@incollection{, B79BC76F7F77F94E0C4C42F53DB74C12 , author={{RabebToujani} and {NahlaBouaziz} and {Université de Tunis El Manar}}, journal={{Global Journal of Researches in Engineering}}, journal={{GJRE}}2249-45960975-586110.34257/gjre, address={Cambridge, United States}, publisher={Global Journals Organisation}2111112 } @book{b0, , title={{Entropy generation minimization}} , author={{ ABejan }} , year={1996} , publisher={CRC Press} , address={Boca Raton, FL} } @incollection{b1, , title={{}} , author={{ EugeneIYantovskii } and { Göran&Wall } and { Lindquist }} , journal={{Lars & Tryggstad}} , year={1994} , note={Joakim} } @book{b2, , title={{Thermodynamic Analysis and Improvement of Energy Systems ON EXERGETICS, ECONOMICS AND OPTIMIZATION OF TECHNICAL PROCESSES TO MEET ENVIRONMENTAL CONDITIONS, Mei Gong and Göran Wall, TAIES'97}} , author={{ ChinaBeijing }} , year={June 10-13, 1997} } @incollection{b3, , title={{Technical, Environmental and Exergetic Aspects of Hydrogen Energy Systems}} , author={{ IDincer }} , journal={{International Journal of Hydrogen Energy}} 27 , year={2002} } @incollection{b4, , title={{Review of advanced absorption cycles: Performance improvement and temperature lift enhancement}} , author={{ YTKang } and { YKunugi } and { TKashiwagi }} , journal={{Int. J. Refrig}} 23 , year={2000} } @book{b5, , title={{Performance of double effect absorption compression cycles for air-conditioning using methanol-TEGDME and TFE-TEGDME}} , author={{ DBoer } and { MValles } and { ACoronas }} } @incollection{b6, , title={{Performance analysis of a heat engine driven combined vapor compression-absorptionejector refrigerator}} , author={{ SGöktun }} , journal={{En. Con. Mgmt}} 41 , year={2000} } @incollection{b7, , title={{Cycle de frigopompes ? absorption en cascades matérielles-détermination du nombre d'étages optimal pour le mélange ammoniac-eau}} , author={{ ALaouir } and { PLegoff } and { JMHornt }} , journal={{Int J. Refrig}} 25 , year={2002} } @incollection{b8, , title={{Comparative investigation of thermoelectric air-conditioners versus vapour compression and absorption air-conditioners}} , author={{ SBRiffat } and { GQiu }} , journal={{App. Th. Eng}} 24 , year={2004} } @incollection{b9, , title={{Superstructure-Based Optimization of Vapor Compression-Absorption Cascade Refrigeration Systems}} , author={{ SFMussati } and { TMorosuk } and { MCMussati }} , journal={{Entropy}} 22 428 , year={2020} } @incollection{b10, , title={{Energy Conservation in Absorption Refrigeration Cycles Using DES as a New Generation of Green Absorbents}} , author={{ RHaghbakhsh } and { HPeyrovedin } and { SRaeissi } and { AR CDuarte } and { AShariati }} , journal={{Entropy}} 22 409 , year={2020} } @incollection{b11, , title={{Exergetic Analysis of a Novel Solar Cooling System for Combined Cycle Power Plants}} , author={{ FCalise } and { LLibertini } and { MVicidomini }} , journal={{Entropy}} 18 356 , year={2016} } @incollection{b12, , title={{Performance of a water ammonia absorption system operating at three pressure levels}} , author={{ NBouaziz } and { BenIffa } and { RKairouani } and { L }} , journal={{Mechanics & Industry}} 3 4 , year={2011} } @incollection{b13, , title={{Energy and exergy investigation of a novel double effect hybrid absorption refrigeration system for solar cooling}} , author={{ NahlaBouaziz } and { DLounissi }} , journal={{International journal of hydrogen energy}} 40 , year={2005} } @incollection{b14, , title={{Exergetic Comparison of Two Configurations for an Upgraded Absorption/Compression Heat Pump Integrated Organic Mixtures}} , author={{ RToujania } and { RBayindir } and { NBouaziz } and { IColak }} , booktitle={{7th International Conference on Renewable Energy Research and Applications (ICRERA)}} Paris , year={2018. 