Chen Sitong, Wang Shubo, Wang Xueke, Li Weiwei, Liang Baorui, Zhu Tong, Xie Xiaofeng
School of Mechanical Engineering and Automation, Northeastern University, Shenyang 110819, China.
Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China.
Materials (Basel). 2021 Mar 19;14(6):1514. doi: 10.3390/ma14061514.
We added microencapsulated phase change materials (MPCMs) into the homemade antifreeze fluid to take advantage of the latent heat of phase change materials, and explored the possibility of solving the cold start problem of proton exchange membrane fuel cells (PEMFC) with variable specific heat capacity antifreeze. The physical and chemical properties of the MPCMs and their suspensions were tested, and a PEMFC platform for cold start with a thermal management system was established to compare the exothermic performance of MPCS and commercial antifreeze fluid. According to the output voltage, temperature and polarization curves before and after cold start, the MPCMs has a stronger heat transfer capacity than the commercial antifreeze fluid, and the addition of MPCMs can transform the latent heat generated during the phase transition into apparent specific heat capacity, leading to a better solution to the problem of PEMFC cold start.
我们将微胶囊相变材料(MPCMs)添加到自制的防冻液中,以利用相变材料的潜热,并探索用变比热容防冻液解决质子交换膜燃料电池(PEMFC)冷启动问题的可能性。测试了MPCMs及其悬浮液的物理和化学性质,并建立了一个带有热管理系统的用于冷启动的PEMFC平台,以比较MPCMs和商用防冻液的放热性能。根据冷启动前后的输出电压、温度和极化曲线,MPCMs比商用防冻液具有更强的传热能力,并且添加MPCMs可以将相变过程中产生的潜热转化为表观比热容,从而更好地解决PEMFC冷启动问题。