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花岗岩型热液铀矿床C,O同位素研究——以粤北下庄铀矿田为例 被引量:22
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作者 商朋强 胡瑞忠 +2 位作者 毕献武 刘雷 张国全 《矿物岩石》 CAS CSCD 北大核心 2006年第3期71-76,共6页
下庄矿田是华南重要的热液铀矿产区,区内控矿条件复杂。研究选取下庄矿田部分矿床内热液碳酸盐样品并测定其C,O同位素组成:测定矿田北部的1δ3CPDB为-7.6‰^-8.4‰,1δ8CSMOW为12.1‰~13.2‰,而矿田南部测波动范围较大1δ3CPDB则为-3.1... 下庄矿田是华南重要的热液铀矿产区,区内控矿条件复杂。研究选取下庄矿田部分矿床内热液碳酸盐样品并测定其C,O同位素组成:测定矿田北部的1δ3CPDB为-7.6‰^-8.4‰,1δ8CSMOW为12.1‰~13.2‰,而矿田南部测波动范围较大1δ3CPDB则为-3.1‰^-8.5‰,δOSMOW为10.4‰~14.1‰。进一步研究结果表明,成矿流体中矿化剂ΣCO2主要来源于中新生代与区域深大断裂有关的幔源脱气作用,同时伴有壳源有机碳来源;成矿同时期伴随的强烈流体脱气(CO2)作用对矿质沉淀至关重要。 展开更多
关键词 下庄铀矿田 碳酸盐 C O同位素 矿化剂
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Synthesis of carbon nanofibers@MnO_2 3D structures over copper foil as binder free anodes for lithiumion batteries 被引量:2
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作者 Fengliu Lou Haitao Zhou +2 位作者 Fride Vullum-Bruer Trung Dung Tran De Chen 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2013年第1期78-86,共9页
A 3D structured composite of carbon nanofibers @ MnO2 on copper foil is reported here as a binder free anode of lithium ion batteries, with high capacity, fast charge/discharge rate and good stability. Carbon nanofibe... A 3D structured composite of carbon nanofibers @ MnO2 on copper foil is reported here as a binder free anode of lithium ion batteries, with high capacity, fast charge/discharge rate and good stability. Carbon nanofiber yarns were synthesized directly over copper foil through a floating catalyst method. The growth of carbon nanofiber yarns was significantly enhanced by mechanical polishing of the copper foils, which can be attributed to the increased surface roughness and surface area of the copper foils. MnO2 was then grown over carbon nanofibers through spontaneous reduction of potassium permanganate by the carbon nanofibers. The obtained composites of carbon nanofibers@MnO2 over copper foil were tested as an anode in lithium ion batteries and they show superior electrochemical performance. The initial reversible capacity of carbon nanofibers@MnO2 reaches up to around 998 mAh.g-1 at a rate of 60 mmA.g-l based on the mass of carbon nanofibers and MnO2. The carbon nanofibers @ MnO2 electrodes could deliver a capacity of 630 mAh.g-1 at the beginning and maintain a capacity of 440 mmAh.g-1 after 105 cycles at a rate of 600 mA.g-~. The high initial capacity can be attributed to the presence of porous carbon nanofiber yarns which have good electrical conductivity and the MnO2 thin film which makes the entire materials electrochemically active. The high cyclic stability of carbon nanofibers@MnO2 can be ascribed to the MnO2 thin film which can accommodate the volume expansion and shrinking during charge and discharge and the good contact of carbon nanofibers with MnO2 and copper foil. 展开更多
关键词 icarbon nanofiber yams Mn02 binder free anode lithium ion battery
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