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Md. A. Islam and B. B. Saha
Makhnatch P, Khodabandeh R (2014) The role of environmental metrics (GWP, TEWI, LCCP)
in the selection of low GWP refrigerant. Energy Proc 61:2460–2463. https://doi.org/10.1016/j.
egypro.2014.12.023
McIntosh IBD, Mitchell JW, Beckman WA (2000) Fault detection and diagnosis in chillers—part
I: model development and application. ASHRAE Trans 106:268
Mitsubishi Plastics launches a compact adsorption chiller with the highest cooling capacity per
volume in the world (2012) https://www.m-chemical.co.jp/en/news/mpi/201203140474.html.
Accessed 24 Mar 2019
Mota-Babiloni A, Navarro-Esbrí J, Makhnatch P, Molés F (2017) Refrigerant R32 as lower GWP
working fluid in residential air conditioning systems in Europe and the USA. Renew Sustain
Energy Rev 80:1031–1042. https://doi.org/10.1016/j.rser.2017.05.216
Ng KC, Chua HT, Chung CY, Loke CH, Kashiwagi T, Akisawa A et al (2001) Experimental investigation of the silica gel-water adsorption isotherm characteristics. Appl Therm Eng 21:1631–1642.
https://doi.org/10.1016/S1359-4311(01)00039-4
Ng KC, Wang X, Lim YS, Saha BB, Chakarborty A, Koyama S et al (2006) Experimental study on
performance improvement of a four-bed adsorption chiller by using heat and mass recovery. Int
J Heat Mass Transf 49:3343–3348. https://doi.org/10.1016/j.ijheatmasstransfer.2006.01.053
Pal A, Thu K, Mitra S, El-Sharkawy II, Saha BB, Kil HS et al (2017) Study on biomass derived
activated carbons for adsorptive heat pump application. Int J Heat Mass Transf 110:7–19. https://
doi.org/10.1016/j.ijheatmasstransfer.2017.02.081
Phelan P, Otanicar T, Taylor R, Tyagi H (2013) Trends and opportunities in direct-absorption solar
thermal collectors. J Therm Sci Eng Appl 5:021003. https://doi.org/10.1115/1.4023930
Poggi F, Macchi-Tejeda H, Leducq D, Bontemps A (2008) Refrigerant charge in refrigerating
systems and strategies of charge reduction. Int J Refrig 31:353–370. https://doi.org/10.1016/j.
ijrefrig.2007.05.014
Quick calculations for walk-in coolers and freezers (2019). Heatcraft Refrigeration Products LLC.
http://www.uscooler.com/blog/load-calc.pdf. Accessed 9 Apr 2019
Rahman S, de Castro A (1995) Environmental impacts of electricity generation: a global perspective.
IEEE Trans Energy Convers 10:307–314. https://doi.org/10.1109/60.391897
Reddy VS, Panwar NL, Kaushik SC (2012) Exergetic analysis of a vapour compression refrigeration
system with R134a, R143a, R152a, R404A, R407C, R410A, R502 and R507A. Clean Technol
Environ Policy 14:47–53. https://doi.org/10.1007/s10098-011-0374-0
Rosset K, Mounier V, Guenat E, Schiffmann J (2018) Multi-objective optimization of turbo-ORC
systems for waste heat recovery on passenger car engines. Energy 159:751–765. https://doi.org/
10.1016/j.energy.2018.06.193
Rude J (2019) How products are made. http://www.madehow.com/Volume-3/Air-Conditioner.html.
Accessed 10 Apr 2019
Rupp J (2009) SolarCombi+, SorTech package solution description. http://www.solarcombiplus.
eu/docs/d44_sortech_v02_english.pdf. Accessed 23 Apr 2019
Saha BB, Akisawa A, Kashiwagi T (2001) Solar/waste heat driven two-stage adsorption chiller: the
prototype. Renew Energy 23:93–101. https://doi.org/10.1016/S0960-1481(00)00107-5
Saha BB, El-Sharkawy II, Chakraborty A, Koyama S, Banker ND, Dutta P et al (2006) Evaluation
of minimum desorption temperatures of thermal compressors in adsorption refrigeration cycles.
Int J Refrig 29:1175–1181. https://doi.org/10.1016/j.ijrefrig.2006.01.005
Saha BB, El-Sharkawy II, Thorpe R, Critoph RE (2012) Accurate adsorption isotherms of R134a
onto activated carbons for cooling and freezing applications. Int J Refrig 35:499–505. https://doi.
org/10.1016/j.ijrefrig.2011.05.002
Sarbu I (2014) A review on substitution strategy of non-ecological refrigerants from vapour
compression-based refrigeration, air-conditioning and heat pump systems. Int J Refrig
46:123–141. https://doi.org/10.1016/j.ijrefrig.2014.04.023
Sayigh AAM, McVeigh JC (1992) Solar air conditioning and refrigeration, 1st edn. Pergamon Press,
New York
Md. A. Islam and B. B. Saha
Makhnatch P, Khodabandeh R (2014) The role of environmental metrics (GWP, TEWI, LCCP)
in the selection of low GWP refrigerant. Energy Proc 61:2460–2463. https://doi.org/10.1016/j.
egypro.2014.12.023
McIntosh IBD, Mitchell JW, Beckman WA (2000) Fault detection and diagnosis in chillers—part
I: model development and application. ASHRAE Trans 106:268
Mitsubishi Plastics launches a compact adsorption chiller with the highest cooling capacity per
volume in the world (2012) https://www.m-chemical.co.jp/en/news/mpi/201203140474.html.
