• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 10, 3658 (2022)
XU Zhaoyun1、2、*, LUO Tuansheng1, MA Dengjie1, HAI Wanxiu1、2, and HE Silin1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    XU Zhaoyun, LUO Tuansheng, MA Dengjie, HAI Wanxiu, HE Silin. Stereotypes Package and Thermal Properties of Porous SiC Ceramics/Paraffin Composite Phase Change Materials[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3658 Copy Citation Text show less
    References

    [1] TOKORO H, YOSHIKIYO M, IMOTO K, et al. External stimulation-controllable heat-storage ceramics[J]. Nature Communications, 2015, 6: 7037.

    [2] GE Z W, LI Y L, LI D C, et al. Thermal energy storage: challenges and the role of particle technology[J]. Particuology, 2014, 15: 2-8.

    [4] ZHENG H B, SONG C, BAO C, et al. Dark calcium carbonate particles for simultaneous full-spectrum solar thermal conversion and large-capacity thermochemical energy storage[J]. Solar Energy Materials and Solar Cells, 2020, 207: 110364.

    [5] DING W J, GOMEZ-VIDAL J, BONK A, et al. Molten chloride salts for next generation CSP plants: electrolytical salt purification for reducing corrosive impurity level[J]. Solar Energy Materials and Solar Cells, 2019, 199: 8-15.

    [6] ZHAO L, FANG X C, WANG G, et al. Preparation and properties of paraffin/activated carbon composites as phase change materials for thermal energy storage[J]. Advanced Materials Research, 2012, 608/609: 1049-1053.

    [9] KORHAMMER K, DRUSKE M M, FOPAH-LELE A, et al. Sorption and thermal characterization of composite materials based on chlorides for thermal energy storage[J]. Applied Energy, 2016, 162: 1462-1472.

    [10] MIAO Q, ZHANG Y L, JIA X, et al. MgSO4-expanded graphite composites for mass and heat transfer enhancement of thermochemical energy storage[J]. Solar Energy, 2021, 220: 432-439.

    [11] YU H T, GAO J M, CHEN Y, et al. Preparation and properties of stearic acid/expanded graphite composite phase change material for low-temperature solar thermal application[J]. Journal of Thermal Analysis and Calorimetry, 2016, 124(1): 87-92.

    [12] QI G Q, YANG J, BAO R Y, et al. Hierarchical graphene foam-based phase change materials with enhanced thermal conductivity and shape stability for efficient solar-to-thermal energy conversion and storage[J]. Nano Research, 2017, 10(3): 802-813.

    [13] WU S, LI T X, TONG Z, et al. High-performance thermally conductive phase change composites by large-size oriented graphite sheets for scalable thermal energy harvesting[J]. Advanced Materials (Deerfield Beach, Fla), 2019, 31(49): e1905099.

    [14] YIN Z Y, ZHANG X G, HUANG Z H, et al. Paraffin/expanded graphite phase change composites with enhanced thermal conductivity prepared by implanted β-SiC nanowires with chemical vapor deposition method[J]. Materials Research Express, 2018, 5(2): 025503.

    [16] XU Q, LIU X L, LUO Q Y, et al. Loofah-derived eco-friendly SiC ceramics for high-performance sunlight capture, thermal transport, and energy storage[J]. Energy Storage Materials, 2022, 45: 786-795.

    [17] DING S Q, ZHU S M, ZENG Y P, et al. Fabrication of mullite-bonded porous silicon carbide ceramics by in situ reaction bonding[J]. Journal of the European Ceramic Society, 2007, 27(4): 2095-2102.

    [19] SHE J H, DENG Z Y, DANIEL D J, et al. Oxidation bonding of porous silicon carbide ceramics[J]. Journal of Materials Science, 2002, 37(17): 3615-3622.

    [20] FUKASAWA T, DENG Z Y, ANDO M, et al. Synthesis of porous silicon nitride with unidirectionally aligned channels using freeze-drying process[J]. Journal of the American Ceramic Society, 2002, 85(9): 2151-2155.

    [21] ZHANG H, COOPER A I. Aligned porous structures by directional freezing[J]. Advanced Materials, 2007, 19(11): 1529-1533.

    [22] DEVILLE S, SAIZ E, TOMSIA A P. Ice-templated porous alumina structures[J]. Acta Materialia, 2007, 55(6): 1965-1974.

    [23] RICE R W. Comparison of stress concentration versus minimum solid area based mechanical property-porosity relations[J]. Journal of Materials Science, 1993, 28(8): 2187-2190.

    [24] FANG X, DING Q, FAN L W, et al. Effects of inclusion size on thermal conductivity and rheological behavior of ethylene glycol-based suspensions containing silver nanowires with various specific surface areas[J]. International Journal of Heat and Mass Transfer, 2015, 81: 554-562.

    [25] TIMOFEEVA E V, ROUTBORT J L, SINGH D. Particle shape effects on thermophysical properties of alumina nanofluids[J]. Journal of Applied Physics, 2009, 106(1): 014304.

    [26] TANG J, YANG M, YU F, et al. 1-octadecanol@hierarchical porous polymer composite as a novel shape-stability phase change material for latent heat thermal energy storage[J]. Applied Energy, 2017, 187: 514-522.

    [28] DAO T D, JEONG H M. A Pickering emulsion route to a stearic acid/graphene core-shell composite phase change material[J]. Carbon, 2016, 99: 49-57.

    [29] GRAHAM M, SHCHUKINA E, DE CASTRO P F, et al. Nanocapsules containing salt hydrate phase change materials for thermal energy storage[J]. Journal of Materials Chemistry A, 2016, 4(43): 16906-16912.

    [30] CHAPOTARD C, TONDEUR D. Dynamics of latent heat storage in fixed beds a non-linear equilibrium model: the analogy with chromatography[J]. Chemical Engineering Communications, 1983, 24(4/5/6): 183-204.

    [31] XIA L, ZHANG P, WANG R Z. Preparation and thermal characterization of expanded graphite/paraffin composite phase change material[J]. Carbon, 2010, 48(9): 2538-2548.

    [32] JIANG Y, DING E Y, LI G K. Study on transition characteristics of PEG/CDA solid-solid phase change materials[J]. Polymer, 2002, 43(1): 117-122.

    [33] GONG S Q, CHENG X M, LI Y Y, et al. Effect of nano-SiC on thermal properties of expanded graphite/1-octadecanol composite materials for thermal energy storage[J]. Powder Technology, 2020, 367: 32-39.

    [34] YOON B H, LEE E J, KIM H E, et al. Highly aligned porous silicon carbide ceramics by freezing polycarbosilane/camphene solution[J]. Journal of the American Ceramic Society, 2007, 90(6): 1753-1759.

    XU Zhaoyun, LUO Tuansheng, MA Dengjie, HAI Wanxiu, HE Silin. Stereotypes Package and Thermal Properties of Porous SiC Ceramics/Paraffin Composite Phase Change Materials[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3658
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