1 Critoph, R.E., Zhong, Y., "Review of trends in solid sorption refrigeration and heat pumping technology", J. Process Mech. Eng., 219, 285-300 (2005).
2 Wang, R.Z., Oliveira, R.G., "Adsorption refrigeration-An efficient way to make good use of waste heat and solar energy", Prog. Energy Combust. Sci., 32, 424-458 (2006).
3 Chua, T., Ng, K.C., Chakraborty, A., Oo, N.M., Othman, M.A., "Adsorption characteristics of silica gel-water systems", J. Chem. Eng. Data, 47, 1177-1181 (2002).
4 Cho, S.H., Kim J.N., "Modeling of a silica gel / water adsorption cooling system", Energy, 17 (9), 829-839 (1992).
5 Boelman, E.C., Saha, B.B., Kashiwagi, T., "Parametric study of a silica gel-water adsorption refrigeration cycle—the influence of thermal capacitance and heat exchanger UA-values on cooling capacity, power density and COP", ASHRAE Transactions, 103, 139-148 (1997).
6 Saha, B.B., Kashiwagi, T., "Experimental investigation of an advanced adsorption refrigeration cycle", ASHRAE Transactions, 103, 50-58 (1997).
7 Kakiuchi, H., Shimooka, S., Iwade, M., Oshima, K., Yamazaki, M., Terada, S., "Water vapor adsorbent FAM-Z02 and its applicability to adsorption heat pump", J. Chem. Eng. Japan, 31, 273-277 (2005).
8 Kakiuchi, H., Shimooka, S., Iwade, M., Oshima, K., Yamazaki, M., Terada, S., "Novel water vapor adsorbent FAM-Z01 and its applicability to an adsorption heat pump", J. Chem. Eng. Japan, 31, 361-364 (2005).
9 Critoph, R.E., Vogel, R., "Possible adsorption pairs for use in solar cooling", Ambient Energy, 7, 183-190 (1986).
10 Meunier, F., Douss, N., "Performance of adsorption heat pumps. Active carbon-methanol and zeolite-water pairs", ASHRAE Transactions, 2, 267-274 (1990).
11 Wang, Q., Chen, G.M., Han, B.Y., "Determination and analysis of the effective diffusivity of adsorption refrigeration working pair", Acta Energiae Solaris Sinica, 22, 187-191 (2001).
12 Wang, W., Wang, R.Z., "Investigation of solid adsorption refrigeration cycle with non-equilibrium adsorption", J. Eng. Thermophys., 22, 674-676 (2001).
13 Yang, P.Z., Chen, H.X., "Heat and mass transfer character on adsorption bed with consideration of non-equilibrium adsorption", Cryogenics, (4), 15-20 (2008).
14 Demir, H., Mobedi, M., Ulku, S., "Effects of porosity on heat and mass transfer in a granular adsorbent bed", Int. Commun. Heat Mass Transfer, 36, 372-377 (2009).
15 Tamainot-Telto, Z., Critoph, R.E., "Monolithic carbon for sorption refrigeration and heat pump applications", Appl. Therm. Eng., 21, 37-52 (2001).
16 Leong, K.C., Liu, Y., "Numerical modeling of combined heat and mass transfer in the adsorbent bed of a zeolite/water cooling system", Appl. Therm. Eng., 24, 2359-2374 (2004).
17 Wang, L.W., Tamainot-Telto, Z., Thorpe, R., Critoph, R.E., Metcalf, S.J., Wang, R.Z., "Study of thermal conductivity, permeability, and adsorption performance of consolidated composite activated carbon adsorbent for refrigeration", Renewable Energy, 36, 2062-2066 (2011).
18 Wang, L.W., Metcalf, S.J., Critoph, R.E., Tamainot-Telto, Z., Thorpe, R., "Two types of natural graphite host matrix for composite activated carbon adsorbents", Appl. Therm. Eng., 50 (2), 1652-1657 (2013).
19 Tian, B., Jin, Z.Q., Wei, D.S., Wang, L.W., Wang, R.Z., "Testing on permeability of compacted graphite", CIESC J., 61, 35-38 (2010). (in Chinese)
20 Jin, Z.Q., Tian, B., Wang, L.W., Wang, R.Z., "Study on thermal conductivities and permeabilities of AC/ENG consolidated composite adsorbents", Journal of Shanghai Jiaotong University, 45, 866-869 (2011).
21 Guilleminot, J.J., Chalfen, J.B, Choisier, A., "Heat and mass transfer characteristics of composites for adsorption heat pumps", In: Proceedings of the International Absorption Heat Pump Conference, ASME, AES-Vol. 31, 401-405, New Orleans (1994). |