Moravskyi Volodymyr, Kucherenko Anastasiia, Kuznetsova Marta, Dulebova Ludmila, Spišák Emil
Department of Chemical Technology of Plastics Processing, Lviv Polytechnic National University, 12, Bandera Str., 79013 Lviv, Ukraine.
Department of Heat Engineering and Thermal and Nuclear Power Plants, Lviv Polytechnic National University, 12, Bandera Str., 79013 Lviv, Ukraine.
Polymers (Basel). 2022 Jan 5;14(1):218. doi: 10.3390/polym14010218.
The research studied the feasibility of using copper-coated polyethylene granules as a basis for creating efficient heat storage systems. A technology for imparting catalytic properties to a polymer surface by the joint processing of polymer granules and an activator metal in a ball mill with their subsequent metallization in a chemical reducing solution is proposed. The efficiency of copper-coating a polyethylene surface is shown to be largely determined by the activation stage and the assumption regarding the mechanism of interaction of the activator metal with the polymer surface is made. To obtain different amounts of metal on the polyethylene granules, it is proposed that the method of remetallization is used. It was established that the rate of copper ion reduction depends on the number of previous coatings and is determined by the area of interaction of the metal-coated granules with the chemical reducing solution. The obtained metal-coated polyethylene granules were characterized in terms of the viability of using it as a phase transition material for a heat storage system. Using the developed installation that simulates the heat accumulator operation, it was shown that the efficiency of using metal-coated polyethylene granules to create heat storage systems is higher. The copper coating deposited on the polyethylene granules was studied using scanning electron microscopy and X-ray diffraction analysis.
该研究探讨了使用铜包覆聚乙烯颗粒作为创建高效蓄热系统基础的可行性。提出了一种通过在球磨机中对聚合物颗粒和活性金属进行联合处理,随后在化学还原溶液中进行金属化处理,从而赋予聚合物表面催化性能的技术。结果表明,聚乙烯表面铜包覆的效率在很大程度上取决于活化阶段,并对活性金属与聚合物表面的相互作用机理进行了假设。为了在聚乙烯颗粒上获得不同量的金属,建议采用再金属化方法。已确定铜离子还原速率取决于先前涂层的数量,并由金属包覆颗粒与化学还原溶液的相互作用面积决定。对所获得的金属包覆聚乙烯颗粒作为蓄热系统相变材料的可行性进行了表征。使用所开发的模拟蓄热装置运行的设备,结果表明使用金属包覆聚乙烯颗粒创建蓄热系统的效率更高。利用扫描电子显微镜和X射线衍射分析对沉积在聚乙烯颗粒上的铜涂层进行了研究。