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用于热转换应用的酚醛树脂基吸附剂的性能评估

Performance Evaluation of Phenol-Resin-Based Adsorbents for Heat Transformation Applications.

作者信息

Asfahan Hafiz M, Sultan Muhammad, Farooq Muhammad, Riaz Fahid, Ibrahim Sobhy M, Ahamed Md Shamim, Imran Muhammad

机构信息

Department of Agricultural Engineering, Bahauddin Zakariya University, Multan 60800, Pakistan.

Department of Mechanical Engineering, University of Engineering and Technology, Lahore 39161, Pakistan.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5262. doi: 10.3390/ma16155262.

Abstract

Phenol resins (PRs) are considered as relatively inexpensive adsorbents synthesized from agricultural biomass via employing a variety of synthesized procedures. The performance of PR for heat transformation application is not widely investigated. In this regard, the present study aims to evaluate the four PR derivative/refrigerant pairs, namely (i) KOH6-PR/CO, (ii) SAC-2/HFC, (iii) KOH4-PR/ethanol, and (iv) KOH6-PR/ethanol, for adsorption cooling and adsorption heating applications. Ideal cycle analyses and/or thermodynamic modelling approaches were utilized comprising governing heat and mass balance equations and adsorption equilibrium models. The performance of the AHP system is explored by means of specific cooling energy (SCE), specific heating energy (SHE), and coefficient of performance (COP), both for cooling and heating applications, respectively. It has been realized that KOH6-PR/ethanol could produce a maximum SCE of 1080 kJ/kg/cycle and SHE of 2141 kJ/kg/cycle at a regeneration temperature (T) and condenser temperature (T) of 80 °C, and 10 °C, respectively, followed by KOH4-PR/ethanol, SAC-2/HFC-32, and KOH6-PR/CO. The maximum COP values were estimated to be 1.78 for heating and 0.80 for cooling applications, respectively, at T = 80 °C and T = 10 °C. In addition, the study reveals that, corresponding to increase/decrease in condenser/evaporator pressure, both SCE and SHE decrease/increase, respectively; however, this varies in magnitude due to adsorption equilibrium of the studied PR derivative/refrigerant pairs.

摘要

酚醛树脂(PRs)被认为是通过多种合成工艺由农业生物质合成的相对廉价的吸附剂。PR在热转换应用中的性能尚未得到广泛研究。在这方面,本研究旨在评估四组PR衍生物/制冷剂对,即(i)KOH6-PR/CO,(ii)SAC-2/HFC,(iii)KOH4-PR/乙醇,以及(iv)KOH6-PR/乙醇,用于吸附式制冷和吸附式制热应用。采用了理想循环分析和/或热力学建模方法,包括控制热量和质量平衡方程以及吸附平衡模型。通过分别针对制冷和制热应用的比冷能(SCE)、比热能(SHE)和性能系数(COP)来探索吸附式热泵系统的性能。已经认识到,在再生温度(T)和冷凝器温度(T)分别为80°C和10°C时,KOH6-PR/乙醇可产生的最大SCE为1080 kJ/kg/循环,SHE为2141 kJ/kg/循环,其次是KOH4-PR/乙醇、SAC-2/HFC-32和KOH6-PR/CO。在T = 80°C和T = 10°C时,制热应用的最大COP值估计分别为1.78,制冷应用的最大COP值为0.80。此外,研究表明,对应于冷凝器/蒸发器压力的增加/降低,SCE和SHE分别降低/增加;然而,由于所研究的PR衍生物/制冷剂对的吸附平衡,其变化幅度有所不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acc4/10420069/71fee2e0d0f1/materials-16-05262-g0A1.jpg

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