Wang Zanshe, Hu Juntao, Gu Zhaolin, et al. Application of Membrane Distillation Technology in Solution Storage[J]. Journal of refrigeration, 2018, 39(3).
DOI:
Wang Zanshe, Hu Juntao, Gu Zhaolin, et al. Application of Membrane Distillation Technology in Solution Storage[J]. Journal of refrigeration, 2018, 39(3). DOI: 10.3969/j.issn.0253-4339.2018.03.007.
Application of Membrane Distillation Technology in Solution Storage
With respect to solar energy utilization of buildings
a solution chemical energy storage mode is proposed based on membrane distillation technology focusing on the low density of solar radiation distribution and the imbalance between energy supply and demand
the purpose of which is to convert solar energy into solution chemical energy. A hydrophobic polyvinylidene fluoride (PVDF) hollow fiber membrane with operational characteristics of a normal temperature region and low temperature difference is adopted as the membrane material
and the PVDF membrane material has a highly specific surface area microscopically and a huge contact area per unit volume; as a result
a lithium bromide solution can be concentrated and stored using the vacuum membrane distillation mode
and the concentrated solution can be used as the working medium of the absorption thermal system. Therefore
experimental tests of the vacuum membrane distillation of a lithium bromide solution were carried out under different operating temperatures
solution flow rates
and vacuum degrees. According to the experimental results
a solar-driven solution energy storage system based on membrane distillation is described. The results show that the energy storage intensity can reach 245 kJ/kg
and the hollow fiber module can produce 0.27-0.40 kW of energy storage per square meter. Thus
membrane distillation solution storage provides a new approach to absorption thermodynamic systems and storage technology.