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Dive into the research topics where Yuan Zhongshan is active.

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Featured researches published by Yuan Zhongshan.


international conference on electric information and control engineering | 2011

A compact fuel processor integrated with 75kw PEM Fuel Cells

Du Liming; Zhang Jun; Sun Li-ping; Yuan Zhongshan; Li Deyi

Due to difficulties and inconveniences in storing and transporting of high-pressure pure hydrogen, hydrogen source becomes one of the technical bottlenecks of the commercialization of fuel cell. In this thesis, a compact autothermal reformer suitable for liquid fuel was developed. The fuel processor consists of a fuel evaporating step, two-stage reformer and a two-stage reactor of water gas shift (WGS, one for high temperature water gas shift and the other for low temperature water gas shifter) and a four-stage preferential oxidation (PROX) reactor and some internal heat exchanger in order to achieve optimized heat integration. It is designed to provide enough hydrogen for 75kWel fuel cells. The fuel reformer was combined with polymer electrolyte membrane fuel cells (PEM FC) and a system test of the process chain was successfully performed. During three hours coupling experiment, the fuel processing system and the fuel cells all has been running smoothly. The volume concentration of H2 and CO in product gas (dry basis) was kept in 53% and 20ppm respectively, completely meeting the requirements of PEM fuel cells. The conversion efficiency of the hydrogen producing system based on LHV of fuel and hydrogen can exceed 95.85%. The fuel cells stacks put up strong resistance to CO and its maximum electronic load to the fuel cells reaches 75.5kW. According to the experimental results, the hydrogen source system can produce hydrogen 70.5 m3/hr and its specific gravity power and specific volume power reach 255W/kg and 450W/L respectively. It indicates that it is feasible technically for supplying hydrogen for Proton Exchange Membrane Fuel Cells by catalytic reforming of hydrogen-rich liquid fuel on-board or on-site.


Archive | 2013

Wide-temperature full methanation catalyst and preparation method thereof

Wang Shudong; Sun Tianjun; Yuan Zhongshan; Peng Jiaxi; Zhang Chunxi; Kong Qingdan; Yuan Quan


Archive | 2013

Self-heating reforming hydrogen production catalyst and preparation method thereof

Xie Yuming; Wang Shudong; Yuan Zhongshan; Okada Akira; Ni Changjun


Archive | 2014

Technology for preparing natural gas from synthetic gas

Wang Shudong; Wang Sheng; Li Defu; Su Hongjiu; Peng Jiaxi; Yuan Zhongshan


Archive | 2013

Compact natural gas reforming hydrogen producing reactor

Wang Shudong; Pan Liwei; Yuan Zhongshan; Ni Changjun; Cao Lei


Archive | 2011

CATALYST FOR DEOXIDATION OF COALBED GAS, PREPARATION METHOD AND USE THEREOF

Wang Shudong; Wang Sheng; Yuan Zhongshan; Zhang Chunxi; Ni Changjun; Li Deyi


Archive | 2016

CO methanation catalyst with water-vapor conversion function and preparation method and application thereof

Wang Shudong; Yuan Zhongshan; Wang Sheng


Archive | 2016

Hetero-type methanation catalyst and molding process and application thereof

Wang Shudong; Yuan Zhongshan; Zhang Jianguo; Zhou Jin; Gao Diannan; Yang Xiaoye


Archive | 2016

Composite oxide carrier with bimodal mesopores, as well as preparation method and application of composite oxide carrier

Wang Shudong; Yuan Zhongshan; Peng Jiaxi; Zhou Jin; Zhang Jianguo; Yang Xiaoye


Archive | 2016

Enclosed methanol-water steam reforming fuel cell hydrogen source system and hydrogen production method

Su Hongjiu; Yuan Zhongshan; Wang Shudong; Ni Changjun; Li Deyi; Yang Xiaoye

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Wang Shudong

Chinese Academy of Sciences

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Li Deyi

Dalian Institute of Chemical Physics

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Pan Liwei

Dalian Institute of Chemical Physics

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Zhang Jianguo

Chinese Academy of Sciences

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Du Liming

Dalian Jiaotong University

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Sun Li-ping

Dalian Jiaotong University

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Yuan Quan

Dalian Institute of Chemical Physics

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Zhang Jun

Dalian Jiaotong University

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