全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

A Review Study of Experimental and Theoretical Humidification Dehumidification Solar Desalination Technology

DOI: 10.4236/cweee.2020.93005, PP. 48-74

Keywords: Humidification, Dehumidification, Desalination, Experimental Study, Theoretical Study, Solar Energy, HDH

Full-Text   Cite this paper   Add to My Lib

Abstract:

Most of the desalination technologies consume a huge quantity of energy resulting from petroleum products in the form of heat or electrical energy. Solar desalination is a promisingly sustainable freshwater production technology. Solar desalination humidification dehumidification process showed the best approach as it is of the highest overall energy efficiency. In this review paper, a detailed study of the previous work is performed on solar humidification dehumidification desalination techniques experimentally and theoretically. Also in this review, different types of HDH systems were mentioned. The review showed that the humidification dehumidification desalination systems are suitable for decentralized demand. On the other hand, capacity of HDH units is not as large as conventional methods or small as solar stills. Finally, this study threw light on the scope of the parameters which have a considerable influence on increasing the freshwater output of the HDH systems as feed water flow rate, air flow rate, and design of the evaporator, condenser, and packing material. A brief economical study and a comparison of the costs per liter are performed for various humidification dehumidification desalination systems presented in this study.

References

[1]  Müller-Holst, H., Engelhardt, M., and Scholkort, W. (1999) Small-Scale Thermal Seawater Desalination Simulation and Optimization of System Design. Desalination, 122, 255-262.
https://doi.org/10.1016/S0011-9164(99)00046-6
[2]  Bouronni, K., Chaibi, M.T. and Tadrist, L. (2001) Water Desalination by Humidification and Dehumidification of Air: State of the Art. Desalination, 137, 167-176.

https://doi.org/10.1016/S0011-9164(01)00215-6
[3]  Farid, M. and Al-Hajaj, A.W. (1996) Solar Desalination with Humidification-De- humidification Cycle. Desalination, 106, 427-429.
https://doi.org/10.1016/S0011-9164(96)00141-5
[4]  Al-Hallaj, S., Farid, M. and Tamimi, A.R. (1998) Solar Desalination with Humidification Dehumidification Cycle: Performance of the Unit. Desalination, 120, 273-280.
https://doi.org/10.1016/S0011-9164(98)00224-0
[5]  Nawayseh, N.K., Farid, M.M. Omar, A.A., Al-Hallaj, S. and Tamimi, A.R. (1997) A Simulation Study to Improve the Performance of a Solar Humidification-Dehumi- dification Desalination Unit Constructed in Jordan. Desalination, 109, 277-284.
https://doi.org/10.1016/S0011-9164(97)00074-X
[6]  Nawayseh, N.K., Farid, M.M., Al-Hallaj, S. and Al-Timimi, A.R. (1999) Solar Desalination Based on Humidification Process—I. Evaluating the Heat and Mass Transfer Coefficients. Energy Conversion Management, 40, 1423-1439.
https://doi.org/10.1016/S0196-8904(99)00018-7
[7]  Farid, M.M., Parekh, S., Selman, J.R. and Al-Hallaj, S. (2003) Solar Desalination with a Humidification-Dehumidification Cycle: Mathematical Modeling of the Unit. Desalination, 151, 153-164.
https://doi.org/10.1016/S0011-9164(02)00994-3
[8]  Nawayseh, N.K., Farid, M.M., Omar, A.A. and Sabirin, A. (1999) Solar Desalination Based on Humidification Process—II. Computer Simulation. Energy Conversion Management, 40, 1441-1461.
https://doi.org/10.1016/S0196-8904(99)00017-5
[9]  Narayan, G., Sharqawy, M.H., Lienhard V, J.H. and Zubair, S.M. (2010) Thermodynamic Analysis of Humidification Dehumidification Desalination Cycles. Desalination and Water Treatment, 16, 339-353.
