À propos de cet article

Citez

Ropa, C.E. (2014). Osuszanie gazu ziemnego (Natural gas drying). In S. Nagy (Eds.), Vademecum gazownika. Tom I: Podstawy Gazownictwa ziemnego: pozyskiwanie, przygotowanie do transportu, magazynowanie (Gasman’s Vademecum. Vol.I: Fundamentals of Natural Gas: acquisition, preparation for transport, storage). Kraków, SITPNiG. Ropa C.E. 2014 Osuszanie gazu ziemnego (Natural gas drying). In Nagy S. (Eds.), Vademecum gazownika. Tom I: Podstawy Gazownictwa ziemnego: pozyskiwanie, przygotowanie do transportu, magazynowanie (Gasman’s Vademecum. Vol.I: Fundamentals of Natural Gas: acquisition, preparation for transport, storage) Kraków SITPNiG Search in Google Scholar

Mesigerian, R., Heydarinasab, A., Rashidi, A., & Zamani, Y. (2020). Adsorption and growth of water clusters on UiO-66 based nanoadsorbents: A systematic and comparative study on dehydration of natural gas. Separation and Purification Technology, 238, 116512. Mesigerian R. Heydarinasab A. Rashidi A. Zamani Y. 2020 Adsorption and growth of water clusters on UiO-66 based nanoadsorbents: A systematic and comparative study on dehydration of natural gas Separation and Purification Technology 238 116512 10.1016/j.seppur.2020.116512 Search in Google Scholar

Łaciak, B., Czepirski, L., & Wójcikowski M. (2006). Ocena możliwości wykorzystania promieniowania mikrofalowego do odwadniania glikoli stosowanych w gazownictwie ziemnym (Evaluation of the possibility of using microwave radiation for dewatering glycols used in natural gas industry). WIERTNICTWO NAFTA GAZ, 23/1, 307–311. Łaciak B. Czepirski L. Wójcikowski M. 2006 Ocena możliwości wykorzystania promieniowania mikrofalowego do odwadniania glikoli stosowanych w gazownictwie ziemnym (Evaluation of the possibility of using microwave radiation for dewatering glycols used in natural gas industry) WIERTNICTWO NAFTA GAZ 23 1 307 311 Search in Google Scholar

Bissor, E., Yurishchev, A., Ullumann, A., & Brauner, N. (2020). Prediction of the critical gas flow rate for avoiding liquid accumulation in natural gas pipelines. International Journal of Multiphase Flow, 130, 103361, https://doi.org/10.1016/j.ijmultiphaseflow.2020.103361. Bissor E. Yurishchev A. Ullumann A. Brauner N. 2020 Prediction of the critical gas flow rate for avoiding liquid accumulation in natural gas pipelines International Journal of Multiphase Flow 130 103361 https://doi.org/10.1016/j.ijmultiphaseflow.2020.103361 10.1016/j.ijmultiphaseflow.2020.103361 Search in Google Scholar

Generowicz, N. (2018). Technologie osuszania gazu ziemnego i gazów przemysłowych (Technologies of the drying of natural gas and industrial gases) (Engineering thesis, AGH University of Science and Technology, Faculty of Geology, Geophysisc and Environmental Protection) Poland, Cracow. Generowicz N. 2018 Technologie osuszania gazu ziemnego i gazów przemysłowych (Technologies of the drying of natural gas and industrial gases) Engineering thesis AGH University of Science and Technology, Faculty of Geology, Geophysisc and Environmental Protection Poland, Cracow Search in Google Scholar

Teixeira, A.M., Oliveira Arinelli, L., Medeiros, J. L., & Queiroz F. Araujo, O. (2019). Economic leverage affords post-combustion capture of 43% of carbon emissions: Supersonic separators for methanol hydrate inhibitor recovery from raw natural gas and CO2 drying. Journal of Environmental Management, 236, 534–550, https://doi.org/10.1016/j.jenvman.2019.02.008. Teixeira A.M. Oliveira Arinelli L. Medeiros J. L. Queiroz F. Araujo O. 2019 Economic leverage affords post-combustion capture of 43% of carbon emissions: Supersonic separators for methanol hydrate inhibitor recovery from raw natural gas and CO2 drying Journal of Environmental Management 236 534 550 https://doi.org/10.1016/j.jenvman.2019.02.008. 10.1016/j.jenvman.2019.02.008 Search in Google Scholar

