Rotary desiccant
air conditioning system, which combines the technologies of desiccant
dehumidification and evaporative cooling, is advantageous in being free from (chlorofluorocarbon
) CFCs, using low grade thermal energy and controlling humidity and temperature
separately. Compared with conventional vapor compression air conditioning
system, it preserves the merits of environment-friendly, energy saving,
healthy, comfortable, etc. Ongoing research and development works suggest that
new desiccant materials and novel system configurations have significant
potential for improving the performance and reliability and reducing the cost
and size of rotary desiccant dehumidification and air conditioning system,
thereby increasing its market competitiveness and breaking out the current
fairly small niche market. For the purpose of providing an overview of recent
efforts on these issues and showing how rotary desiccant air conditioning
systems can be designed and coupled to available thermal energy, this paper
presents and analyzes the status of rotary desiccant dehumidification and air
conditioning in the following three aspects: the development of advanced
desiccant materials, the optimization of system configuration and the
utilization of solar energy and other low grade heat sources, such as solar
energy, district heating, waste heat and bioenergy. Some key problems to
further push forward the research and development of this technology are also
summarized.
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