https://doi.org/10.5004/dwt.2010.1078
[10]  Soufari, S.M., Zamen, M. and Amidpour, M. (2009) Performance Optimization of the Humidification-Dehumidification Desalination Process Using Mathematical Programming. Desalination, 237, 305-317.
https://doi.org/10.1016/j.desal.2008.01.024
[11]  Bacha, H.B., Boutguedna, M., Abid, M.S. and Maalej, A.Y. (1999) Modeling and Simulation of a Water Desalination Station with Solar Multiple Condensation Evaporation Cycle Technique. Renewable Energy, 18, 349-365.
https://doi.org/10.1016/S0960-1481(98)00800-3
[12]  Bacha, H.B., Bouzguenda, M., Damak, T., Abid, M.S. and Maalej, A.Y. (2000) A Study of a Water Desalination Station Using the SMCEC Technique: Production Optimization. Renewable Energy, 21, 523-536.
https://doi.org/10.1016/S0960-1481(99)00071-3
[13]  Chafik, E. (2003) A New Seawater Desalination Process Using Solar Energy. Desalination, 153, 25-37.
https://doi.org/10.1016/S0011-9164(02)01090-1
[14]  Khedr, M. (1993) Techno-Economic Investigation of an Air Humidification-Dehu- midification Desalination Process. Chemical Engineering & Technology, 16, 270-274.
https://doi.org/10.1002/ceat.270160410
[15]  Dai, Y.J. and Zhang, H.F. (2000) Experimental Investigation of a Solar Desalination Unit with Humidification and Dehumidification. Desalination, 130, 169-175.
https://doi.org/10.1016/S0011-9164(00)00084-9
[16]  Kolb, A. (1997) Theoretical and Experimental Investigations on a New Solar Air Collector with Through-Flow Absorber. Energy Technology, 356, 91-98.
[17]  Mistry, K.H., Mitsos, A.H. and Lienhard V, J.H. (2011) Optimal Operating Conditions and Configurations for Humidification-Dehumidification Cycles. International Journal of Thermal Sciences, 50, 779-789.
https://doi.org/10.1016/j.ijthermalsci.2010.12.013
[18]  Dai, Y.J., Wang, R.Z. and Zhang, H.F. (2002) Parametric Analysis to Improve the Performance of a Solar Desalination Unit with Humidification and Dehumidification. Desalination, 142, 107-118.
https://doi.org/10.1016/S0011-9164(01)00430-1
[19]  Mousa, K., Abu, A. and Kandi, V.R. (2003) Performance Evaluation of Desalination Processes Based on the Humidification Dehumidification Cycle with Different Carrier Gases. Desalination, 156, 281-293.
https://doi.org/10.1016/S0011-9164(03)00359-X
[20]  Orfi, J., Laplante, M., Marmouch, H., Glanis, N., Benhamou, B., BenNasrullah Nguyen, B. and Nguyen, C.T. (2004) Experimental and Theoretical Study of a Humidification Dehumidification Water Desalination System Using Solar Energy. Desalination, 168, 151-159.
https://doi.org/10.1016/j.desal.2004.06.181
[21]  Ettouney, H. (2005) Design and Analysis of Humidification Dehumidification Desalination Process. Desalination, 183, 341-352.
https://doi.org/10.1016/j.desal.2005.03.039
[22]  Al-Enezi, G., Ettoney, H. and Fawzy, N. (2006) Low Temperature Humidification- Dehumidification Desalination Process. Energy Conversion and Management, 47, 470-484.
https://doi.org/10.1016/j.enconman.2005.04.010
[23]  Yamali, C. and Solmus, I. (2007) Theoretical Investigation of a Humidification- Dehumidification Desalination System Configured by a Double Pass Flat Plate Solar Air Heater. Desalination, 205, 163-177.
https://doi.org/10.1016/j.desal.2006.02.053
[24]  Hou, S. and Zhang, H. (2008) A Hybrid Solar Desalination Process of the Multi-Effect Humidification Dehumidification and Basin-Type Unit. Desalination, 220, 552-557.