Fang, S., Zhang, X., Zhang, J., Chang, Ch., Li, P., & Bai, J. (2020). Evaluation on the natural gas hydrate formation process. Chinese Journal of Chemical Engineering, 28, 881–888, https://doi.org/10.1016/j.cjche.2019.12.021. Fang S. Zhang X. Zhang J. Chang Ch. Li P. Bai J. 2020 Evaluation on the natural gas hydrate formation process Chinese Journal of Chemical Engineering 28 881 888 https://doi.org/10.1016/j.cjche.2019.12.021 10.1016/j.cjche.2019.12.021 Search in Google Scholar

Pokrzywniak, C. (2007a). Analiza rozwiązań technicznych i efektywności stosowanych procesów glikolowego osuszania gazu ziemnego (Analysis of technical solutions and efficiency of the applied processes of glycol dehydration of natural gas). WIERTNICTWO NAFTA GAZ, 24(1), 381–389. Pokrzywniak C. 2007a Analiza rozwiązań technicznych i efektywności stosowanych procesów glikolowego osuszania gazu ziemnego (Analysis of technical solutions and efficiency of the applied processes of glycol dehydration of natural gas) WIERTNICTWO NAFTA GAZ 24 1 381 389 Search in Google Scholar

Yang, Y., Chen, Y., Xu, Z., Wang, L., & Zhang, P. (2020). A three-bed six-step TSA cycle with heat carrier gas recycling and its model-based performance assessment for gas drying. Separation and Purification Technology, 237, 116335, https://doi.org/10.1016/j.seppur.2019.116335. Yang Y. Chen Y. Xu Z. Wang L. Zhang P. 2020 A three-bed six-step TSA cycle with heat carrier gas recycling and its model-based performance assessment for gas drying Separation and Purification Technology 237 116335 https://doi.org/10.1016/j.seppur.2019.116335 10.1016/j.seppur.2019.116335 Search in Google Scholar

Liu, H., Wu, Y., Guo, P., Liu, Z., Wang, Z., Chen, S., Wang, B., & Huang, Z. (2019). Compressibility factor measurement and simulation of five high-temperature ultra-high-pressure dry and wet gases. Fluid Phase Equilibria, 500, 112256, https://doi.org/10.1016/j.fluid.2019.112256. Liu H. Wu Y. Guo P. Liu Z. Wang Z. Chen S. Wang B. Huang Z. 2019 Compressibility factor measurement and simulation of five high-temperature ultra-high-pressure dry and wet gases Fluid Phase Equilibria 500 112256 https://doi.org/10.1016/j.fluid.2019.112256 10.1016/j.fluid.2019.112256 Search in Google Scholar

Molenda, J. (1993). Gaz ziemny. Paliwo i surowiec. (Natural gas. Fuel and raw material) Warszawa: Wydawnictwo Naukowo-Techniczne. Molenda J. 1993 Gaz ziemny. Paliwo i surowiec. (Natural gas. Fuel and raw material) Warszawa Wydawnictwo Naukowo-Techniczne Search in Google Scholar

Kong, Z.Y., Mahmoud, A., Liu, S., & Sunarso, J. (2018). Revamping existing glycol technologies in natural gas dehydration to improve the purity and absorption efficiency: Available methods and recent developments. Journal of Natural Gas Science and Engineering, 56, 486–503. https://doi.org/10.1016/j.jngse.2018.06.008. Kong Z.Y. Mahmoud A. Liu S. Sunarso J. 2018 Revamping existing glycol technologies in natural gas dehydration to improve the purity and absorption efficiency: Available methods and recent developments Journal of Natural Gas Science and Engineering 56 486 503 https://doi.org/10.1016/j.jngse.2018.06.008 10.1016/j.jngse.2018.06.008 Search in Google Scholar

Janocha, A. (2010). Osuszanie gazu ziemnego w warunkach niskiego ciśnienia w złożu (Natural gas drying in low pressure reservoir conditions). Nafta-Gaz, 66(5), 379–382. Janocha A. 2010 Osuszanie gazu ziemnego w warunkach niskiego ciśnienia w złożu Natural gas drying in low pressure reservoir conditions Nafta-Gaz 66 5 379 382 Search in Google Scholar

http://home.agh.edu.pl/~kepw/student/plik/sg_w4.pdf http://home.agh.edu.pl/~kepw/student/plik/sg_w4.pdf Search in Google Scholar

