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[1]litingxian. Experimental study on the effects of the operation conditions on the performance of a chemisorption air conditioner powered by low grade heat. Applied Energy 103(2013)571-580. Applied Energy , 2013,
[2] Performance analysis of an integrated energy storage and energy upgrade thermochemical solid-gas sorption system for seasonal storage of solar thermal energy. Energy, 2013, 50:454-467. (SCI, EI) Energy (ESI论文), 2013,
[3]litingxian. Resorption system for cold storage and long-distance refrigeration. Applied Energy 93 (2012) 479-487 Applied Energy , 2012,
[4] Performance analysis of a multi-mode thermochemical sorption refrigeration system for solar-powered cooling. International Journal of Refrigeration 35(2012) 532-542. (SCI检索号:000302985200008;EI检索号:20121214885530) International Journal of Refrigeration , 2012,
[5]litingxian. Experimental study on the performance of double-effect and double-way thermochemical sorption refrigeration cycle APPLIED THERMAL ENGINEERING, 2011,
[6] A new target-oriented methodology of decreasing the regeneration temperature of solid-gas thermochemical sorption refrigeration system driven by low-grade thermal energy.International Journal of Heat and Mass Transfer 54(2011) 4719-4729.(EI检索号:20113014178706) INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2011,
[7]litingxian. Heat transfer design in adsorption refrigeration systems for efficient use of low-grade thermal energy ENERGY, 2011,
[8]litingxian. Renewable energy in Kenya: Resource potential and status of exploitation. Renewable and Sustainable Energy Reviews 15 (2011) 2960–2973 Renewable and Sustainable Energy Reviews , 2011,
[9]litingxian. Experimental study on a combined double-way chemisorption refrigeration system INTERNATIONAL JOURNAL OF REFRIGERATION, 2011,
[10] 新型双重热化学吸附制冷热力循环研究(Study on an Innovative Combined Double-way Thermochemical Sorption Refrigeration Cycle) 2011,32 (3):373-376 (EI检索号:20111813958150) 工程热物理学报, 2011,
[11]litingxian. Adsorption Characteristic of Methanol in Activated Carbon Impregnated with Lithium Chloride. (SCI检索号:000284054500015) CHEMICAL ENGINEERING & TECHNOLOGY, 2010,
[12]litingxian. Lithium chloride–expanded graphite composite sorbent for solar powered ice maker. (SCI检索号:000281934500004) SOLAR ENERGY, 2010,
[13] Experimental study and comparison of thermochemical resorption refrigeration cycle and adsorption refrigeration cycle. Chemical Engineering Science 65 (2010) 4222-4230. (SCI检索号:000278603500012;EI检索号: 20102312994586) CHEMICAL ENGINEERING SCIENCE, 2010,
[14] Performance Improvement of a Combined Double-way Thermochemical Sorption Refrigeration Cycle with Reheating process. AIChE Journal 56 (2010) 477-484. (SCI检索号: 000274047100015; EI检索号: 20100312651815) AICHE JOURNAL, 2010,
[15] Thermodynamic study of a combined double-way solid-gas thermochemical sorption refrigeration cycle. International Journal of Refrigeration 32 (2009) 1570-1578. (SCI检索号: 000271336800008; EI检索号: 20093712301837 ) INTERNATIONAL JOURNAL OF REFRIGERATION, 2009,
total93 6/7
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