https://doi.org/10.1016/j.desal.2007.01.055
[25]  Mohamed, A.M.I. and El-Minshawy, N.A.S. (2009) Humidification-Dehumidification Desalination System Driven by Geothermal Energy. Desalination, 249, 602-608.
https://doi.org/10.1016/j.desal.2008.12.053
[26]  Amer, E.H., Kotb, H., Mostafa, G.H. and El-Ghalban, A.R. (2009) Theoretical and Experimental Investigation of Humidification-Dehumidification Desalination Unit. Desalination, 249, 949-959.
https://doi.org/10.1016/j.desal.2009.06.063
[27]  Zhani, K. and Ben Bacha, H. (2010) Experimental Investigation of a Solar Desalination Prototype Using the Humidification Dehumidification Principle. Renewable Energy, 35, 2610-2617.
https://doi.org/10.1016/j.renene.2010.03.033
[28]  Eslamimanesh, A. and Hatamipour, M.S. (2010) Economical Study of a Small-Scale Direct Contact Humidification-Dehumidification Desalination Plant. Desalination, 250, 203-207.
https://doi.org/10.1016/j.desal.2008.11.015
[29]  Summers, E.K., Lienhard V, J.H. and Zubair, S.M. (2011) Air-Heating Solar Collectors for Humidification-Dehumidification Desalination Systems. Journal of Solar Energy Engineering, 133, Article ID: 011016.
https://doi.org/10.1115/1.4003295
[30]  Aburub, A., Aliyu, M., Lawal, D. and Antar, M.A. (2017) Experimental Investigations of a Cross-Flow Humidification Dehumidification Desalination System. International Water Technology Journal, 7, 198-208.
[31]  Chehayeb, K.M., Narayan, G.P., Zubair, S.M. and Lienhard V, J.H. (2015) Thermodynamic Balancing of Fixed-Size Two-Stage Humidification Dehumidification Desalination. Desalination, 369, 125-139.
https://doi.org/10.1016/j.desal.2015.04.021
[32]  Mahmoud, M., Teamah, M.A., Hanafy, A.A. and El-Maghlany, W.M. (2018) Experimental Investigation on Water Desalination System Based on Humidification- Dehumidification Method. International Research Journal of Engineering and Technology, 5, 1344-1348.
[33]  Yamal, C. and Solmus, i. (2008) A Solar Desalination System Using Humidification-Dehumidification Process: Experimental Study and Comparison with the Theoretical Results. Desalination, 220, 538-551.
https://doi.org/10.1016/j.desal.2007.01.054
[34]  Ladouy, S. and Khabbazi, A. (2015) Experimental Study of the Water Depth Effect and the Impact of Condensers Connection in a New Desalination System by HDH Process, Using Solar Energy. Energy Procedia, 74, 952-959.
https://doi.org/10.1016/j.egypro.2015.07.726
[35]  Elatter, H.F., Fouda, A. and Nada, S.A. (2016) Performance Investigation of a Novel Solar Hybrid Air Conditioning and Humidification Dehumidification Water Desalination System. Desalination, 382, 28-42.
https://doi.org/10.1016/j.desal.2015.12.023
[36]  Srithar, K., Rajaseenivasan, T., Arulmani, M., Gnanavel, R., Vivar, M. and Fuentes, F. (2018) Energy Recovery from a Vapour Compression Refrigeration System Using Humidification Dehumidification Desalination. Desalination, 439, 155-161.
https://doi.org/10.1016/j.desal.2018.04.008
[37]  Hamed, Mofreh H., Kabeel, A.E., Omara, Z.M. and Sharshir, S.W. (2015) Mathematical and Experimental Investigation of a Solar Humidification-Dehumidification Desalination Unit. Desalination, 358, 9-17.
https://doi.org/10.1016/j.desal.2014.12.005
[38]  Li, G.-P. and Zhang, L.-Z. (2016) Investigation of a Solar Energy Driven and Hollow Fiber Membrane-Based Humidification-Dehumidification Desalination System. Applied Energy, 177, 393-408.
