椰子油作为生物基PCM:特性及其与塑料的相容性

M. Ostrý, S. Bantová, V. Řezáčová
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引用次数: 0

摘要

当前建筑的使用正面临着能源成本的空前增长,特别是在欧盟。能源成本可以通过节约能源和增加使用主要由太阳辐射转化而来的可再生能源来降低。当考虑在建筑中利用太阳能时,必须通过储能来解决能源可用性和能源需求之间的不匹配问题。本文介绍了潜热蓄热的原理及生物基相变材料作为蓄热介质的可能性。由于潜热储存介质在充放电过程中会发生相变,因此必须进行适当的封装。本文介绍了一项研究的主要结果,重点研究了椰子油与选定的塑料作为封装材料之间的相容性。通过将塑料样品浸泡在椰子油中,计算样品在17周的持续试验中重量的变化,通过室内实验评价了所选塑料与椰子油的相容性。聚碳酸酯和聚对苯二甲酸乙二醇酯的重量变化可以忽略不计,这证明了与椰子油的良好相容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coconut Oil as Bio-based PCM: Characteristics and Compatibility with Plastics
Abstract The current use of buildings is facing an unprecedented increase in energy costs, especially in the European Union. The energy costs can be reduced by energy savings and by increased use of renewable energy represented mostly by energy converted from solar radiation. When solar energy is considered to be utilized in buildings, the mismatch between energy availability and energy demand must be solved by energy storage. This paper describes the principles of the use of latent heat thermal energy storage and the possibility of using bio-based phase change materials as heat storage media. Because the latent heat storage media undergo a change of phase during the charging and discharging, proper encapsulation is necessary. The paper presents the main findings of a study focused on the compatibility between coconut oil and selected plastics as materials of encapsulation. The compatibility of selected plastics and Coconut oil was evaluated by laboratory experiment based on the immersion of plastic samples in coconut oil and calculation of change in weight of samples within 17 weeks lasting test. The negligible weight changes were occurred for polycarbonate and polyethylene terephthalate which proves excellent compatibility with Coconut oil.
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