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Lithium bromide absorption machines: Pressure drop and mass transfer in solutions conical sheetsPALACIOS, E; IZQUIERDO, M; LIZARTE, R et al.Energy conversion and management. 2009, Vol 50, Num 7, pp 1802-1809, issn 0196-8904, 8 p.Article

Experimental study of a graphite disks absorber couple to a heat transformerOLARTE-CORTES, J; TORRES-MERINO, J; SIQUEIROS, J et al.Experimental thermal and fluid science. 2013, Vol 46, pp 29-36, issn 0894-1777, 8 p.Article

Pourbaix diagrams for chromium in concentrated aqueous lithium bromide solutions at 25 °CMUNOZ-PORTERO, M. . J; GARCIA-ANTON, J; GUINON, J. L et al.Corrosion science. 2009, Vol 51, Num 4, pp 807-819, issn 0010-938X, 13 p.Article

A numerical model for the dynamic simulation of a recirculation single-effect absorption chillerZINET, Matthieu; RULLIERE, Romuald; HABERSCHILL, Philippe et al.Energy conversion and management. 2012, Vol 62, pp 51-63, issn 0196-8904, 13 p.Article

Modelling a solar-assisted air-conditioning system installed in CIESOL building using an artificial neural networkROSIEK, S; BATLLES, F. J.Renewable energy. 2010, Vol 35, Num 12, pp 2894-2901, issn 0960-1481, 8 p.Article

Exergy calculation of lithium bromide―water solution and its application in the exergetic evaluation of absorption refrigeration systems LiBr-H2OPALACIOS-BERECHE, Reynaldo; GONZALES, R; NEBRA, S. A et al.International journal of energy research. 2012, Vol 36, Num 2, pp 166-181, issn 0363-907X, 16 p.Article

Energy and exergy analysis of an experimental single-stage heat transformer operating with the water/lithium bromide mixtureRIVERA, W; CEREZO, J; MARTINEZ, H et al.International journal of energy research. 2010, Vol 34, Num 13, pp 1121-1131, issn 0363-907X, 11 p.Article

Energy and exergy analysis of a double absorption heat transformer operating with water/lithium bromideMARTINEZ, H; RIVERA, W.International journal of energy research. 2009, Vol 33, Num 7, pp 662-674, issn 0363-907X, 13 p.Article

Nanofibrous membrane-based absorption refrigeration systemRASOOL NASR ISFAHANI; SAMPATH, Karthikeyan; MOGHADDAM, Saeed et al.International journal of refrigeration. 2013, Vol 36, Num 8, pp 2297-2307, issn 0140-7007, 11 p.Article

The TbBr3―LiBr binary system: Experimental thermodynamic investigation and assessment of phase diagramRYCERZ, L; GONG, W; CAUNE-ESCARD, M et al.Journal of chemical thermodynamics. 2013, Vol 56, pp 15-20, issn 0021-9614, 6 p.Article

New flat-fan sheets adiabatic absorber for direct air-cooled LiBr/H2O absorption machines: Simulation, parametric study and experimental resultsGONZALEZ-GIL, A; IZQUIERDO, M; MARCOS, J. D et al.Applied energy. 2012, Vol 98, pp 162-173, issn 0306-2619, 12 p.Article

Experimental investigation on an ammonia-water-lithium bromide absorption refrigeration system without solution pumpTIEHUI WU; YUYUAN WU; ZHIQIANG YU et al.Energy conversion and management. 2011, Vol 52, Num 5, pp 2314-2319, issn 0196-8904, 6 p.Article

First and second law multidimensional analysis of a triple absorption heat transformer (TAHT)DONNELLAN, Philip; BYRNE, Edmond; OLIVEIRA, Jorge et al.Applied energy. 2014, Vol 113, pp 141-151, issn 0306-2619, 11 p.Article

R&D of lithium bromide absorption heat transformerWANG, C; LU, Z.Science et technique du froid. 1997, pp 527-533, issn 0151-1637, isbn 7-5608-1805-6, 2VolConference Paper

Korrosionsverhalten ausgewählter Werkstoffe in Lithiumbromid-Lösung für den Anwendungsfall Absorptionskältemaschinen = Corrosion behavior of selected materials in lithium bromide solution for the application absorption chillersBRANDT, B.Materials and corrosion (1995). 2004, Vol 55, Num 7, pp 536-542, issn 0947-5117, 7 p.Article

Analysis of effective wetting area of a horizontal generator for an absorption heat transformerLAZCANO-VELIZ, Y; SIQUEIROS, J; JUAREZ-ROMERO, D et al.Applied thermal engineering. 2014, Vol 62, Num 2, pp 845-849, issn 1359-4311, 5 p.Article

A mathematical model with experiments of single effect absorption heat pump using LiBr—H2OJIAN SUN; LIN FU; SHIGANG ZHANG et al.Applied thermal engineering. 2010, Vol 30, Num 17-18, pp 2753-2762, issn 1359-4311, 10 p.Article

Absorber performance of a water/lithium-bromide absorption chillerGUOZHEN XIE; GUOGANG SHENG; PRADEEP KUMAR BANSAL et al.Applied thermal engineering. 2008, Vol 28, Num 13, pp 1557-1562, issn 1359-4311, 6 p.Article

Study of thermodynamic properties of binary solutions of lithium bromide or lithium chloride with methanolSAFAROV, J. T.Fluid phase equilibria. 2005, Vol 236, Num 1-2, pp 87-95, issn 0378-3812, 9 p.Article

Solar-powered single-and double-effect directly air-cooled LiBr-H2O absorption prototype built as a single unitIZQUIERDO, M; GONZALEZ-GIL, A; PALACIOS, E et al.Applied energy. 2014, Vol 130, pp 7-19, issn 0306-2619, 13 p.Article

Preparation of Fe/Cr doped SiO2 thin film on 304 stainless steel substrate originated from corrosionCHEN, H.-X; MA, X.-H; BO, S.-S et al.Corrosion engineering, science and technology. 2010, Vol 45, Num 6, pp 475-479, issn 1478-422X, 5 p.Article

Effect of inorganic inhibitors on the corrosion behavior of 1018 carbon steel in the LiBr + ethylene glycol + H2O mixtureSAMIENTO-BUSTOS, E; GONZALEZ RODRIGUEZ, J. G; URUCHURTU, J et al.Corrosion science. 2008, Vol 50, Num 8, pp 2296-2303, issn 0010-938X, 8 p.Article

Vapor pressures of lithium bromide or lithium chloride and ethanol solutionsSAFAROV, Javid T.Fluid phase equilibria. 2006, Vol 243, Num 1-2, pp 38-44, issn 0378-3812, 7 p.Article

Vapor pressures, osmotic and activity coefficients for (LiBr + acetonitrile) between the temperatures (298.15 and 343.15) KNASIRZADEH, Karamat; NEUEDER, Roland; KUNZ, Werner et al.Journal of chemical thermodynamics. 2004, Vol 36, Num 6, pp 511-517, issn 0021-9614, 7 p.Article

Development of a thermo-gravity pumping mechanism for circulating the working fluids in a novel LiBr―H2O vapour absorption refrigeration (VAR) systemPAURINE, A; MAIDMENT, G. G; EAMES, I. W et al.Applied thermal engineering. 2012, Vol 47, pp 25-33, issn 1359-4311, 9 p.Article

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