Research progress on PCCSM used in cold chain logistics

  • Liu Chenmin
Expand
  • Rongzhi College of Chongqing Technology and Business University,Chongqing 401320

Received date: 2019-10-24

  Revised date: 2020-11-16

  Online published: 2021-03-03

Abstract

The dual needs of quality preservation,energy conservation and emission reduction make phase change cold storage materials (PCCSM) play a more and more important role in cold chain logistics.Therefore,the recent research statuses of typical organic,inorganic and organic-inorganic PCCSM in cold storage performance were mainly reviewed.Moreover,the research progress in the preparation of typical composite PCCSM such as the thermal conductivity of organic PCCSM,the subcooling and phase separation of inorganic PCCSM were comprehensively combed and analyzed.Furthermore,the typical application of PCCSM in cold chain logistics was investigated.And then the future development trends of developing the new composite PCCSM were put forward to provide reference for the rapid development of PCCSM used in cold chain logistics technology.

Cite this article

Liu Chenmin . Research progress on PCCSM used in cold chain logistics[J]. New Chemical Materials, 2021 , 49(2) : 16 -19 . DOI: 10.19817/j.cnki.issn 1006-3536.2021.02.004

References

[1] Oró E,Gracia A D,Castell A,et al.Review on phase change materials (PCMs) for cold thermal energy storage applications[J].Applied Energy,2012,99:513-533.
[2] Oró E,Miró L,Farid M M,et al.Energy management and CO2 mitigation using phase change materials (PCM) for thermal energy storage (TES) in cold storage and transport[J].International Journal of Refrigeration,2014,42:26-35.
[3] Sidik N A C,Kean T H,Chow H K,et al.Performance enhancement of cold thermal energy storage system using nanofluid phase change materials:a review[J].International Communications in Heat and Mass Transfer,2018,94:85-95.
[4] 章学来,徐笑锋,周孙希,等.蓄冷技术在冷链物流中的研究进展[J].制冷与空调,2017,17(12):88-92.
[5] Gunasekara S N,Kumova S,Chiu J N,et al.Experimental phase diagram of the dodecane-tridecane system as phase change material in cold storage[J].International Journal of Refrigeration,2017,82:130-140.
[6] Vikram M P,Kumaresan V,Christopher S,et al.Experimental studies on solidification and subcooling characteristics of water-based phase change material (PCM) in a spherical encapsulation for cool thermal energy storage applications[J].International Journal of Refrigeration,2019,100:454-462.
[7] 于永生,井强山,孙雅倩.低温相变储能材料研究进展[J].化工进展,2010,29(5):896-900.
[8] 陶文博,谢如鹤.有机相变蓄冷材料的研究进展[J].制冷学报,2016,37(1):52-59.
[9] 杨天润,孙锲,Wennersten R,等.相变蓄冷材料的研究进展[J].工程热物理学报,2018,39(3):567-573.
[10] 叶锋,曲江兰,仲俊瑜,等.相变储热材料研究进展[J].过程工程学报,2010,10(6):1231-1241.
[11] 张寅平,刘真泉,王馨,等.低温相变蓄冷材料蓄冷特性实验研究[J].暖通空调,2005,35(10):114-117.
[12] 李晓燕,周维,周辉.适用与蓄冷空调的二元相变蓄冷材料的测试与研究[J].哈尔滨商业大学学报(自然科学版),2001,17(4):108-110.