https://doi.org/10.1016/j.apenergy.2016.05.113
[39]  Chen, Q., Ja, M.K., Li, Y. and Chua, K.J. (2018) Evaluation of a Solar Powered Spray Assisted Low Temperature Desalination Technology. Applied Energy, 211, 997-1008.
https://doi.org/10.1016/j.apenergy.2017.11.103
[40]  Li, S.-F., Liu, Z.-H. Shao, Z.-X. Xiao, H.-S. and Xia, N. (2018) Performance Study on a Passive Solar Seawater Desalination System Using Multi-Effect Heat Recovery. Applied Energy, 213, 343-352.
https://doi.org/10.1016/j.apenergy.2018.01.064
[41]  Kabeel, A.E. and Abdelgaied, M. (2018) Experimental Evaluation of a Two Stage Indirect Solar Dryer with Reheating Coupled with HDH Desalination System for Remote Areas. Desalination, 425, 22-29.
https://doi.org/10.1016/j.desal.2017.10.016
[42]  Mahdizade, E.Z. and Ameri, M. (2018) Thermodynamic Investigation of a semi-Open Air, Humidification Dehumidification Desalination System Using Air and Water Heaters. Desalination, 428, 182-198.
https://doi.org/10.1016/j.desal.2017.11.032
[43]  Marale, S., Chiranjeevi, C., Srinivas, T. and ThundilKaruppa Raj, R. (2017) Experimental and Computational Fluid Dynamics Studies on Dehumidifier in a Combined Cooling and Desalination Plant. Thermal Science and Engineering Applications, 9, Article ID: 011007.
https://doi.org/10.1115/1.4034596
[44]  Mahmoud, A., Fath, H. and Ahmed, M. (2018) Enhancing the Performance of a Solar Driven Hybrid Solar Still/Humidification-Dehumidification Desalination System Integrated with Solar Concentrator and Photovoltaic Panels. Desalination, 430, 165-179.
https://doi.org/10.1016/j.desal.2017.12.052
[45]  Capocelli, M., Balsamo, M., Lancia, A. and Barba, D. (2018) Process Analysis of a Novel Humidification-Dehumidification-Adsorption (HDHA) Desalination Method. Desalination, 429, 155-166.
https://doi.org/10.1016/j.desal.2017.12.020
[46]  Ghalavand, Y., Rahimi, A. and Hatamipour, M.S. (2018) Mathematical Modeling for Humidifier Performance in a Compression Desalination System: Insulation Effects. Desalination, 433, 48-55.
https://doi.org/10.1016/j.desal.2018.01.024
[47]  Jamil, M. A., Elmutasim, S.M. and Zubair, S.M. (2018) Exergo-Economic Analysis of a Hybrid Humidification Dehumidification Reverse Osmosis (HDH-RO) System Operating Under Different Retrofits. Energy Conversion and Management, 158, 286-297.
https://doi.org/10.1016/j.enconman.2017.11.025
[48]  He, W.F., Han, D., Zhu, W. and Ji, C. (2018) Thermo-Economic Analysis of a Water-Heated Humidification-Dehumidification Desalination System with Waste Heat Recovery. Energy Conversion and Management, 160, 182-190.
https://doi.org/10.1016/j.enconman.2018.01.048
[49]  Huang, X., Ke, T.F., Yu, X.Q., Liu, W.H., Li, Y. and Ling, X. (2020) Pressure Drop Modeling and Performance Optimization of a Humidification-Dehumidification Desalination System. Applied Energy, 258, Article ID: 114065.
https://doi.org/10.1016/j.apenergy.2019.114065
[50]  Lawal, D.U., Antar, M.A., Khalifa, A., Zubair, S.M. and Al-Sulaiman, F. (2020) Experimental Investigation of Heat Pump Driven Humidification-Dehumidification Desalination System for Water Desalination and Space Conditioning. Desalination, 475, Article ID: 114199.
