State Key Laboratory of Environmental-Friendly Energy Materials, School of Materials Science and Engineering , Southwest University of Science and Technology , Sichuan 621010 , China.
CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering , University of Science and Technology of China , Anhui 230026 , China.
Langmuir. 2018 Nov 27;34(47):14254-14264. doi: 10.1021/acs.langmuir.8b03084. Epub 2018 Nov 14.
A series of microencapsulated phase-change materials (MEPCMs) based on paraffin core and calcium carbonate (CaCO) shell were synthesized, and the effect of emulsifier type and pH value on morphology, structure, and properties of paraffin@CaCO MEPCMs were investigated. The results showed that CaCO shell was formed in vaterite and calcite crystalline phase when emulsifier was sodium dodecyl benzene sulfonate and styrene-maleic anhydride (SMA), respectively. When sodium dodecyl sulfate was used as an emulsifier, both vaterite and calcite CaCO were formed. The forming mechanism of emulsifier type on CaCO crystalline phase was studied. Furthermore, phase-change enthalpy and leakage rate of MEPCMs were related with the type of emulsifier and the pH value of the emulsion. With optimum condition of SMA as emulsifier and pH value of 7, paraffin@CaCO MEPCMs had an encapsulation ratio at 56.6% and leakage rate at 2.88%, illustrating its considerable heat storage capability and leakage-prevention property. The 50 heating-cooling cycles test indicated that the MEPCMs owned excellent thermal reliability. The thermal conductivity of MEPCMs was significantly improved due to the existence of CaCO shell. In addition to excellent thermal storage ability, the paraffin@CaCO MEPCMs also owned good mechanical property and light-to-heat energy conversion efficiency. The characteristics of MEPCMs indicated its potential application in solar energy resource.
一系列基于石蜡核和碳酸钙(CaCO)壳的微胶囊相变材料(MEPCMs)被合成,研究了乳化剂类型和 pH 值对石蜡@CaCO MEPCMs 的形态、结构和性能的影响。结果表明,当乳化剂分别为十二烷基苯磺酸钠和苯乙烯-马来酸酐(SMA)时,CaCO 壳形成了方解石和文石晶相。当使用十二烷基硫酸钠作为乳化剂时,同时形成了方解石和文石 CaCO。研究了乳化剂类型对方解石晶相形成的影响机制。此外,相变焓和 MEPCMs 的泄漏率与乳化剂的类型和乳液的 pH 值有关。在 SMA 作为乳化剂和 pH 值为 7 的最佳条件下,石蜡@CaCO MEPCMs 的包封率为 56.6%,泄漏率为 2.88%,表明其具有相当的蓄热能力和防漏性能。50 次加热-冷却循环测试表明,MEPCMs 具有优异的热可靠性。由于 CaCO 壳的存在,MEPCMs 的热导率得到了显著提高。除了优异的蓄热能力外,石蜡@CaCO MEPCMs 还具有良好的机械性能和光-热能量转换效率。MEPCMs 的特性表明其在太阳能资源中的潜在应用。