Thermal stability and behaviour of paraffin nano Al2O3, graphene and surfactant sodium oleate composite as phase change material

被引:5
作者
Prabhu, S. Selva [1 ]
Selvakumar, P. [2 ]
Heric, J. S. [1 ]
机构
[1] PSN Coll Engn & Technol, Mech Engn, Tirunelveli, India
[2] PSN Coll Engn & Technol, Mech Engn, Tirunelveli, India
关键词
DSC; latent heat thermal storage; phase change materials; nanomaterials; thermal stability; thermal conductivity; ENERGY-STORAGE; CONDUCTIVITY; WAX; NANOCOMPOSITE; PARTICLES;
D O I
10.1088/2053-1591/aca006
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Organic phase change materials like paraffin possess high latent heat yet incredibly low thermal conductivity. For improving the thermal conductivity, nanomaterials are introduced into the phase change materials. Thermal energy storage applications benefit from the use of phase transition materials with high thermal conductivity and latent heat of fusion. In this work to increase the dispersion of the alumina and graphene nanoparticles, a novel nanocomposite phase change material was produced by utilizing sodium oleate as a surfactant. The surfactant sodium oleate is prepared with oleic acid and methanol, The mixture is prepared using sodium oleate, Alumina Nanoparticle, and Graphene in the mass ratio of 1:3:0.5 is mixed with paraffin in the weight percentage of 7.5 and 10 and thermal stability study was carried out. Alumina nanoparticles were synthesized and prepared by using a microwave-assisted chemical precipitation approach which is more effective and graphene nanoparticles were prepared by using modified hummer's method. Thermocycling was used for up to 100 cycles to determine the melting point, latent heat, and long-term thermal stability of nanocomposites with phase change material. Differential Scanning Calorimetry (DSC) was used to evaluate the heat storage behaviour of the samples, and the heating rate of nanocomposites containing PCMs was investigated. The transient hot wire method was then utilised to assess the PCM's actual thermal conductivity. From the obtained results, nanocomposite with 7.5 wt% additives show maximum thermal stability and latent heat (161.09 KJ Kg(-1)) for 100 cycles with an increase in 42% effective thermal conductivity, Nanocomposite with 10 wt% shows 57% higher thermal conductivity. But shows lower thermal stability and very low latent heat (120.44 KJ Kg(-1)). It is understood from the results that nanoparticle and surfactant addition gives a positive rise in latent heat.
引用
收藏
页数:13
相关论文
共 30 条
[11]   Preparation and characterization of high-temperature non-flowing SiO2/EG/paraffin composites by high-temperature refining [J].
Han, Xue ;
Zhao, Tianbo ;
Gao, Xia ;
Li, Hongyu .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2018, 542 :1-7
[12]   Preparation and thermophysical properties of nanoparticle-in-paraffin emulsion as phase change material [J].
Ho, C. J. ;
Gao, J. Y. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2009, 36 (05) :467-470
[13]   Electrospinning fabricated novel poly (ethylene glycol)/graphene oxide composite phase-change nano-fibers with good shape stability for thermal regulation [J].
Ji, Rong ;
Zhang, Qingfeng ;
Zhou, Fuxi ;
Xu, Fen ;
Wang, Xiaodong ;
Huang, Chaowei ;
Zhu, Yucao ;
Zhang, Huanzhi ;
Sun, Lixian ;
Xia, Yongpeng ;
Lin, Xiangcheng ;
Peng, Hongliang ;
Zou, Yongjin ;
Chu, Hailiang .
JOURNAL OF ENERGY STORAGE, 2021, 40
[14]   Synthesis, characterization and thermal properties of paraffin microcapsules modified with nano-Al2O3 [J].
Jiang, Xiang ;
Luo, Ruilian ;
Peng, Feifei ;
Fang, Yutang ;
Akiyama, Tomohiro ;
Wang, Shuangfeng .
APPLIED ENERGY, 2015, 137 :731-737
[15]   Synthesis and characterization of conducting Polyaniline@cobalt- Paraffin wax nanocomposite as nano-phase change material: Enhanced thermophysical properties [J].
Kalidasan, B. ;
Pandey, A. K. ;
Shahabuddin, Syed ;
George, Mathew ;
Sharma, Kamal ;
Samykano, M. ;
Tyagi, V. V. ;
Saidur, R. .
RENEWABLE ENERGY, 2021, 173 :1057-1069
[16]   Improved Synthesis of Graphene Oxide [J].
Marcano, Daniela C. ;
Kosynkin, Dmitry V. ;
Berlin, Jacob M. ;
Sinitskii, Alexander ;
Sun, Zhengzong ;
Slesarev, Alexander ;
Alemany, Lawrence B. ;
Lu, Wei ;
Tour, James M. .
ACS NANO, 2010, 4 (08) :4806-4814
[17]   Shape-stabilized phase change materials with high thermal conductivity based on paraffin/graphene oxide composite [J].
Mehrali, Mohammad ;
Latibari, Sara Tahan ;
Mehrali, Mehdi ;
Metselaar, Hendrik Simon Cornelis ;
Silakhori, Mahyar .
ENERGY CONVERSION AND MANAGEMENT, 2013, 67 :275-282
[18]   Thermal conductivity enhancement of treated petroleum waxes, as phase change material, by a nano alumina: Energy storage [J].
Mohamed, Nermen H. ;
Soliman, Fathi S. ;
El Maghraby, Heba ;
Moustfa, Y. M. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2017, 70 :1052-1058
[19]   Thermal behavior of paraffin-nano-Al2O3 stabilized by sodium stearoyl lactylate as a stable phase change material with high thermal conductivity [J].
Nourani, Moloud ;
Hamdami, Nasser ;
Keramat, Javad ;
Moheb, Ahmad ;
Shahedi, Mohammad .
RENEWABLE ENERGY, 2016, 88 :474-482
[20]   Graphene nanosheet as reinforcement agent in copper matrix composite by using powder metallurgy method [J].
Ponraj, N. Vijay ;
Azhagurajan, A. ;
Vettivel, S. C. ;
Shajan, X. Sahaya ;
Nabhiraj, P. Y. ;
Sivapragash, M. .
SURFACES AND INTERFACES, 2017, 6 :190-196