ACID GAS FROM THE „NOVO MILOŠEVO“ GAS WELL USAGE POSSIBILITIES
DOI:
https://doi.org/10.24867/17AM17ProleKeywords:
acid gas, gas turbines, natural gas, carbon dioxideAbstract
This paper shows possible usage of acid gas from “Novo Miloševo” gas well as a fuel for gas turbines in order to produce electric and heat energy, and calculation process for CO2 emissions calculation. Those emissions are then compared with the emissions from existing power plants.
References
[1] Milanović, Z. (2010). „ Energetske mašine – Termodinamičke i strujne osnove toplotnih turbomašina“, Univerzitet u Banja Luci ISBN: 978-99938-39-27-9.
[2] Radosavljević, D, Aćimović, D i Šotra, V (2017). „Istorijat klasifikacija i primena gasnih turbina“, 10th International Scientific Conference “Science and Higher Education in Function of Sustainable Development”, 06 – 07 October 2017, Mećavnik – Drvengrad, Užice, Serbia.
[3] Brun, K. and Kurz, R. (2019). “Introduction to Gas Turbine Theory”, 3rd Edition, Solar Turbines Incorporated, ISBN: 978-0-578-48386-3
[4] https://www.ipieca.org/resources/energy-efficiency-solutions/power-and-heat-generation/open-cycle-gas-turbines/ 14.09.2021.
[5] https://www.grc.nasa.gov/www/k-12/airplane/brayton.html 15.09.2021.;
[6] Krawczyk, D, A. (2019). Buildings 2020+ - Energy sources, Printing House of Bialystok Univesity of Technology, ISBN 978-83-65596-72-7, https://doi.org/10.24427/978-83-65596-73-4
[7] Kuiken, К. (2016) "Gas and dual fuel engines 1", Target Training Centre, ISBN-10 : 9079104043, ISBN-13 : 978-9079104048.
[8] Marković, Z., Erić, M., Cvetinović, D., Stefanović, P., Spasojević, V., Škobalj, P. (2015) Proračun specifične emisije ugljen dioksida iz termoelektrana Nikola Tesla A i B, Termotehnika, DOI: https://doi.org/10.5937/terteh42-11676.
[9] Stefanović, P.Q., Marković, Z.J., Bakić, V.V., Cvetinović, D.B., Turanjanin, V.M., Jovanović, M.P. (2011) “Emisija gasova sa efektom staklene baste u toplanama javnih preduzeća daljinskog grejanja u gradovima Srbije”, Termotehnika, 37(2), 183-195, UDK: 504.7:662.71/.74.
[2] Radosavljević, D, Aćimović, D i Šotra, V (2017). „Istorijat klasifikacija i primena gasnih turbina“, 10th International Scientific Conference “Science and Higher Education in Function of Sustainable Development”, 06 – 07 October 2017, Mećavnik – Drvengrad, Užice, Serbia.
[3] Brun, K. and Kurz, R. (2019). “Introduction to Gas Turbine Theory”, 3rd Edition, Solar Turbines Incorporated, ISBN: 978-0-578-48386-3
[4] https://www.ipieca.org/resources/energy-efficiency-solutions/power-and-heat-generation/open-cycle-gas-turbines/ 14.09.2021.
[5] https://www.grc.nasa.gov/www/k-12/airplane/brayton.html 15.09.2021.;
[6] Krawczyk, D, A. (2019). Buildings 2020+ - Energy sources, Printing House of Bialystok Univesity of Technology, ISBN 978-83-65596-72-7, https://doi.org/10.24427/978-83-65596-73-4
[7] Kuiken, К. (2016) "Gas and dual fuel engines 1", Target Training Centre, ISBN-10 : 9079104043, ISBN-13 : 978-9079104048.
[8] Marković, Z., Erić, M., Cvetinović, D., Stefanović, P., Spasojević, V., Škobalj, P. (2015) Proračun specifične emisije ugljen dioksida iz termoelektrana Nikola Tesla A i B, Termotehnika, DOI: https://doi.org/10.5937/terteh42-11676.
[9] Stefanović, P.Q., Marković, Z.J., Bakić, V.V., Cvetinović, D.B., Turanjanin, V.M., Jovanović, M.P. (2011) “Emisija gasova sa efektom staklene baste u toplanama javnih preduzeća daljinskog grejanja u gradovima Srbije”, Termotehnika, 37(2), 183-195, UDK: 504.7:662.71/.74.
Downloads
Published
2022-03-31
Issue
Section
Mechanical Engineering