust from chlorine bypass installation as cementitious materials replacement in concrete making. J Build Eng 2022:104309. https://doi.org/10.1016/j.jobe.2022.104309.
- [12] Wojtacha-Rychter K, Smolinski A. Multi-case study on environmental and economic benefits through co-burning refuse-derived fuels and sewage sludge in cement industry. Materials 2022;15:4176. https://doi.org/10.3390/ma15124176.
- [13] Wojtacha-Rychter K, Smolinski A. Coal oxidation with air stream of varying oxygen content and flow rate - fire gas emission profile. Fire Saf J 2020:103182. https://doi.org/10.1016/j.firesaf.2020.103182.
- [14] Wodołażski A, Magdziarczyk M, Smolinski A. Techno-economic analysis of hydrogen production from swine manure biogas via steam reforming in pilot-scale installation. Energies 2023;16:6389. https://doi.org/10.3390/en16176389.
- [15] Siudyga T, Wojtacha-Rychter K, Anagnostopoulos A, Navarro H, Ding Y, Smolinski A, et al. Thermochemical energy storage based on inductively heated CaCl-NH3 pair using red mud. Measurement 2023;220:113420. https://doi.org/10.1016/j.measurement.2023.113420.
- [16] Dubinski J, Jura B, Janoszek T, Makówka J, Skiba J, Hildebrandt R, et al. In-situ experimental study on hydro borehole technology application to improve the hard coal excavating techniques in coal mine. Sci Rep 2023;13(1):1190. https://doi.org/10.1038/s41598-023-28501-7.
- [17] Mitariten M, Coal Bed Metahan. Chapter 11 - coalbed and coal mine methane gas purification. Coal Bed Methane From Prospect to Pipeline; 2014. p. 201-18.
- [18] Kaliski M, Wojciechowski R, Szurlej A. Development of coalbed methane - current status and prospects. Energy Pol 2013;16(4):189-200.
- [19] Stasinska B. Reducing methane emissions from coal mines by catalytic purification of ventilation air. Energy Pol 2009; 12(2):123-32.
- [20] Liu Y, Wang Q, Chen W, Liu M, Hani M. Enhanced coalbed gas drainage based on hydraulic flush from floor tunnels in coal mines. Int J Min Reclamat Environ 2016;30(1):37-47.
- [21] Communication from the Commissions to the European Parliament, The Council. The European economic and social committee and the committee of the region on an EU, 2020: strategy to reduce methane emissions. Brussels, 14.10.2020. COM. 2020. 663 final.
- [22] Ivy A, Smolillo J. Determinants of transformation of mining regions. In: Kalbarczyk K, Bujalska B, editors. Selected problems of the natural environment in scientific terms. Lublin: Tygiel Scientific Publishing House; 2011 [w].
- [23] Energy policy of Poland until 2040 document adopted by the council of ministers. 2021.
- [24] Hadro J, Wojcik I. Coalbed methane: resources and exploitation. Geol Rev 2013;61(7):404-10.
- [25] Kowalik S, Gajdowska M. Disposal of methane from coal mines reduction of environmental hazards. Zeszyty Naukowe Politechniki ¡Śląskiej. Min Geol 2010;5(2):105-13.
- [26] Simsek E, Demirel YE, Ozturk E, Kitis M. Use of multicriteria decision models for optimization of selecting the most appropriate best available techniques in cleaner production applications: A case study in a textile industry. J Clean Product 2022;335(10):130311. https://doi.org/10.1016/j.jclepro.2021.130311.
- [27] Jedrzejczyk Z. Operational research in examples and tasks. Warsaw: PWN Publishing House; 2011.
- [28] Roy B. Decision aid and decision making. Eur J Oper Res 1990;45:324-31.
- [29] Keeney R, Raiffa H. Decisions with multiple objectives. Preferences and value trade-offs. UK: Cambridge University Press, Cambridge; 1993.
- [30] Ehrgott M. Multicriteria optimization. Berlin: Springer Verlag; 2005.
- [31] Bednarczyk Ł. Multi-criteria method of selection of systems and means of s transport of materials in coal mines. Poland: Katowice; 2022. Doctoral dissertation, unpublished, Central Mining Institute.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6d4c087c-2c08-4b8e-b5c9-f79694284f9c
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