• Human salivary gland cells (HSG) were irradiated with carbon ion beams supplied by the Heavy IonMedical Accelerator in Chiba (HIMAC), Japan at a low dose rate of 0.

    利用日本千叶重离子医用加速器HIMAC提供的离子束,对人类唾液腺细胞(HSG)剂量0。

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  • From both structures and applying electronegativity, ionization energy, stability of carbon ion and electron shield effect, the author approaches the addition difference between the two.

    离子稳定性电子效应探讨二者的加成差异

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  • One option includes carbon nanotubes, which are now being used to develop lithium-ion batteries for portable electronics that should last ten times longer than current batteries.

    其中一种选择包括纳米管现在用来制作锂离子电池,这种电池应用轻便电子产品普通电池使用时间长

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  • Water purification material Series: if Quartz sand, Activated Carbon, Manganese sand, Anthracite, and ion exchange resins.

    处理填料系列石英砂活性碳、无烟煤离子交换树脂

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  • The first commercial lithium-ion battery, launched by Sony in 1991, was a rocking-chair design that used cobalt oxide for the positive electrode, and graphite (carbon) for the negative one.

    1991年,Sony发布第一商用锂离子电池,它采用的就是摇椅设计,其中用钴氧化物正极石墨 )做负极。

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  • Compared with the old process or ion exchange process, the improved process shows clear advantage and is suitable to be used in a fertilizer plant having carbon dioxide and ammonia resources.

    工艺工艺离子交换法工艺相比较均有明显优势适合二氧化碳氨资源的化肥厂采用

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  • The technology should result in cheaper batteries since this process is free and the carbon component is less expensive than the lithium cobalt oxide used in lithium-ion batteries.

    技术导致更便宜电池因为这个过程空气免费的,而且碳“成本”是低于氧化物使用离子电池。

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  • Process review shows that the substrate material is the key factor for the carbon films deposition, and the parameters of ion energy, pressure and methane ratio are impotent also.

    工艺研究结果表明,衬底材料制备新型纳米具有关键作用,离子能量、工作压力气氛等工艺因素也具有重要作用。

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  • It has been becoming very important to improve the capability of carbon cathode material, and father to improve the capacity of lithium ion secondary batteries.

    解决电池容量关键材料——负极材料高性能化成为离子二次电池重要课题。

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  • Juice purification, corn syrup deashing, beat sugar purification and sweetener decolorization are practiced daily in many ion Exchange Separations and Activated Carbon Adsorption installations.

    采用离子交换分离装置活性炭吸附分离装置进行果汁纯化玉米糖浆脱灰、甜菜纯化、甜味剂脱色的工厂日益增多。

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  • Lithium ion battery, flow cell, sodium sulfur battery, lead acid battery, lead carbon battery, zinc bromine battery and other chemical energy storage products.

    离子电池液流电池电池、铅酸蓄电池电池、电池化学储能产品

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  • An organic coordination (complexing) compound in which the metal ion is bound to atoms of nonmetals, e. g. nitrogen, carbon, or oxygen, to form a heterocyclic ring having coordinate covalent bonds.

    一种位(络合)化合物其中金属离子非金属原子结合生成有配位共价键的环。

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  • The electrochemical behavior of the lithium ion battery using poly(p-phenylene) resin carbon materials as electrodes have been studied.

    测试了对聚苯树脂电极组装离子电池电化学性能。

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  • According to experiments the optimum conditions for extraction, decolorizing carbon and ion exchange are given, and the contents of produced syrup are analysed.

    通过多次实验,确定了浸提、活性炭脱色离子交换脱盐等过程的较工艺参数,同时成品糖浆成分进行了测定。

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  • Hydration of ion has bad influences on double-layer capacitance of carbon electrode, which can be reduced effectively by selecting large ion or increasing pore size of carbon electrode.

    离子水化电极电容产生不利影响选用离子增大炭材料的孔径有效降低离子水化炭电极电容性能的影响。

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  • The cokes, graphites, nongraphitizable carbon, carbon fibers. mesocarbon. microbeads(MCMB)used as carbon anode materials for lithium ion secondary batteries ware presented.

    介绍了焦炭、石墨、难石墨碳纤维、中间相微球等离子二次电池负极材料的研究概况。

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  • Experimental results indicate that doping carbon nanotubes into the nematics K15 and E7 can improve the flow characteristics and suppress the ion-charge effect of the LC cells.

    实验结果显示:在K15E7液晶掺杂管不但改善液晶液体特性,且能抑制液晶离子电荷效应

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  • The property of PAN-based carbon fibers and carbon fiber cloth used as negative electrode of secondary lithium ion battery is reviewed.

    讨论几种PAN基纤维纤维作为二次离子电池负极行为。

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  • An aluminum ion thin film was assembled on the surface of the carbon paste electrode chemically modified with stearic acid.

    将石墨粉、固体石蜡硬脂酸按一定比例混合制表面富含羧基的电极,然后电极表面组装荷正电离子

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  • Ion exchange demineralization Series: If No pressure on the top of anion exchanger current renewable Yang, Floating Bed, In addition to carbon dioxide device and Ion exchange.

    离子交换系列逆流再生阴离子交换浮动二氧化碳混合离子交换器。

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  • The invention relates to a nano-silicon amorphous carbon composition lithium ion battery cathode material and a preparation method therefore, belonging to the field of electrochemistry power supply.

    发明涉及了一种纳米硅无定型复合离子电池负极材料及其制备方法属于电化学电源领域

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  • The research progress, made by no. 18 research Institute, China Electronics Technology Group Corporation, in carbon materials for anodes of lithium ion batteries was reviewed.

    介绍中国电子科技集团公司第十八研究所在离子电池负极材料方面研究进展

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  • I am familiar with kinds of ion exchange resins, active carbon, carclazyte adsorption and so on.

    熟悉各种离子交换树脂活性碳白土吸附洗脱性能。

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  • Spherical activated carbon (SAC) was prepared from ion-exchange resin (IER) by carbonization and activation processes.

    采用不同工艺对离子交换树脂(IER)进行炭化活化制备球状活性炭(SAC)。

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  • The Xijiang River's inorganic carbon source was major from karst process in the drainage basin. Due to the "washing effect" , the content of HCO3- ion increased in the wet season.

    西江无机主要来源于岩溶作用,由于受河流冲刷效应影响,丰水期HCO_3~-离子含量升高

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  • The preparation method of the lithium ion battery cathode comprises the following steps: providing a carbon nanotube array to form a substrate;

    离子电池负极制备方法包括以下步骤提供纳米管阵列形成一基 底;

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  • Lithium-ion battery is a new type of energy, which in its non-polluting, can reduce carbon emissions and other advantages, starting as a substitute for traditional energy sources.

    锂离子电池一种新型能源无污染可以降低排放量优势开始作为一些传统能源的替代品。

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  • Several carbon-ceramic composites were used as elcctroactive materials to fabricate ion sensitive electrodes.

    本文以几种碳—复合材料电极材料制备离子敏感电极。

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  • One-dimensional carbon materials have potential applications in fuel cell, lithium ion battery and chemical sensor due to their high specific surface area and good conductivity.

    材料具有稳定的物理化学性能,分布广易得,而一维碳材料具有高的比表面积,良好的导电性。

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  • One-dimensional carbon materials have potential applications in fuel cell, lithium ion battery and chemical sensor due to their high specific surface area and good conductivity.

    材料具有稳定的物理化学性能,分布广易得,而一维碳材料具有高的比表面积,良好的导电性。

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