2018} } @book{b15, , title={{Exergetic comparison of two novel mixtures for an upgrated absorption/compression heat pump: R245fa/DMAC and R236fa/DMAC}} , author={{ RabebToujani } and { DorraLounissi } and { NahlaBouaziz }} 4 } @book{b16, , title={{Conférence Internationale des Energies Renouvelables (CIER-2016) Proceedings of Engineering and Technology -PET Pol}} 16 } @book{b17, , title={{A numerical investigation of a diffusion-absorption refrigeration cycle based on R124-DMAC mixture for solar cooling}} , author={{ NBen Ezzine } and { RGarma } and { ABellagi }} , year={2010} 35 , address={Energy} } @incollection{b18, , title={{Experimental studies on R134a-DMAC hot water based vapor absorption refrigeration systems}} , author={{ VMuthu } and { RSaravanan } and { SRenganarayanan }} , journal={{International Journal of Thermal Sciences}} 47 , year={2008} } @incollection{b19, , title={{Antonios Frangoudakis, Fluid selection for a low-temperature solar organic Rankine cycle}} , author={{ GeorgeBertrand Fankam Tchanche } and { GregoryPapadakis } and { Lambrinos }} , journal={{Applied Thermal Engineering}} 29 , year={2009} } @incollection{b20, , title={{Exergy analysis: An efficient tool for process optimization and understanding. Demonstrated on the vinyl-chloride plant of Akzo Nobel}} , booktitle={{Pages S545-S552}} , year={15 March 1998} 22 , note={A.J.G.G. Gravelandab E. 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An overview of the subject area of EcoDesign and the papers in this special issue}} , author={{ RKarlsson } and { CLuttropp }} , journal={{Journal of Cleaner Production}} 14 , year={2006} } @incollection{b28, , title={{The role of exergy in energy policy making}} , author={{ IDincer }} , journal={{Energy Policy}} 30 2 , year={2002} } @incollection{b29, , title={{LCA comparison of technical solutions for CO 2 emission reduction in power generation}} , author={{ LLombardi }} , journal={{Energy Conversion and Management}} 44 , year={2003} } @book{b30, , title={{Exergetic Analyses of a Particular Absorption Cooling System, Defect and Diffusion Forum}} , author={{ NBouaziz } and { DLounissi } and { LKairouani } and { MElGanaoui }} , year={2012} } @book{b31, , title={{Systems account of societal exergy utilization: China}} , author={{ QChen } and { ZHQi }} , year={2003. 2007} ecological modeling } @book{b32, , title={{Exergy analysis for resource conversion of the Chinese Society under the material product system}} , author={{ BChen } and { GQChen }} , year={2006. 1993} 31 , address={Energy} } @incollection{b33, , title={{Energy and exergy investigation of a novel double effect hybrid absorption refrigeration system for solar cooling}} , author={{ NahlaBouaziz } and { DLounissi }} , journal={{International journal of hydrogen energy}} 40 , year={2015} } @incollection{b34, , title={{Exergy analysis and cumulative exergy consumption of complex chemical processes, the industrial chloralkali processes}} , author={{ DRMorris }} , journal={{Chem. Eng. Sci}} 46 , year={1991} } @book{b35, , title={{The value of the exergetic life cycle assessment besides the LCA, Energy Conversion and Management}} , author={{ RLCornelissen } and { GGHirs }} , year={2002} 43 } @incollection{b36, , title={{On exergy and sustainable development-Part 2: Indicators and methods}} , author={{ MGong } and { GEt Wall }} , journal={{Exergy an International Journal}} 1 4 , year={2001} } @incollection{b37, , title={{Exergetic pollution potential: Estimating the revocability of chemical pollution}} , author={{ TPSeager } and { TLEt Theis }} , journal={{Exergy an International Journal}} 2 , year={2002b} } @book{b38, , title={{Life cycle assessment of the production of crude palm kernel}} , author={{ VSubramaniam } and { CYMay } and { HMuhammad } and { ZHashim } and { YATan } and { PWei }} }