Title :
Adsorption and Refrigeration Performance of Ammonia-Composite Adsorbent Working Pair
Author :
Yi, Wan ; Kai, Zheng ; Lili, Sheng ; Qun, Cui ; Haijun, Chen ; Haiyan, Wang ; Huqing, Yao
Author_Institution :
Coll. of Chem. & Chem. Eng., Nanjing Univ. of Technol., Nanjing, China
Abstract :
Composite absorbent (CAds-AC-15) mainly used activated carbon and CaCl2 as the resources for adsorption refrigeration were prepared by the mixed method, and the content of activated carbon in CAds-AC-15 was 15%. Adsorption isotherms of ammonia on CAds-AC-15 were determined by positive gravimetric method. Adsorption desorption cycle performance and cooling characteristics of CAds-AC-15- ammonia working pair was evaluated by self made adsorption desorption measuring device. Experimental results show that the equilibrium capacity of ammonia on the CAds-AC-15 is up to 1.136 kg/kgads at 30°C, which is 5% lower than that of CaCl2. With the conditions of adsorption temperature 30°C, ammonia evaporation pressure 0.25 MPa, desorption temperature 300°C, the performance of CAds-AC 15- ammonia working pair is stable after repetitious adsorption-desorption cycles, adsorption capacity of ammonia on the CAds-AC-15 and its cyclic adsorption capacity is 0.55~0.65 kg/kg and 0.2~0.25 kg/kg, respectively. The cooling capacity is up to 328.38kJ/kgads, which is twice as high as CaCl2 ammonia working pair.
Keywords :
activated carbon; adsorption; ammonia; calcium compounds; composite materials; cooling; desorption; evaporation; gravimeters; refrigeration; CaCl2; NH3; activated carbon; adsorption isotherms; adsorption refrigeration; adsorption-desorption cycle performance; adsorption-desorption measuring device; ammonia evaporation pressure; ammonia-composite adsorbent working pair; composite absorbent; cooling capacity; cyclic adsorption capacity; equilibrium capacity; positive gravimetric method; pressure 0.25 MPa; temperature 30 degC; temperature 300 degC; Carbon; Cooling; Heating; Performance evaluation; Solids; Temperature measurement; Waste heat; adsorption capacity; adsorption refrigeration; ammonia; composite absorbent; cooling capacity;
Conference_Titel :
Measuring Technology and Mechatronics Automation (ICMTMA), 2011 Third International Conference on
Conference_Location :
Shangshai
Print_ISBN :
978-1-4244-9010-3
DOI :
10.1109/ICMTMA.2011.87