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Engineering Department, Nanjing Institute of Technology, Nanjing 211167, China) Abstract: Anode catalyst, La0.75Sr0.25Cr0.5Fe0.5O3-δ (LSCrF), was synthesized to construct H2S fuel cell by urea combustion.... The application of novel anode materials improves performance of H2S fuel cell, while the maximum open circuit voltage is 0.76 V, and the polarization loss contributes to about 15% on total potential......
Fabrication and electrochemical performance of solid oxide fuel cell components by atmospheric and suspension plasma spray XIA Wei-sheng(夏卫生)1, 2, YANG Yun-zhen(杨云珍)3, ZHANG Hai-ou(张海鸥)2, WANG Gui... oxide fuel cell (SOFC). To enhance its electrochemical performance, the functionally graded PEN of planar SOFC was prepared by atmospheric plasma spray (APS). The cross-sectional SEM micrograph......
and absence of a proton exchange membrane[J]. Environmental Science and Technology, 2004, 38(14): 4040-4046. [17] CHEN L, ZHANG X G, YUAN C Z, CHEN S Y. Electrochemical properties of poly... fuel cell[J]. Water Purification Technology, 2018, 37(9): 54-59. [10] 姚丙林. 自驱动MFC-MEC耦合系统从LiCoO2中制备 钴[D]. 大连: 大连理工大学, 2013. YAO Bing-lin. Self-driven MFC-MEC coupled system for efficient cobalt......
of platinum-based electrocatalysts on multiwalled carbon nanotubes for proton exchange membrane fuel cells [J]. Langmuir, 2002, 18(10): 4054-4060. [16] Rajesh B, Karthik V, Karthikeyan S, THAMPI K R... fuel cell(DMFC) due to its possible use in electric vehicles[1-2]. The performance of DMFC has improved markedly in the past years. Despite many efforts devoted to the DMFC development, there still......
Institute of Technology, Harbin 150001, China) Abstract:Glass-ceramic materials were developed as a sealant in the solid oxide fuel cell (SOFC) in the temperature range of 800~850 ℃. The glass materials... with Ba2+ content of 25.4% was approximately zero after heat-treated at 800 ℃ for 500 h in H2 and O2 atmosphere, respectively. Key words:solid oxide fuel cell; glass-ceramic; sealant; compatibility......
热解前处理,然后利用剪切破碎和气流分选方法对真空热解渣中的金属铜进行回收,铜的总回收率为99.86%.LIANG等[14]研究高位阻β-二酮从氨性蚀刻废液中萃取铜.仉丽娟等[15]利用生物浸出的方法实现废覆铜板分选渣中残留铜的资源化,铜浸出率95%以上,生物法反应周期长,且在反应过程中要严格控制外界的因素对微生物的影响. 微生物燃料电池(Microbial fuel cell,MFC)利用微生物的... Metals, 2015, 25(10): 2936-2944. [16] RICHTER H, NEVIN K P, JIA H F, LOWY D A, LOVILEY D R. Cyclic voltammetry of biofilms of wild type and mutant Geobacter sulfurreducens on fuel cell anodes indicates......
磺化聚酰亚胺质子交换膜的研究进展 孙彩霞1,马磊1,徐杰1,张涛1,刘晓海2 (1.中国科学院,大连化学物理研究所,辽宁,大连,116023;2.大连市甘井子环保分局,辽宁,大连,116031) 摘要:聚酰亚胺是一类非常重要的高性能聚合物材料,在许多领域都有非常广泛的应用.本文综述了磺化聚酰亚胺作为质子交换膜燃料电池中膜材料的研究概况,总结了改善磺化聚酰亚胺溶解性及其薄膜水解稳定性和质子电导率等性能的方法. 关键词:磺化聚酰亚胺; 质子交换膜; 燃料电池; [全文内容正在添加中] ......
Hengyitong Rare Earth Co., Ltd, Baotou 014060, China) Abstract:The solid oxide fuel cell (SOFC) is a high-efficient and environmentally friendly power generation system.The rare earth oxide materials...; solid oxide fuel cell; component materials; rare earths; [全文内容正在添加中] ......
Effect of Ce3+ on membrane permeability of Escherichia coli cell陈爱美,施庆珊,欧阳友生,陈仪本摘 要:This study aimed to delineate the antibacterial mechanism of rare-earth ion Ce 3+ to the target organism Escherichia coli cell, and the most important purpose was to identify its biological effect of increasing the E. coli cell membrane permeability. The antibacterial......
Effect of Ce3+ on membrane permeability of Escherichia coli cell陈爱美,施庆珊,欧阳友生,陈仪本摘 要:This study aimed to delineate the antibacterial mechanism of rare-earth ion Ce 3+ to the target organism Escherichia coli cell, and the most important purpose was to identify its biological effect of increasing the E. coli cell membrane permeability. The antibacterial......