204
S. Sangwan and P. R. Chakraborty
Lu ZS, Wang RZ, Wang LW, Chen CJ (2006) Performance analysis of an adsorption refrigerator
using activated carbon in a compound adsorbent. Carbon 44(4):747–752
Luo L, Feidt M (1992) Thermodynamics of adsorption cycles: a theoretical study. Heat Transfer
Eng 13(4):19–31
Mauran S, Prades P, L’haridon F (1993) Heat and mass transfer in consolidated reacting beds for
thermochemical systems. Heat Recovery Syst CHP 13(4):315–319
Mei V, Chaturvedi SK, Lavan BZ (1979) A truck exhaust gas operated absorption refrigeration
system. ASHRAE Trans 85:66–76
Meunier F (2001) Adsorptive cooling: a clean technology. Clean Prod Process 3(1):8–20
Ponec V, Knor Z, ˇ
Cerný S, Smith D, Adams NG (1974) Adsorption on solids. Butterworths, London
Pons M, Guilleminot JJ (1986) Design of an experimental solar-powered, solid-adsorption ice
maker. J Sol Energy Eng 108(4):332–337
Restuccia G, Recupero V, Cacciola G, Rothmeyer M (1988) Zeolite heat pump for domestic heating.
Energy 13(4):333–342
Saha BB, El-Sharkawy II, Chakraborty A, Koyama S (2007) Study on an activated carbon fiber–ethanol adsorption chiller: Part I—system description and modelling. Int J Refrig
30(1):86–95
Saha BB, Habib K, El-Sharkawy II, Koyama S (2009) Adsorption characteristics and heat of adsorption measurements of R-134a on activated carbon. Int J Refrig 32(7):1563–1569
Saha BB, Jribi S, Koyama S, El-Sharkawy II (2011) Carbon dioxide adsorption isotherms on
activated carbons. J Chem Eng Data 56(5):1974–1981
Sharafian A, Bahrami M (2015) Critical analysis of thermodynamic cycle modeling of adsorption
cooling systems for light-duty vehicle air conditioning applications. Renew Sustain Energy Rev
48:857–869
Srivastava NC, Eames IW (1998) A review of adsorbents and adsorbates in solid–vapour adsorption
heat pump systems. Appl Therm Eng 18(9):707–714
Sumathy K, Zhongfu L (1999) Experiments with solar-powered adsorption ice-maker. Renew
Energy 16(1):704–707
Suzuki M (1993) Application of adsorption cooling systems to automobiles. Heat Recovery Syst
CHP 13(4):335–340
Tamainot-Telto Z, Critoph RE (1997) Adsorption refrigerator using monolithic carbon–ammonia
pair. Int J Refrig 20(2):146–155
Turner L (1992) Improvement of activated charcoal-ammonia adsorption heat pumping/refrigeration
cycles: investigation of porosity and heat/mass transfer chacteristics
Uddin K, El-Sharkawy II, Miyazaki T, Saha BB, Koyama S (2014) Thermodynamic analysis of
adsorption refrigeration cycles using parent and surface treated Maxsorb III/ethanol pairs
Wang RZ (2001a) Adsorption refrigeration research in Shanghai Jiao Tong University. Renew
Sustain Energy Rev 5(1):1–37
Wang RZ (2001b) Performance improvement of adsorption cooling by heat and mass recovery
operation. Int J Refrig 24(7):602–611
Wang LW (2005) Performances, mechanisms and application of a new type compound adsorbent
for efficient heat pipe type refrigeration driven by waste heat. Doctor Dissertation, Shanghai Jiao
Tong University, Shanghai, China
Wang RZ, Li M, Xu YX, Wu JY (2000) An energy efficient hybrid system of solar powered water
heater and adsorption ice maker. Sol Energy 68(2):189–195
Wang LW, Wang RZ, Wu JY, Wang K (2004) Compound adsorbent for adsorption ice maker on
fishing boats. Int J Refrig 27(4):401–408
Wang R, Wang L, Wu J (2014) Adsorption refrigeration technology: theory and application. Wiley
Zhu R, Han B, Lin M, Yu Y (1992) Experimental investigation on an adsorption system for producing
chilled water. Int J Refrig 15(1):31–34
S. Sangwan and P. R. Chakraborty
Lu ZS, Wang RZ, Wang LW, Chen CJ (2006) Performance analysis of an adsorption refrigerator
using activated carbon in a compound adsorbent. Carbon 44(4):747–752
Luo L, Feidt M (1992) Thermodynamics of adsorption cycles: a theoretical study. Heat Transfer
Eng 13(4):19–31
Mauran S, Prades P, L’haridon F (1993) Heat and mass transfer in consolidated reacting beds for
thermochemical systems. Heat Recovery Syst CHP 13(4):315–319
Mei V, Chaturvedi SK, Lavan BZ (1979) A truck exhaust gas operated absorption refrigeration
system. ASHRAE Trans 85:66–76
Meunier F (2001) Adsorptive cooling: a clean technology. Clean Prod Process 3(1):8–20
Ponec V, Knor Z, ˇ
Cerný S, Smith D, Adams NG (1974) Adsorption on solids. Butterworths, London
Pons M, Guilleminot JJ (1986) Design of an experimental solar-powered, solid-adsorption ice
maker. J Sol Energy Eng 108(4):332–337
Restuccia G, Recupero V, Cacciola G, Rothmeyer M (1988) Zeolite heat pump for domestic heating.