https://doi.org/10.1016/j.desal.2019.114199
[51]  Shehata, A.I., Kabeel, A.E., Dawood Khairat, M.M., Abo Elazma, A.A., Abdalla, A.M. and Mehanna, A. (2019) Achievement of Humidification and Dehumidification Desalination System by Utilizing a Hot Water Sprayer and Ultrasound Waves Techniques. Energy Conversion and Management, 201, Article ID: 112142.
https://doi.org/10.1016/j.enconman.2019.112142
[52]  Gabrielli, P., Gazzani, M., Novati, N., Sutter, L., Simonetti, R., Molinaroli, L., Manzolini, G. and Mazzotti, M. (2019) Combined Water Desalination and Electricity Generation through a Humidification-Dehumidification Process Integrated with Photovoltaic-Thermal Modules: Design, Performance Analysis and Techno-Economic Assessment. Energy Conversion and Management: X, 1, Article ID: 100004.
https://doi.org/10.1016/j.ecmx.2019.100004
[53]  Giwa, A., Fath, H. and Hasan, S.W. (2016) Humidification-Dehumidification Desalination Process Driven by Photovoltaic Thermal Energy Recovery (PV-HDH) for Small-Scale Sustainable Water and Power Production. Desalination, 377, 163-171.
https://doi.org/10.1016/j.desal.2015.09.018
[54]  Voivontas, D., Yannopoulos, K., Rados, K., Zervos, A. and Assimacopoulos, D. (1999) Market Potential of Renewable Energy Powered Desalination Systems in Greece. Desalination, 121, 159-172.
https://doi.org/10.1016/S0011-9164(99)00017-X
[55]  Goosen, M.F.A. Sablani, S.S., Shayya, W.H. Paton, C. and A1-Hinai, H. (2000) Thermodynamic and Economic Considerations in Solar Desalination. Desalination, 129, 63-89.
https://doi.org/10.1016/S0011-9164(00)00052-7
[56]  Shatat, M., Worall, M. and Riffat, S. (2013) Economic Study for an Affordable Small Scale Solar Water Desalination System in Remote and Semi-Arid Region. Renewable and Sustainable Energy Reviews, 25, 543-551.
https://doi.org/10.1016/j.rser.2013.05.026
[57]  Kabeel, A.E., Elmaaty, T.A. and El-Said, E.M.S. (2013) Economic Analysis of a Small-Scale Hybrid Air HDH-SSF (Humidification and Dehumidification-Water Flashing Evaporation) Desalination Plant. Energy, 53, 306-311.
https://doi.org/10.1016/j.energy.2013.02.042
[58]  Ifras Zubair, M. Al-Sulaiman, F.A., Antarm, M.A. Al-Dini, S.A. and Ibrahim, N.I. (2017) Performance and Cost Assessment of Solar Driven Humidification Dehumidification Desalination System. Energy Conversion and Management, 132, 28-39.
https://doi.org/10.1016/j.enconman.2016.10.005
[59]  Deniz, E. and Cinar, S. (2016) Energy, Exergy, Economic and Environmental (4E) Analysis of a Solar Desalination System with Humidification-Dehumidification. Energy Conversion and Management, 126, 12-19.
https://doi.org/10.1016/j.enconman.2016.07.064
[60]  Rostamzadeh, H., Namin, S.A., Ghaebi, H. and Amidpour, M. (2018) Performance Assessment and Optimization of a Humidification Dehumidification (HDH) System Driven by Absorption-Compression Heat Pump Cycle. Desalination, 447, 84-101.
https://doi.org/10.1016/j.desal.2018.08.015
[61]  Zhang, Y., Zhang, H., Zheng, W.D. You, S.J. and Wang, Y.R. (2019) Numerical Investigation of a Humidification-Dehumidification Desalination System Driven by Heat Pump. Energy Conversion and Management, 180, 641-653.
https://doi.org/10.1016/j.enconman.2018.11.018
[62]  He, W.F., Wen, T., Han, D., Luo, L.T., Li, R.Y. and Zhong, W.C. (2019) Energetic, Entropic and Economic Analysis of a Heat Pump Coupled Humidification Dehumidification Desalination System Using a Packed Bed Dehumidifier. Energy Conversion and Management, 194, 11-21.
