Thermal energy storage using metal-organic framework materials

被引:78
作者
Elsayed, Ahmed [1 ,2 ,3 ]
Elsayed, Eman [1 ]
Al-Dadah, Raya [1 ]
Mahmoud, Saad [1 ]
Elshaer, Amr [4 ]
Kaialy, Waseem [5 ]
机构
[1] Univ Birmingham, Sch Mech Engn, Birmingham B15 2TT, W Midlands, England
[2] Coventry Univ, Sch Engn & Comp, Inst Adv Mfg & Engn AME, Coventry CV6 5LZ, W Midlands, England
[3] Univ Alexandria, Dept Mech Engn, Alexandria, Egypt
[4] Kingston Univ London, Sch Pharm & Chem, London, England
[5] Wolverhampton Univ, Fac Sci & Engn, Sch Pharm, Wolverhampton WV1 1LY, W Midlands, England
基金
英国工程与自然科学研究理事会;
关键词
Adsorption; Energy storage; Metal organic frameworks; Characterisation; PHASE-CHANGE MATERIALS; ADSORPTION REFRIGERATION CYCLE; SOLAR POWER-PLANTS; HEAT-STORAGE; PERFORMANCE ENHANCEMENT; WATER-ADSORPTION; SEASONAL STORAGE; COOLING SYSTEMS; CLIMATE CONTROL; SORPTION;
D O I
10.1016/j.apenergy.2016.03.113
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Metal-organic framework (MOF) materials are new adsorbent materials that have high surface area and pore volume and hence high adsorption uptake. The previous exceptional properties make this class of materials have a great potential in many applications like cooling, gas separation and energy storage. However, there is very limited information on the performance of metal-organic framework materials in energy storage applications and their performance compared to conventional adsorbents. This paper aims to present an experimental characterisation of CPO-27(Ni) MOF material" for water adsorption and to investigate its viability for energy storage. CPO-27(Ni) (known as MOF-74(Ni)), which is a MOF material that has high water adsorption capabilities of 0.47 gH20 gads-1 and hydrothermally stable and can be supplied in large quantities. Firstly, the material water adsorption isotherms were predicated using Materials Studio software via the material structure information and then compared to the experimentally measured isotherms. The experimentally measured isotherms and kinetics were used to model a double bed adsorption system for energy storage application using Simulink-Matlab software coupled with Nist RefProp thermophysical routines. Finally, the performance of CPO-27(Ni) was then compared with silica gel. The CPO-27(Ni) was found to outperform silica gel at long half cycle time (more than 30 min) at low evaporating temperature making it suitable for energy storage applications. The energy stored in the condenser and the adsorption bed was found to be dependent mostly on the regeneration and the cooling temperatures. The potential of the energy recovered from the adsorption bed can be double the one recovered from the condenser. Also, the energy recovery during condensation and adsorption was found to be independent of the reactor conductance except at small conductance ratio. Finally, the adsorption unit cooling water flow strategy was found to affect the amount of the energy recovered as recirculating the cooling water through the adsorption bed and then condenser was found to decrease the recovered energy from the condenser by 4%. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:509 / 519
页数:11
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