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Preparation of composite adsorbent with high performance of heat and mass transfer 被引量:1

Preparation of composite adsorbent with high performance of heat and mass transfer
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摘要 To develop a new composite adsorbent with high performance,fir sawdust and CaCl2are selected as raw materials.The mass transfer is enhanced by carbonizing and activating the sawdust and heat transfer is enhanced by adding expanded graphite into the adsorbent.The effect of the preparation temperature and the expanded graphite content on the adsorption performance is investigated.The results show that the new adsorbent exhibits a high adsorption performance due to its high porosity,uniform distribution and high content of CaCl2and high thermal conductivity.Also,the experimental results indicate that the rate of ammonia adsorption on the adsorbent depends on the expanded graphite content and the carbonization and activation temperature.The adsorbent prepared at 500°C and with the expanded graphite content of 30%has the best performance in terms of the adsorption refrigeration,which adsorbs ammonia as high as 0.37 g g 1at 10 min. To develop a new composite adsorbent with high performance, fir sawdust and CaCl2 are selected as raw materials. The mass transfer is enhanced by carbonizing and activating the sawdust and heat transfer is enhanced by adding expanded graphite into the adsorbent. The effect of the preparation temperature and the expanded graphite content on the adsorption performance is investigated. The results show that the new adsorbent exhibits a high adsorption performance due to its high porosity, uniform distribution and high content of CaCl2 and high thermal conductivity. Also, the experimental results indicate that the rate of ammonia adsorption on the adsorbent depends on the expanded graphite content and the carbonization and activation temperature. The ad- sorbent prepared at 500℃ and with the expanded graphite content of 30% has the best performance in terms of the adsorption refrigeration, which adsorbs ammonia as high as 0.37 g g^-1 at 10 mix.
出处 《Chinese Science Bulletin》 SCIE EI CAS 2013年第30期3709-3714,共6页
基金 supported by the Innovation Program of Chinese Academy of Sciences(y007y51001) Comprehensive Strategic Cooperation Projects of Chinese Academy of Sciences and Guangdong Province(2012B091100263)
关键词 复合吸附剂 传质性能 制备方法 传热增强 膨胀石墨 吸附性能 活化温度 石墨含量 composite adsorbent, carbonization activation, enhanced heat transfer, enhanced mass transfer, adsorption refrigeration
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  • 1Bidyut B S, Anutosh C, Shigeru K. et al. A new generation cooling device employing CaC12-in-silica gel-water system, lnt J Heat Mass Tran, 2009, 52:516-524.
  • 2Bao H S, Wang R Z, Wang L W. A resorption refrigerator driven by low grade thermal energy. Energ Convers Manage, 2010, 52:2339-2344.
  • 3Akahira A, Alam K C A, Hamamoto Y, et al. Experimental investi- gation of mass recovery adsorption refrigeration cycle. Int J Refrig, 2005, 28:565-572.
  • 4Maggio G, Gordeeva L G, Freni A, et al. Simulation of a solid sorp- tion ice-maker based on the novel composite sorbent "lithium chlo- ride in silica gel pores". Appl Therm Eng, 2009, 29:1714-1720.
  • 5Wang D C, Li Y H, Li D, et al. A review on adsorption refrigeration technology and adsorption deterioration in physical adsorption systems. Renew Sust Energ Rev, 2010, 14:344-353.
  • 6Ponomarenko I V, Glaznev I S, Gubar A V, et al. Synthesis and water sorption properties of a new composite "CaCI2 confined into SBA-15 pores". Micropor Mesopor Mat, 2010,129:243-250.
  • 7Veselovskaya J V, Tokarev M M, Aristov Y I. Novel ammonia sorbents "porous matrix modified by active salt" for adsorptive heat transformation: 1. Barium chloride in various matrices. Appl Therm Eng, 2010, 30:584-589.
  • 8Gong L X, Wang R Z, Xia Z Z, et al. Design and performance pre- diction of a new generation adsorption chiller using composite ad- sorbent. Energ Convers Manage, 2011, 52:2345-2350.
  • 9Kiplagat J K, Wang R Z, Oliveira R G, et al. Lithium chloride-Ex- panded graphite composite sorbent for solar powered ice maker. Sol Energy, 2010, 84:1587-1594.
  • 10Zhong Y, Critoph R E, Thorpe R N, et al. Isothermal sorption characteristics of the BaCI2-NH3 pair in a vermiculite host matrix. Appl Therm Eng, 2007, 27:2455-2462.

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