https://doi.org/10.1016/j.enconman.2019.04.038
[63]  Zhang, Y., Zhu, C.G., Zhang, H., Zheng, W.D., You, S.J. and Zhen, Y.H. (2018) Experimental Study of a Humidification-Dehumidification Desalination System with Heat Pump Unit. Desalination, 442, 108-117.
https://doi.org/10.1016/j.desal.2018.05.020
[64]  Faegha, M., Behnam, P. and Shafii, M.B. (2019) A Review on Recent Advances in Humidification-Dehumidification (HDH) Desalination Systems Integrated with Refrigeration, Power and Desalination Technologies. Energy Conversion and Management, 196, 1002-1036.
https://doi.org/10.1016/j.enconman.2019.06.063
[65]  Okati, V., Farsad, S. and Behzadmehr, A. (2018) Numerican Analysis of an Integrated Desalination Unit Using Humidification-Dehumidification and Subsurface Condensation Processes. Desalination, 433, 172-185.
https://doi.org/10.1016/j.desal.2017.12.029
[66]  He, W.F., Wu, F., Kong, Y.P. and Han, D. (2018) Cost Analysis of a Humidification Dehumidification Desalination System with a Packed Bed Dehumidifier. Energy Conversion and Management, 171, 452-460.
https://doi.org/10.1016/j.enconman.2018.06.008
[67]  Wu, G., Zheng, H.-F., Wang, F. and Chang Z.-H. (2017) Parametric Study of a Tandem Desalination System Based on Humidification-Dehumidification Process with 3-Stage Heat Recovery. Applied Thermal Engineering, 112, 190-200.
https://doi.org/10.1016/j.applthermaleng.2016.10.078
[68]  Prakash, G., Narayan, St. John, M.G., Zubair, S.M. and Lienhard V, J.H. (2013) Thermal Design of the Humidification Dehumidification Desalination System: An Experimental Investigation. International Journal of Heat and Mass Transfer, 58, 740-748.
https://doi.org/10.1016/j.ijheatmasstransfer.2012.11.035
[69]  El-Agouz, S.A., El-Aziz, A.G.B. and Awad, A.M. (2014) Solar Desalination System Using Spray Evaporation. Energy, 76, 276-283.
https://doi.org/10.1016/j.energy.2014.08.009
[70]  Adel M., A.D. (2013) New Solar Desalination System Using Humidification/De- humidification Process. International Journal of Energy and Environment, 4, 629-640.
[71]  Rajaseenivasan, T. and Srithar, K. (2017) An Investigation into a Laboratory Scale Bubble Column Humidification Dehumidification Desalination System Powered by Biomass Energy. Energy Conversion and Management, 139, 232-244.
https://doi.org/10.1016/j.enconman.2017.02.043
[72]  Elminshawy, N.A.S., Siddiqui, F.R. and Addas, M.F. (2016) Development of an Active Solar Humidification-Dehumidification (HDH) Desalination System Integrated with Geothermal Energy. Energy Conversion and Management, 126, 608-621.
https://doi.org/10.1016/j.enconman.2016.08.044
[73]  Rahimi-Ahar, Z., Hatamipour, M.S. and Ghalavand, Y. (2018) Solar Assisted Modified Variable Pressure Humidification-Dehumidification Desalination System. Energy Conversion and Management, 162, 321-330.
https://doi.org/10.1016/j.enconman.2018.01.063
[74]  El-Agouz, S.A. Sathyamurthy, R. and Manokar, A.M. (2018) Improvement of Humidification-Dehumidification Desalination Unit Using a Desiccant Wheel. Chemical Engineering Research and Design, 131, 104-116.
https://doi.org/10.1016/j.cherd.2017.06.004
[75]  Zubair, S.M., Antar, M.A., Elmutasim, S.M. and Lawal, D.U. (2018) Performance Evaluation of Humidification-Dehumidification (HDH) Desalination Systems with and without Heat Recovery Options: An Experimental and Theoretical Investigation. Desalination, 436, 161-175.
