Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The paper is devoted to explication of one of the advantages of heat and electricity cogeneration, rarely considered in technical literature. Usually attention is paid to the fact that heat losses of the heat distribution network are less severe in the case of cogeneration of heat in comparison with its separate production. But this conclusion is also true in other cases when the internal consumption of heat is significant. In this paper it has been proved in the case of two examples concerning trigeneration technology with an absorption chiller cooperating with a combined heat and power (CHP) plant and CHP plant integrated with amine post-combustion CO2 processing unit. In both considered cases it might be said that thanks to cogeneration we have to do with less severe consequences of significant demand of heat for internal purposes.
Czasopismo
Rocznik
Tom
Strony
61--79
Opis fizyczny
Bibliogr. 22 poz., rys., tab., wz.
Twórcy
autor
- Silesian University of Technology, Institute of Thermal Technology, Konarskiego 22, 44-100 Gliwice
autor
- Silesian University of Technology, Institute of Thermal Technology, Konarskiego 22, 44-100 Gliwice
Bibliografia
- [1] SZARGUT J.: Influence of the efficiency of heat transmission on energy effectiveness of CHP plant. Gospodarka Paliwami i Energią 4(1992), 3–5 (in Polish).
- [2] ZIĘBIK A.: Cogeneration of heat and power combined with production of cooling agent. Gospodarka Paliwami i Energią 11(2003), 2–6(in Polish).
- [3] ZIĘBIK A., HOINKA K.: Energy Systems of Complex Buildings. Springer Verlag, London 2013.
- [4] LUND H., VAD MATHIESEN B.: The role of carbon capture and storage in a future sustainable energy system. Energy 44(2012), 469–476.
- [5] ZIĘBIK A., BUDNIK M., LISZKA M.: Thermodynamic indices assessing the integration of coal- fired CHP plants with post-combustion CO2 processing unit (CPU). Energ. Convers. Manage. 73(2013), 389–397.
- [6] ZIĘBIK A., BUDNIK M., LISZKA M.: Energy effectiveness of heat and electricity cogeneration integrated with amine processing unit. Energetyka, 68(2015), 5, 331-339.
- [7] HORLOCK J.H.: Cogeneration – Combined Heat and Power (CHP). Thermodynamics and Economics. Krieger Publishing Company, Malabar 1997.
- [8] SZARGUT J., ZIĘBIK A.: Fundamentals of Thermal Engineering, PWN, Warszawa 2000 (in Polish).
- [9] SZARGUT J., ZIĘBIK A.: Cogeneration of heat and electricity – CHP. Polish Academy of Sciences. Division Katowice. Katowice – Gliwice 2007 (in Polish).
- [10] RECKNAGEL H., SPRENGER E., HONMAN W., SCHRAMEK E.R.: Heating and Air Conditioning. Guidebook EWFE, Gdańsk 1994 (in Polish).
- [11] FISHER K. S., SEARCY K. et al.: Advanced amine solvent formulations and process integration for near-zero CO2 capture success. Grant No.: De-FG02-06ER84625 US Department of Energy – National Energy Technology Laboratory. Trimeric Corporation, Buda 2007.
- [12] MANGALAPALLY H.P., HASSE H.: Pilot plant experiments for post combustion carbon dioxide capture by reactive absorption with novel solvents. Energy Proced. 4(2011), 1-8.
- [13] OGAWA T., OHASHI Y., YAMANAKA S., MIYAIKE K.: Development of carbon dioxide removal system from the flue gas of coal power plant. Energy Proced 2009, 1(2009), 1, 721-724.
- [14] KURAMOCHI T., RAMÍREZ A., FAAIJ A., TURKENBURG W: Post-combustion co2 capture from part-load industrial NGCC-CHPs: Selected results. Energy Proced. 1(2009), 1, 1395-1402.
- [15] Global CCS Institute: CO2 capture technologies. Post Combustion Capture, 2011. www.cdn.globalccsinstitute.com/sites/default/files/publications/29721/co2-capture-technologies-pcc.pdf (accessed 21 Nov. 25).
- [16] MHI’s Energy Efficiency flue gas CO2 Capture Technology and Large Scale CCS Demonstration test at coal-fired Power Plants in USA. Mitsubishi Heavy Industries, Tech. Rev. 48(2011), 1.
- [17] ESWARAN S., WU S., NICOLO R.: Advanced Amine-based CO2 Capture for Coal-fired Power Plants. Coal-Gen 2010. www.hitachipowersystems.us/technical_papers/index.html (accessed 21.Nov.16)
- [18] Final Report CASTOR (CO2 from Capture to Storage): Project report, Apr. 2011. www.cordis.europa.eu/documents/documentlibrary/124772011EN6.pdf (accessed 21>Nov.16).
- [19] Advanced Coal Power Systems with CO2 Capture: EPRI’s CoalFleet for Vision, 2011. Update, a summary of technology Status and research, Development and Demonstrations, 2011 Technical Report. www.epri.com/abstracts/Pages.ProductAbstract.aspx?productIdij0000000000001023468 (accessed 21.Nov.16).
- [20] Thermoflex version 22. Thermoflex Inc., www.thermoflex.com
- [21] ZIĘBIK A., GŁADYSZ P.: Optimal coefficient of the share of cogeneration in the district heating system cooperating with thermal storage. Arch. Thermodyn. 32(2011), 3, 71-87.
- [22] WAJS J., MIKIELEWICZ D., BAJOR M., KNEBA Z.: Experimental investigation of domestic micro-CHP based on the gas boiler fitted with ORC module. Arch. Thermodyn. 37(2016), 3, 79-94.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0f5c0f5b-0f82-4573-96a5-4d43ddd82678