[13] 左建国,李维仲,徐士鸣.辛酸/月桂酸作为相变蓄冷材料的热性能研究[J].太阳能学报,2012,33(1):131-134.
[14] 王晓霖,翟晓强,王恬,等.高温供冷相变蓄冷材料的制备及蓄冷性能[J].上海交通大学学报,2013,47(8):1275-1281.
[15] 李玉洋,章学来,Jotham Muthoka Munyalo,等.低温复合相变材料正辛酸-癸酸的制备及性能分析[J].化工新型材料,2019,47(5):127-130.
[16] 杨颖,张伟,董昭,等.冷藏车用新型复合相变蓄冷材料的制备及热性能研究[J].化工新型材料,2013,41(11):41-43.
[17] 高茂条,王春煦,吴学红,等.纳米石墨烯片-石蜡复合PCCSM制备方法及热物性研究[J].食品与机械,2016,32(12):128-132.
[18] 武卫东,唐恒博,苗朋柯,等.空调用纳米有机复合相变蓄冷材料制备与热物性[J].化工学报,2015,66(3):1208-1214.
[19] 武卫东,唐恒博,苗朋柯,等.空调用纳米有机复合相变蓄冷材料分散稳定性[J].化工进展,2015,34(5):1371-1376.
[20] 陈杨华,王麟康,杨皓月,等.RT6/纳米铝相变蓄冷材料的热物性研究[J].热科学与技术,2015,14(5):358-361.
[21] 应铁进,苏党,白家玮.用于非冷冻低温区运输的复合有机物相变蓄冷剂[J].农业机械学报,2017,48(8):309-314.
[22] 苏党.非冷冻低温区定形相变蓄冷剂的研究[D].杭州:浙江大学,2018.
[23] Fang Y T,Yu H M,Wan W J,et al.Preparation and thermal performance of polystyrene/n-tetradecane composite nanoencapsulated cold energy storage phase change materials[J].Energy Conversion and Management,2013,76:430-436.
[24] Chen J J,Ling Z Y,Fang X M,et al.Experimental and numerical investigation of form-stable dodecane/hydrophobic fumed silica composite phase change materials for cold energy storage[J].Energy Conversion and Management,2015,105:817-825.
[25] 吴淑英,朱冬生,杨硕.Al2O3-H2O纳米流体的相变蓄冷实验研究[J].工程热物理学报,2009,30(6):981-983.
[26] 杨硕,朱冬生,吴淑英,等.Al2O3-H2O纳米流体相变蓄冷特性研究[J].制冷学报,2010,31(1):23-26.
[27] 李婷,潘欣,应铁进.食品相变蓄冷剂的配方优化及应用[J].中国食品学报,2011,11(4):115-122.
[28] 李新芳,朱冬生,付文亭,等.纳米复合相变蓄冷材料黏度特性的影响因素分析[J].化学世界,2017,58(2):119-123.
[29] Yang X H,Bai Q S,Zhang Q L,et al.Thermal and economic analysis of charging and discharging characteristics of composite phase change materials for cold storage[J].Applied Energy,2018,225:585-599.
[30] Xu X F,Zhang X L,Liu S.Experimental study on cold storage box with nanocomposite phase change material and vacuum insulation panel[J].International Journal of Energy Research,2018,42(14):1-10.
[31] Wang C J,He Z T,Li H L,et al.Evaluation on performance of a phase change material based cold storage house[J].Energy Procedia,2017,105:3947-3952.
[32] Lin C,She X H,Leng G H,et al.Formulation and characterization of ternary salt based solutions as phase change materials for cold chain applications[J].Energy Procedia,2019,158:5103-5108.
[33] 傅一波,王家俊,王冬梅.复合相变蓄冷剂性能研究[J].化工新型材料,2017,45(10):235-237.
[34] 班超方,卢立新,潘嘹.冷冻型复合相变蓄冷材料的制备与性能评价[J].化工新型材料,2019,47(5):218-221,226.
[35] 李夔宁,郭宁宁,王贺.有机相变蓄冷复合材料的研究[J].化工新型材料,2009,37(4):87-88.
[36] 杨颖,沈海英.复合低温相变蓄冷材料的实验研究[J].低温物理学报,2009,31(2):144-147.
[37] Fu W W,Liang X H,Xie H Z,et al.Thermophysical properties of n-tetradecane@polystyrene-silica composite nanoencapsulated phase change material slurry for cold energy storage[J].Energy & Buildings,2017,136:26-32.
[38] Zou T,Fu W W,Liang X H,et al.Preparation and performance of modified calcium chloride hexahydrate composite phase change material for air-conditioning cold storage[J].International Journal of Refrigeration,2018:95:175-181.
Options
Outlines

/