https://doi.org/10.1016/j.desal.2018.02.018
[76]  Tariq, R., Sheikh, N.A., Xamán, J. and Bassam, A. (2018) An Innovative Air Saturator for Humidification-Dehumidification Desalination Application. Applied Energy, 228, 789-807.
https://doi.org/10.1016/j.apenergy.2018.06.135
[77]  Rahimi-Ahar, Z., Hatamipour, M.S. and Ghalavand, Y. (2018) Experimental Investigation of a Solar Vacuum Humidification-Dehumidification (VHDH) Desalination System. Desalination, 437, 73-80.
https://doi.org/10.1016/j.desal.2018.03.002
[78]  El-Agouz, S.A. (2010) A New Process of Desalination by Air Passing through Seawater Based on Humidification-Dehumidification Process. Energy, 35, 5108-5114.
https://doi.org/10.1016/j.energy.2010.08.005
[79]  Behnam, P. and Shafii, M.B. (2016) Examination of a Solar Desalination System Equipped with an Air Bubble Column Humidifier, Evacuated Tube Collectors and Thermosyphon Heat Pipes. Desalination, 397, 30-37.
https://doi.org/10.1016/j.desal.2016.06.016
[80]  Elminshawy, N.A.S., Siddiqui F.R. and Addas, M.F. (2015) Experimental and Analytical Study on Productivity Augmentation of a Novel Solar Humidification-Dehu- midification (HDH) System. Desalination, 365, 36-45.
https://doi.org/10.1016/j.desal.2015.02.019
[81]  Ahmed, H.A., Ismail, I.M., Saleh, W.F. and Ahmed, M. (2017) Experimental Investigation of Humidification-Dehumidification Desalination System with Corrugated Packing in the Humidifier. Desalination, 410, 19-29.
https://doi.org/10.1016/j.desal.2017.01.036
[82]  Rajaseenivasan, T. and Srithar, K. (2017) Potential of a Dual Purpose Solar Collector on Humidification Dehumidification Desalination System. Desalination, 404, 35-40.
https://doi.org/10.1016/j.desal.2016.10.015
[83]  Wang, J.-H., Gao, N.-Y., Deng, Y. and Li, Y.-L. (2012) Solar Power-Driven Humidification-Dehumidification (HDH) Process for Desalination of Brackish Water. Desalination, 305, 17-23.
https://doi.org/10.1016/j.desal.2012.08.008
[84]  Xu, H., Sun, X.Y. and Dai, Y.J. (2019) Thermodynamic Study on an Enhanced Humidification-Dehumidification Solar Desalination System with Weakly Compressed Air and Internal Heat Recovery. Energy Conversion and Management, 181, 68-79.
https://doi.org/10.1016/j.enconman.2018.11.073
[85]  Ariyanfar, L., Yari, M. and Aghdam, E.A. (2016) Proposal and Performance Assessment of Novel Combined ORC and HDD Cogeneration Systems. Applied Thermal Engineering, 108, 296-311.
https://doi.org/10.1016/j.applthermaleng.2016.07.055
[86]  Sayyaadi, H. and Ghorbani, G. (2018) Conceptual Design and Optimization of a Small-Scale Dual Power-Desalination System Based on the Stirling Prime-Mover. Applied Energy, 223, 457-471.
https://doi.org/10.1016/j.apenergy.2018.04.077
[87]  Ayati, E., Rahimi-Ahar, Z., Hatamipour, M.S. and Ghalavand, Y. (2019) Water Productivity Enhancement in Variable Pressure Humidification Dehumidification (HDH) Desalination Systems Using Heat Pump. Applied Thermal Engineering, 160, Article ID: 114114.
https://doi.org/10.1016/j.applthermaleng.2019.114114
[88]  Elsafi, A.M. (2017) Integration of Humidification-Dehumidification Desalination and Concentrated Photovoltaic-Thermal Collectors: Energy and Exergy-Costing Analysis. Desalination, 424, 17-26.