Tomków, Ł. (2012). Installations for the liquefaction of natural gas in the vicinity of natural gas deposits. (Engineering thesis, Wrocław University of Science and Technology, Faculty of Mechanical and Power Engineering) Poland, Wrocław. Tomków Ł. 2012 Installations for the liquefaction of natural gas in the vicinity of natural gas deposits. Engineering thesis Wrocław University of Science and Technology, Faculty of Mechanical and Power Engineering Poland, Wrocław Search in Google Scholar

Pokrzywniak, C. (2007b). Metody osuszania gazu ziemnego. Porównanie rozwiązań technicznych typowego procesu glikolowego osuszania gazu ziemnego i procesu z zastosowaniem gazu stripingowego w aspekcie finansowym oraz uzyskanej efektywności (Natural gas drying methods. Comparison of technical solutions of a typical glycol process for dehydrating natural gas and a process with the use of stripping gas in financial terms and the achieved efficiency gains). Nafta i gaz, 4, 18–22. Pokrzywniak C. 2007b Metody osuszania gazu ziemnego. Porównanie rozwiązań technicznych typowego procesu glikolowego osuszania gazu ziemnego i procesu z zastosowaniem gazu stripingowego w aspekcie finansowym oraz uzyskanej efektywności Natural gas drying methods. Comparison of technical solutions of a typical glycol process for dehydrating natural gas and a process with the use of stripping gas in financial terms and the achieved efficiency gains Nafta i gaz 4 18 22 Search in Google Scholar

Grynia, E., & Carroll, J. (2013). Niepożądana woda czyli przegląd procesów osuszania gazu ziemnego (Unwanted water - an overview of natural gas dehydration processes). Szejk 2(109), 18–23. Grynia E. Carroll J. 2013 Niepożądana woda czyli przegląd procesów osuszania gazu ziemnego Unwanted water - an overview of natural gas dehydration processes Szejk 2 109 18 23 Search in Google Scholar

Salman, M., Zhang, L., & Chen, J. (2020). A computational simulation study for techno-economic comparison of conventional and stripping gas methods for natural gas dehydration. Chinese Journal of Chemical Engineering, https://doi.org/10.1016/j.cjche.2020.03.013. Salman M. Zhang L. Chen J. 2020 A computational simulation study for techno-economic comparison of conventional and stripping gas methods for natural gas dehydration Chinese Journal of Chemical Engineering https://doi.org/10.1016/j.cjche.2020.03.013. 10.1016/j.cjche.2020.03.013 Search in Google Scholar

Mandera, A., & Szczepański, Z. (2007). Ferro-hydrożele krzemionkowe. Wytwarzanie i badania ultradźwiękowe (Ferro-hydro-silica gels. Manufacturing and ultrasonic testing). Bydgoszcz: Instytut Mechaniki Środowiska i Informatyki Stosowanej Uniwersytetu Kazimierza Wielkiego w Bydgoszczy. Mandera A. Szczepański Z. 2007 Ferro-hydrożele krzemionkowe. Wytwarzanie i badania ultradźwiękowe (Ferro-hydro-silica gels. Manufacturing and ultrasonic testing). Bydgoszcz Instytut Mechaniki Środowiska i Informatyki Stosowanej Uniwersytetu Kazimierza Wielkiego w Bydgoszczy Search in Google Scholar

He, X., Kumakiri, I., & Hillestad, M. (2020). Conceptual process design and simulation of membrane systems for integrated natural gas dehydration and sweetening. Separation and Purification Technology, 247(116993). He X. Kumakiri I. Hillestad M. 2020 Conceptual process design and simulation of membrane systems for integrated natural gas dehydration and sweetening Separation and Purification Technology 247 116993 10.1016/j.seppur.2020.116993 Search in Google Scholar

Zhu, L., Lv, X., Tong, S., Zhang, T., Song, Y., Wang, Y., Hao, Z., Hunag, Ch., & Xia, D. (2019). Modification of zeolite by metal and adsorption desulfurization of organic sulphide in natural gas. Journal of Natural Gas Science and Engineering, 69, 102941, https://doi.org/10.1016/j.jngse.2019.102941. Zhu L. Lv X. Tong S. Zhang T. Song Y. Wang Y. Hao Z. Hunag Ch. Xia D. 2019 Modification of zeolite by metal and adsorption desulfurization of organic sulphide in natural gas Journal of Natural Gas Science and Engineering 69 102941 https://doi.org/10.1016/j.jngse.2019.102941 10.1016/j.jngse.2019.102941 Search in Google Scholar

https://www.hydrocarbonengineering.com/directory/engineering/licensors/prosernat/ https://www.hydrocarbonengineering.com/directory/engineering/licensors/prosernat/ Search in Google Scholar

http://www.twisterbv.com/twister-supersonic/ http://www.twisterbv.com/twister-supersonic/ Search in Google Scholar

