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    Performance of adsorbent-embedded heat exchangers using binder-coating method

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    Type
    Article
    Authors
    Li, Ang
    Thu, Kyaw
    Ismail, Azhar bin
    Shahzad, Muhammad Wakil
    Ng, Kim Choon cc
    KAUST Department
    Biological and Environmental Sciences and Engineering (BESE) Division
    Environmental Science and Engineering Program
    Water Desalination and Reuse Research Center (WDRC)
    Date
    2016-01
    Permanent link to this record
    http://hdl.handle.net/10754/594234
    
    Metadata
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    Abstract
    The performance of adsorption (AD) chillers or desalination cycles is dictated by the rates of heat and mass transfer of adsorbate in adsorbent-packed beds. Conventional granular-adsorbent, packed in fin-tube heat exchangers, suffered from poor heat transfer in heating (desorption) or cooling (adsorption) processes of the batch-operated cycles, with undesirable performance parameters such as higher footprint of plants, low coefficient of performance (COP) of AD cycles and higher capital cost of the machines. The motivation of present work is to mitigate the heat and mass "bottlenecks" of fin-tube heat exchangers by using a powdered-adsorbent cum binder coated onto the fin surfaces of exchangers. Suitable adsorbent-binder pairs have been identified for the silica gel adsorbent with pore surface areas up to 680 m2/g and pore diameters less than 6 nm. The parent silica gel remains largely unaffected despite being pulverized into fine particles of 100 μm, and yet maintaining its water uptake characteristics. The paper presents an experimental study on the selection and testing processes to achieve high efficacy of adsorbent-binder coated exchangers. The test results indicate 3.4-4.6 folds improvement in heat transfer rates over the conventional granular-packed method, resulting a faster rate of water uptake by 1.5-2 times on the suitable silica gel type. © 2015 Elsevier Ltd. All rights reserved.
    Citation
    Li A, Thu K, Ismail AB, Shahzad MW, Ng KC (2016) Performance of adsorbent-embedded heat exchangers using binder-coating method. International Journal of Heat and Mass Transfer 92: 149–157. Available: http://dx.doi.org/10.1016/j.ijheatmasstransfer.2015.08.097.
    Publisher
    Elsevier BV
    Journal
    International Journal of Heat and Mass Transfer
    DOI
    10.1016/j.ijheatmasstransfer.2015.08.097
    ae974a485f413a2113503eed53cd6c53
    10.1016/j.ijheatmasstransfer.2015.08.097
    Scopus Count
    Collections
    Articles; Biological and Environmental Science and Engineering (BESE) Division; Environmental Science and Engineering Program; Water Desalination and Reuse Research Center (WDRC)

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