Energy 13(4):333–342
Saha BB, El-Sharkawy II, Chakraborty A, Koyama S (2007) Study on an activated carbon fiber–ethanol adsorption chiller: Part I—system description and modelling. Int J Refrig
30(1):86–95
Saha BB, Habib K, El-Sharkawy II, Koyama S (2009) Adsorption characteristics and heat of adsorption measurements of R-134a on activated carbon. Int J Refrig 32(7):1563–1569
Saha BB, Jribi S, Koyama S, El-Sharkawy II (2011) Carbon dioxide adsorption isotherms on
activated carbons. J Chem Eng Data 56(5):1974–1981
Sharafian A, Bahrami M (2015) Critical analysis of thermodynamic cycle modeling of adsorption
cooling systems for light-duty vehicle air conditioning applications. Renew Sustain Energy Rev
48:857–869
Srivastava NC, Eames IW (1998) A review of adsorbents and adsorbates in solid–vapour adsorption
heat pump systems. Appl Therm Eng 18(9):707–714
Sumathy K, Zhongfu L (1999) Experiments with solar-powered adsorption ice-maker. Renew
Energy 16(1):704–707
Suzuki M (1993) Application of adsorption cooling systems to automobiles. Heat Recovery Syst
CHP 13(4):335–340
Tamainot-Telto Z, Critoph RE (1997) Adsorption refrigerator using monolithic carbon–ammonia
pair. Int J Refrig 20(2):146–155
Turner L (1992) Improvement of activated charcoal-ammonia adsorption heat pumping/refrigeration
cycles: investigation of porosity and heat/mass transfer chacteristics
Uddin K, El-Sharkawy II, Miyazaki T, Saha BB, Koyama S (2014) Thermodynamic analysis of
adsorption refrigeration cycles using parent and surface treated Maxsorb III/ethanol pairs
Wang RZ (2001a) Adsorption refrigeration research in Shanghai Jiao Tong University. Renew
Sustain Energy Rev 5(1):1–37
Wang RZ (2001b) Performance improvement of adsorption cooling by heat and mass recovery
operation. Int J Refrig 24(7):602–611
Wang LW (2005) Performances, mechanisms and application of a new type compound adsorbent
for efficient heat pipe type refrigeration driven by waste heat. Doctor Dissertation, Shanghai Jiao
Tong University, Shanghai, China
Wang RZ, Li M, Xu YX, Wu JY (2000) An energy efficient hybrid system of solar powered water
heater and adsorption ice maker. Sol Energy 68(2):189–195
Wang LW, Wang RZ, Wu JY, Wang K (2004) Compound adsorbent for adsorption ice maker on
fishing boats. Int J Refrig 27(4):401–408
Wang R, Wang L, Wu J (2014) Adsorption refrigeration technology: theory and application. Wiley
Zhu R, Han B, Lin M, Yu Y (1992) Experimental investigation on an adsorption system for producing
chilled water. Int J Refrig 15(1):31–34
