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Preparation and performance study of cordierite/mullite composite ceramics for solar thermal energy storage
Author(s) -
Xu Xiaohong,
Zhang Yinfeng,
Wu Jianfeng,
Hu Cheng,
Tang Zhaohui
Publication year - 2016
Publication title -
international journal of applied ceramic technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.4
H-Index - 57
eISSN - 1744-7402
pISSN - 1546-542X
DOI - 10.1111/ijac.12626
Subject(s) - mullite , materials science , thermal energy storage , composite material , ceramic , cordierite , calcination , composite number , sintering , mineralogy , ecology , chemistry , biology , biochemistry , catalysis
Abstract The employment of solar energy in recent years has reached a remarkable edge. It has become even more popular as the cost of fossil fuel continues to rise. Energy storage system improves an adjustability and marketability of solar thermal and allowing it to produce electricity in demand. This study attempted to prepare cordierite/mullite composite ceramics used as solar thermal storage material from calcined bauxite, talcum, soda feldspar, potassium feldspar, quartz, and mullite. The thermal physical performances were evaluated and characterized by XRD , SEM , EPMA , and EDS . It was found that the optimum sintering temperature was 1280°C for preparing, and the corresponding water adsorption was 11.25%, apparent porosity was 23.59%, bulk density was 2.10 mg·cm −3 , bending strength was 88.52 MPa. The residual bending strength of specimen sintered at 1280°C after thermal shock of 30 times decreased to be 57 MPa that was 36% lower than that before. The thermal conductivity of samples sintered at 1280°C was tested to be 2.20 W·(m·K) −1 (26°C), and after wrapped a PCM (phase change materials) of K 2 SO 4 , the thermal storage density was 933 kJ·kg −1 with the temperature difference (Δ T ) ranged in 0‐800°C. The prepared cordierite/mullite composite ceramic was proved to be a promising material for solar thermal energy storage.

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