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锂硫电池硫-导电炭黑复合正极材料的研究 被引量:3
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作者 吴奕环 易炜 +2 位作者 时志强 武长城 王静 《电源技术》 CAS CSCD 北大核心 2012年第12期1800-1803,1826,共5页
采用富含微孔的导电炭黑BP2000和无孔导电炭黑VXC72作为导电载体材料,分别与单质硫进行复合制备硫-导电炭黑复合材料,研究微孔孔隙对硫-导电炭黑复合材料电化学性能的影响。通过扫描电子显微镜法(SEM)、X-射线衍射光谱法(XRD)、低温氮... 采用富含微孔的导电炭黑BP2000和无孔导电炭黑VXC72作为导电载体材料,分别与单质硫进行复合制备硫-导电炭黑复合材料,研究微孔孔隙对硫-导电炭黑复合材料电化学性能的影响。通过扫描电子显微镜法(SEM)、X-射线衍射光谱法(XRD)、低温氮气吸附法对该材料进行了结构表征,利用循环伏安扫描和恒电流充放电技术对复合材料的电化学性能进行了测试。结果表明:硫与导电炭黑复合后,能较好地改善单质硫的导电性和电化学性能,具有高比表面积微孔结构的炭黑BP2000因其高吸附性可限制聚硫离子的溶解和扩散,表现出较高的比容量和较好的大电流充放电能力。样品S/BP2000在100 mA/g充放电时,首周放电比容量达1 274.4 mAh/g,硫的利用率达到了76.1%;在1 600mA/g的大电流密度充放电时,其放电容量明显高于S/VXC72与单质硫电极,并表现出较好的倍率性能;经过120次循环后充放电效率保持在99.1%,较之普通硫电极其电化学性能得到显著改善。 展开更多
关键词 二次电池 单质 硫炭复合物
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Matter Composition and Two Stage Evolution of a Liangshan Super High-Sulfur Coal Seam in Kaili,Eastern Guizhou 被引量:9
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作者 YI Tong-sheng QIN Yong +2 位作者 ZHANG Jing WU Yan-yan LI Zhuang-fu 《Journal of China University of Mining and Technology》 EI 2007年第2期158-163,共6页
Super-high sulfur coal resultes in serious coal-derived pollution but might have a particular genesis. Thus,a columnar section of an Early Permian Liangshan Formation coal seam. weight average sulfur content 5.80%,fro... Super-high sulfur coal resultes in serious coal-derived pollution but might have a particular genesis. Thus,a columnar section of an Early Permian Liangshan Formation coal seam. weight average sulfur content 5.80%,from Kaili,eastern Guizhou,was studied using the methods of coal petrology and geochemistry. The results show that the seam was apparently formed in seawater-effected peat bogs that developed in two distinct stages. During the first stage various layers were formed in a supratidal bog and have a composition characteristic of a bog with a gradually decreasing sea-water effect,decreasing water dynamics,and an increasingly reductive environment. Layers in the upper seam formed during a second stage in an intertidal bog. These layers are very high in total and inorganic sulfur,the ratios of or-ganic/inorganic sulfur and V/I drop,they are high in coal ash yield and have a high ash component index,considerable barkinite,oxidized and detrital macerals,have a porphyroclatic micro-structure and are rich in pyrite,all of which indi-cate the coal-forming environment had higher oxidation potential,strong and roiling water dynamics,and intermittent exposure to a sulfur rich environment. 展开更多
关键词 Liangshan formation: coal seam super high sulfur matter composition peat bog EVOLUTION
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