Accessed 24 Mar 2019
Mota-Babiloni A, Navarro-Esbrí J, Makhnatch P, Molés F (2017) Refrigerant R32 as lower GWP
working fluid in residential air conditioning systems in Europe and the USA. Renew Sustain
Energy Rev 80:1031–1042. https://doi.org/10.1016/j.rser.2017.05.216
Ng KC, Chua HT, Chung CY, Loke CH, Kashiwagi T, Akisawa A et al (2001) Experimental investigation of the silica gel-water adsorption isotherm characteristics. Appl Therm Eng 21:1631–1642.
https://doi.org/10.1016/S1359-4311(01)00039-4
Ng KC, Wang X, Lim YS, Saha BB, Chakarborty A, Koyama S et al (2006) Experimental study on
performance improvement of a four-bed adsorption chiller by using heat and mass recovery. Int
J Heat Mass Transf 49:3343–3348. https://doi.org/10.1016/j.ijheatmasstransfer.2006.01.053
Pal A, Thu K, Mitra S, El-Sharkawy II, Saha BB, Kil HS et al (2017) Study on biomass derived
activated carbons for adsorptive heat pump application. Int J Heat Mass Transf 110:7–19. https://
doi.org/10.1016/j.ijheatmasstransfer.2017.02.081
Phelan P, Otanicar T, Taylor R, Tyagi H (2013) Trends and opportunities in direct-absorption solar
thermal collectors. J Therm Sci Eng Appl 5:021003. https://doi.org/10.1115/1.4023930
Poggi F, Macchi-Tejeda H, Leducq D, Bontemps A (2008) Refrigerant charge in refrigerating
systems and strategies of charge reduction. Int J Refrig 31:353–370. https://doi.org/10.1016/j.
ijrefrig.2007.05.014
Quick calculations for walk-in coolers and freezers (2019). Heatcraft Refrigeration Products LLC.
http://www.uscooler.com/blog/load-calc.pdf. Accessed 9 Apr 2019
Rahman S, de Castro A (1995) Environmental impacts of electricity generation: a global perspective.
IEEE Trans Energy Convers 10:307–314. https://doi.org/10.1109/60.391897
Reddy VS, Panwar NL, Kaushik SC (2012) Exergetic analysis of a vapour compression refrigeration
system with R134a, R143a, R152a, R404A, R407C, R410A, R502 and R507A. Clean Technol
Environ Policy 14:47–53. https://doi.org/10.1007/s10098-011-0374-0
Rosset K, Mounier V, Guenat E, Schiffmann J (2018) Multi-objective optimization of turbo-ORC
systems for waste heat recovery on passenger car engines. Energy 159:751–765. https://doi.org/
10.1016/j.energy.2018.06.193
Rude J (2019) How products are made. http://www.madehow.com/Volume-3/Air-Conditioner.html.
Accessed 10 Apr 2019
Rupp J (2009) SolarCombi+, SorTech package solution description. http://www.solarcombiplus.
eu/docs/d44_sortech_v02_english.pdf. Accessed 23 Apr 2019
Saha BB, Akisawa A, Kashiwagi T (2001) Solar/waste heat driven two-stage adsorption chiller: the
prototype. Renew Energy 23:93–101. https://doi.org/10.1016/S0960-1481(00)00107-5
Saha BB, El-Sharkawy II, Chakraborty A, Koyama S, Banker ND, Dutta P et al (2006) Evaluation
of minimum desorption temperatures of thermal compressors in adsorption refrigeration cycles.
Int J Refrig 29:1175–1181. https://doi.org/10.1016/j.ijrefrig.2006.01.005
Saha BB, El-Sharkawy II, Thorpe R, Critoph RE (2012) Accurate adsorption isotherms of R134a
onto activated carbons for cooling and freezing applications. Int J Refrig 35:499–505. https://doi.
org/10.1016/j.ijrefrig.2011.05.002
Sarbu I (2014) A review on substitution strategy of non-ecological refrigerants from vapour
compression-based refrigeration, air-conditioning and heat pump systems. Int J Refrig
46:123–141. https://doi.org/10.1016/j.ijrefrig.2014.04.023
Sayigh AAM, McVeigh JC (1992) Solar air conditioning and refrigeration, 1st edn. Pergamon Press,
New York
