식.의약품 저온 저장을 위한 $H_2O$-NaOH 혼합형 잠열재의 냉축 열특성

Thermal Characteristics of $H_2O$-NaOH Mixtures Type PCM for the Low Temperature Storage of Food and Medical Products

  • 발행 : 2004.03.31

초록

Mixtures type PCM, $H_2O$-NaOH that has relatively large capacity of the latent heat and long duration of phase change temperature was developed and experimentally analyzed for the low temperature storage of the food and medical products. The results could be summarized as follows; 1. Borax as nucleating agent and acrylic polymer as thickening agent were added to $H_2O$ to prevent the supercooling and phase separation. 2. Phase change (solid$\leftrightarrows$liquid) duration of $H_2O$ added with NaOH was prolonged longer 50% than that of pure $H_2O$. 3. Phase change temperature of the latent heat material, $H_2O$-NaOH was $1.5\sim2^{\circ}C$ the maximum latent Heat was 279 kJ/kg at the NaOH addition of 1.3 wt.%. 4. The specific heat of $H_2O$-NaOH at the solid and liquid state was increased in proportion to the wt.% of NaOH, when NaOH of $1.15\sim1.60$ wt.% was added to $H_2O$, the specific heat of the solid state was increased from 3.19 kJ/kg to 5.84 kJ/kg and that of liquid state from 7.8 kJ/kg to 10.28 kJ/kg. 5. When NaOH of $1.15\sim1.60$ wt.% was added to $H_2O$, the total heat storage capacity composed of sensible and latent heat was $313\sim331.3$ kJ/kg and the maximum heat storage capacity was occurred at NaOH addition of 1.30 wt. %.

키워드

참고문헌

  1. 송현갑. 1997. 자연에너지를 이용한 온실 난방시스템개발. 농수산 현장 애로 기술 개발 최종보고서
  2. 송현갑외 3인. 1997. '농산물 저온 저장을 위한 H2O-NaCI 혼합물의 축열특성', 한국태양에너지학회지, Vol. 17. No. 3. pp.23-34
  3. 이욱균외 2인, 2001. '3중관 튜브형 잠열 축열조에 서의 열전달 특성 연구', 한국태양에너지학회지, Vol. 21. No. 1. pp.71-82
  4. 스스끼외 1인. 199.2.2 '에너지 저장 시스템', 일본에너지자원학회
  5. 한국전력공사 영업처, 1992. 12. '빙축열 세미나자료'
  6. 방축설비제조업체 기술자료, 대우케리어 외 4개사
  7. George A. Lane, 'Solar heat storage latent heat material', Co:CRC Press, Vol. 1, pp.115-152, 1983
  8. Turnbull, D., Phase change solid state phys, 3, 225, 1956
  9. Reiss, H., The statistical mechanical theoryof irreversible condensation. I, J. Chem.phys, 20, 1216, 1952 https://doi.org/10.1063/1.1700715