https://doi.org/10.1016/j.desal.2017.09.022
[89]  Rajaseenivasan, T., Shanmugam, R.K., Hareesh, V.M. and Srithar, K. (2016) Combined Probation of Bubble Column Humidification Dehumidification Desalination System Using Solar Collectors. Energy, 116, 459-469.
https://doi.org/10.1016/j.energy.2016.09.127
[90]  Muthusamy, C. and Srithar, K. (2017) Energy Saving Potential in Humidification-Dehumidification Desalination System. Energy, 118, 729-741.
https://doi.org/10.1016/j.energy.2016.10.098
[91]  Yuan, G.F., Wang, Z.F., Li, H.Y. and Li, X. (2011) Experimental Study of a Solar Desalination System Based on Humidification-Dehumidification Process. Desalination, 277, 92-98.
https://doi.org/10.1016/j.energy.2016.10.098
[92]  Sharshir, S.W., Peng, G.L., Yang, N.Y., Eltawil, M.A., Ahmed Ali, M.K. and Kabeel, A.E. (2016) A Hybrid Desalination System Using Humidification-Dehumidification and Solar Stills Integrated with Evacuated Solar Water Heater. Energy Conversion and Management, 124, 287-296.
https://doi.org/10.1016/j.enconman.2016.07.028
[93]  Xu, H., Zhao, Y., Jia, T. and Dai, Y.J. (2018) Experimental Investigation on a Solar Assisted Heat Pump Desalination System with Humidification-Dehumidification. Desalination, 437, 89-99.
https://doi.org/10.1016/j.desal.2018.03.001
[94]  Xu, H., Zhao, Y. and Dai, Y.J. (2019) Experimental Study on a Solar Assisted Heat Pump Desalination Unit with Internal Heat Recovery Based on Humidification- Dehumidification Process. Desalination, 452, 247-257.
https://doi.org/10.1016/j.desal.2018.11.019
[95]  Shafii, M.B., Jafargholi, H. and Faegh, M. (2018) Experimental Investigation of Heat Recovery in a Humidification-Dehumidification Desalination System via a Heat Pump. Desalination, 437, 81-88.
https://doi.org/10.1016/j.desal.2018.03.004
[96]  Faegh, M. and Shafii, M.B. (2019) Performance Evaluation of a Novel Compact Humidification-Dehumidification Desalination System Coupled with a Heat Pump for Design and off-Design Conditions. Energy Conversion and Management, 194, 160-172.
https://doi.org/10.1016/j.enconman.2019.04.079
[97]  Kabeel, A.E. and El-Said, E.M.S. (2013) A Hybrid Solar Desalination System of Air Humidification Dehumidification and Water Flashing Evaporation: A comparison among Different Configurations. Desalination, 330, 79-89.
https://doi.org/10.1016/j.desal.2013.10.004
[98]  Habeebullah, B.A. (2010) Performance Analysis of a Combined Heat Pump-De- humidifying System. Journal of King Abdulaziz University, 21, 97-114.
https://doi.org/10.4197/Eng.21-1.6
[99]  Farsad, S. and Behzadmehr, A. (2011) Analysis of a Solar Desalination Unit with Humidification-Dehumidification Cycle Using DoE Method. Desalination, 278, 70-76.
https://doi.org/10.1016/j.desal.2011.05.008
[100]  El-Said, E.M.S., Kabeel, E. and Abdulaziz, M. (2016) Theoretical Study on Hybrid Desalination System Coupled with Nano-Fluid Solar Heater for Arid States. Desalination, 386, 84-98.
https://doi.org/10.1016/j.desal.2016.03.001
[101]  Abdel-Hady, F., El-Halwagi, M.M., Alghamdi, M., Mazher, A.K. and Alzahrani, A. (2018) Experimental Study of Humidification and Dehumidification Desalination Process. International Journal of Engineering and Technology, 10, 511-528.
https://doi.org/10.21817/ijet/2018/v10i2/181002083

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133