Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review

This work aims to compile the factors that impact the adsorption system's performance. The functional performance and operations of adsorption cooling systems are greatly influenced by the mass and heat diffusion across the adsorber bed, adsorbates-adsorbent pairs, cycle type, cyclic period, an...

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Main Authors: Sumit Kumar Singh, Dibakar Rakshit, K Ravi Kumar, Anurag Agarwal
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Cleaner Engineering and Technology
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Online Access:http://www.sciencedirect.com/science/article/pii/S2666790824001071
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author Sumit Kumar Singh
Dibakar Rakshit
K Ravi Kumar
Anurag Agarwal
author_facet Sumit Kumar Singh
Dibakar Rakshit
K Ravi Kumar
Anurag Agarwal
author_sort Sumit Kumar Singh
collection DOAJ
description This work aims to compile the factors that impact the adsorption system's performance. The functional performance and operations of adsorption cooling systems are greatly influenced by the mass and heat diffusion across the adsorber bed, adsorbates-adsorbent pairs, cycle type, cyclic period, and the adsorber bed design. Generally, enhancing heat transport across the bed will decrease the thermal resistance, shortening the cycle time and eventually increasing the COP. To enhance the operational efficiency of the adsorption system, researchers have explored a few more adsorption cycles in addition to those that have already been studied. Some of the typical cycles like the multiple-adsorber bed cycle, surface cascading adsorption cycle, thermal wave cycle, mass-recovery cycle, and heat recovery cycle, are discussed in this work, unlike the previous work, making it helpful for design basis and enhancing the system's performance. A system having numerous beds offers a continual cooling effect and having minimal dead mass operates more efficiently. Combining all the contributing elements listed above provides superior outcomes and efficient performance for adsorption cooling systems. Generally, adsorption cooling technology has been oversimplified which means they don't fully explain the detailed physics of adsorption cooling technology, making it less percolated and technically less efficient. Current studies aim to understand these complex intricate physics better so that the adsorption system can be improved and correlated with various notes of adsorption technology to make it more widely accessible for commercial use.
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publishDate 2024-12-01
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series Cleaner Engineering and Technology
spelling doaj-art-b58b0b69d7ab4d2886b0bf80cd38c6432024-12-19T11:01:11ZengElsevierCleaner Engineering and Technology2666-79082024-12-0123100827Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A reviewSumit Kumar Singh0Dibakar Rakshit1K Ravi Kumar2Anurag Agarwal3Department of Energy Science and Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, IndiaDepartment of Energy Science and Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, India; Indian Institute of Technology Delhi (IITD)-Abu Dhabi, United Arab Emirates; Corresponding author. Department of Energy Science and Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, India.Department of Energy Science and Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016, IndiaNew Leaf Dynamic Technologies (P) Ltd, New Delhi, IndiaThis work aims to compile the factors that impact the adsorption system's performance. The functional performance and operations of adsorption cooling systems are greatly influenced by the mass and heat diffusion across the adsorber bed, adsorbates-adsorbent pairs, cycle type, cyclic period, and the adsorber bed design. Generally, enhancing heat transport across the bed will decrease the thermal resistance, shortening the cycle time and eventually increasing the COP. To enhance the operational efficiency of the adsorption system, researchers have explored a few more adsorption cycles in addition to those that have already been studied. Some of the typical cycles like the multiple-adsorber bed cycle, surface cascading adsorption cycle, thermal wave cycle, mass-recovery cycle, and heat recovery cycle, are discussed in this work, unlike the previous work, making it helpful for design basis and enhancing the system's performance. A system having numerous beds offers a continual cooling effect and having minimal dead mass operates more efficiently. Combining all the contributing elements listed above provides superior outcomes and efficient performance for adsorption cooling systems. Generally, adsorption cooling technology has been oversimplified which means they don't fully explain the detailed physics of adsorption cooling technology, making it less percolated and technically less efficient. Current studies aim to understand these complex intricate physics better so that the adsorption system can be improved and correlated with various notes of adsorption technology to make it more widely accessible for commercial use.http://www.sciencedirect.com/science/article/pii/S2666790824001071AdsorptionDesorptionAdsorber bedHeat and mass transferConceptual analysis
spellingShingle Sumit Kumar Singh
Dibakar Rakshit
K Ravi Kumar
Anurag Agarwal
Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
Cleaner Engineering and Technology
Adsorption
Desorption
Adsorber bed
Heat and mass transfer
Conceptual analysis
title Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
title_full Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
title_fullStr Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
title_full_unstemmed Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
title_short Recent advancements and sustainable solutions in adsorption-based cooling systems integrated with renewable energy sources and industrial waste heat: A review
title_sort recent advancements and sustainable solutions in adsorption based cooling systems integrated with renewable energy sources and industrial waste heat a review
topic Adsorption
Desorption
Adsorber bed
Heat and mass transfer
Conceptual analysis
url http://www.sciencedirect.com/science/article/pii/S2666790824001071
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AT dibakarrakshit recentadvancementsandsustainablesolutionsinadsorptionbasedcoolingsystemsintegratedwithrenewableenergysourcesandindustrialwasteheatareview
AT kravikumar recentadvancementsandsustainablesolutionsinadsorptionbasedcoolingsystemsintegratedwithrenewableenergysourcesandindustrialwasteheatareview
AT anuragagarwal recentadvancementsandsustainablesolutionsinadsorptionbasedcoolingsystemsintegratedwithrenewableenergysourcesandindustrialwasteheatareview