Optimization of Moisture Absorption of High Temperature Composite Phase Change Thermal Storage Materials
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-1027-4_33
Reference14 articles.
1. Lu, Y., et al.: Fabrication and characterization of the novel shape-stabilized composite PCMs of Na2CO3-K2CO3/MgO/glass. Sol. Energy 189, 228–234 (2019)
2. Zhang, G., et al.: Study on the influence of glass encapsulating on the hygroscopicity of high temperature phase change heat storage materials. In: IOP Conference Series: Earth and Environmental Science, vol. 474(5), p. 052094 (2020)
3. Chen, Z., et al.: Synthesis and characteristics of hygroscopic phase change material: composite microencapsulated phase change material (MPCM) and diatomite. Energy Build. 106, 175–182 (2015)
4. Royo, P., et al.: Multiple-Criteria Decision Analysis and characterisation of phase change materials for waste heat recovery at high temperature for sustainable energy-intensive industry. Mater. Des. 186, 108215 (2020)
5. Schröder, J.: Thermal energy storage and control. J. Eng. Ind. 97(3), 893–896 (1975)
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