Barelli, L., Bidini, G., Ottaviano, P.A., & Perla, M. (2020). Dehydration and low temperature separation technologies for liquified natural gas production via electrolysis: A systematic review. Journal of Energy Storag, 30, 101471. Barelli L. Bidini G. Ottaviano P.A. Perla M. 2020 Dehydration and low temperature separation technologies for liquified natural gas production via electrolysis: A systematic review Journal of Energy Storag 30 101471 10.1016/j.est.2020.101471 Search in Google Scholar

Gaska, K., Generowicz, A., Zimoch, I. Ciula, J., & Siedlarz, D. (2018). A GIS based graph oriented algorithmic model for poly-optimization of waste management system. Architecture Civil Engineering Environment, 11(4), 151–159. Gaska K. Generowicz A. Zimoch I. Ciula J. Siedlarz D. 2018 A GIS based graph oriented algorithmic model for poly-optimization of waste management system Architecture Civil Engineering Environment 11 4 151 159 10.21307/acee-2018-061 Search in Google Scholar

Koval, V., Petrashevska, A.D., Popova, O.L., Mikhno, I.S., & Gaska, K. (2019). Methodology of ecodiagnostics on the example of rural areas. Architecture Civil Engineering Environment, 12(1), 139–144. Koval V. Petrashevska A.D. Popova O.L. Mikhno I.S. Gaska K. 2019 Methodology of ecodiagnostics on the example of rural areas Architecture Civil Engineering Environment 12 1 139 144 10.21307/acee-2019-013 Search in Google Scholar

Twardosz, R., & Cebulska, M. (2010). Observations and Measurements of Precipitation in the Polish Province of Galicia in the Nineteenth Century. In P. Przybylak, J. Majorowicz, R. Brázdil, & M. Kejna, (Eds.), Polish Climate in the European Context: An Historical Overview. Springer. doi: 10.1007/978-90-481-3167-9_23. Twardosz R. Cebulska M. 2010 Observations and Measurements of Precipitation in the Polish Province of Galicia in the Nineteenth Century. In Przybylak P. Majorowicz J. Brázdil R. Kejna M. (Eds.), Polish Climate in the European Context: An Historical Overview Springer DOI:10.1007/978-90-481-3167-9_23 Open DOISearch in Google Scholar

Generowicz, A., Gaska K., & Hajduga G. (2018). Multi-criteria analysis of the Waste management system in a metropolitan area, E3S Web Conf. 44 00043, DOI: 10.1051/e3sconf/20184400043. Generowicz A. Gaska K. Hajduga G. 2018 Multi-criteria analysis of the Waste management system in a metropolitan area E3S Web Conf. 44 00043 DOI: 10.1051/e3sconf/20184400043 Open DOISearch in Google Scholar

Rerak, M., & Oclon, P. (2017). Thermal Analysis of Underground Power Cable System. Journal of Thermal Science, 26(5), 465–471. Rerak M. Oclon P. 2017 Thermal Analysis of Underground Power Cable System Journal of Thermal Science 26 5 465 471 10.1007/s11630-017-0963-2 Search in Google Scholar

Gluba, T., Olejnik T.P., & Obraniak A. (2015). Technology for producing washing agent in continuous process (Technologia wytwarzania środka piorącego w procesie ciągłym), Przemysł Chemiczny, 94(8), 1370–1374; doi: 10.15199/62.2015.8.24. Gluba T. Olejnik T.P. Obraniak A. 2015 Technology for producing washing agent in continuous process Technologia wytwarzania środka piorącego w procesie ciągłym Przemysł Chemiczny 94 8 1370 1374 doi: 10.15199/62.2015.8.24 Open DOISearch in Google Scholar

Olejnik, T.P., & Sobiecka, E. (2017). Utilitarian Technological Solutions to Reduce CO2 Emission in the Aspect of Sustainable Development, Problemy ekorozwoju – Problems of sustainable development, 12(2), 173–179. Olejnik T.P. Sobiecka E. 2017 Utilitarian Technological Solutions to Reduce CO2 Emission in the Aspect of Sustainable Development, Problemy ekorozwoju Problems of sustainable development 12 2 173 179 Search in Google Scholar

eISSN:
1899-0142
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Architecture and Design, Architecture, Architects, Buildings