battery carbon

英 [ˈbætri ˈkɑːbən] 美 [ˈbætəri ˈkɑːrbən]

网络  而不包括电池用的碳棒; 电池用的碳棒; 电池用之碳棒

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双语例句

  1. The billionaire philanthropist said he had invested about$ 1bn in dozens of early-stage companies including battery, next generation nuclear and free air carbon capture hoping they would develop breakthrough technologies.
    这位亿万富翁慈善家表示,他已对数十家早期阶段公司投资约10亿美元,希望它们将开发出突破性技术。这些公司活跃于电池、下一代核电和大气层碳捕捉等领域。
  2. Carbon electrodes, carbon brushes, lamp carbons, battery carbons and other articles of graphite or other carbon, with or without metal, of a kind used for electrical purposes.
    碳电极、碳刷、灯碳棒、电池碳棒及电气设备用的其他石墨或碳精制品,不论是否带金属。
  3. A primary alkaline battery ( 10) has a cathode ( 12) including manganese dioxide, carbon particles, and binder.
    一种碱性原电池(10),有阴极(12),阴极中包括二氧化猛、碳颗粒和粘合剂。
  4. An all-vanadium redox-flow battery ( VRB) typically uses carbon felt as the electrode material in order to enhance the reactive current.
    为了获得大反应电流,全钒氧化还原液流电池使用聚丙烯腈基碳毡为电极活性材料。
  5. The third tier included battery vehicles driven by hydropower, nuclear, and coal from plants using carbon capture and storage.
    第三层次包括利用氢能源、核能、使用碳捕获和贮存技术的煤电厂提供电力的电池汽车。
  6. In this paper, integral composite electrodes of vanadium redox flow battery were prepared using modified PAN-based graphite felt and carbon plastic plate with polymer matrix.
    采用改性处理的聚丙烯腈基石墨毡和聚合物为基体的碳塑板制备得到了钒电池用一体化复合电极。
  7. A novel carbon-sulfur nano-composite as cathode for lithium battery was synthesized by heating sublimed sulfur and high surface area activated carbon ( HSAAC) in certain conditions.
    用该复合材料作为正极活性物质所制备的锂蓄电池具有较好的循环性能和高的比容量、比能量。
  8. The battery system shall consist of lead acid batteries, cabinet, charger and invertor, fabricated of painted carbon steel, located off the main skid in a customer provided safe area.
    电池系统应由铅酸蓄电池、机柜、充电器和逆变器组成,由涂漆碳钢制得,位于业主提供安全区域内主支座外部。
  9. Lithium ion rechargeable battery is developed based on the principle of lithium ion intercalation and deintercalation on a carbon negative electrode and an intercalation compound positive electrode.
    锂离子蓄电池是以锂离子在碳负极和嵌入化合物正极中的嵌入和脱嵌为原理发展起来的一种新型蓄电池。
  10. In order to promote the development of high-performance lithium ion battery, the future research work should be focused on searching appropriate precursors and pyrolysis parameters and the modification of carbon materials.
    作者还指出了以后的工作重点应放在探索合适的前驱体有机物及裂解条件和对碳素材料的修饰、改性进行系统的研究等方面,以便能进一步推动高性能锂离子电池的发展。
  11. Lithium in Li ion battery system is lost because the SEI passive layer is formed onto the surface of carbon anode.
    碳阳极表面形成的SEI钝化层会导致锂离子蓄电池体系中锂的损失。
  12. Study on lithium precipitation from lithium battery carbon anode by the method of coulometric differentiation
    电量微分法研究锂离子蓄电池碳负极锂的析出
  13. Surface Modifications of Carbon Materials Used as Anode of Lithium Ion Battery ⅱ. The Carbon Material with Core Shell Structure and Its Positive Effect on Cell Performance of Graphite Anode
    锂离子电池负极碳材料的表面改性与修饰Ⅱ.具有核壳结构的碳及其对电池性能的影响
  14. Lithium Battery with carbon sulfides cathode
    以碳硫化合物为正极的锂电池
  15. A review on the technical application of acrylic fiber domestic and abroad has been given, with focus on the cement reinforcement, lead battery plate reinforcement, out door textile, filtration fabrics, oxidized PAN fiber and carbon fiber.
    本文对聚丙烯腈系纤维国内外的产业用途进行评述,着重介绍了其用作水泥增强材料、铅蓄电池极板增强材料、室外纺织品、滤材、预氧化纤维和碳纤维的概况。
  16. The operation principle, design concept and test results of CTR type resistivity tester for battery carbon rod were introduced in this paper.
    介绍了CRT型碳棒电阻率测试仪的工作原理、设计思想以及试验结果。
  17. Organic pollutants which are difficult to decomposed biochemically can be decomposed into biochemically decomposed small molecular organic matters by the effect of micro battery consisting of iron filings and carbon granules.
    在焦碳粒与铁屑构成的微电池的作用下,废水中难生化的有机污染物被分解成为容易生化分解的小分子有机物。
  18. A Nonaqueous Hybrid Electrochemical Supercapacitor Based on High-voltage Li-ion Battery Cathode and Active Carbon
    活性碳/高电位锂离子嵌入化合物有机系混合型超电容器
  19. Influence of Zinc Chloride Battery Process on Leakage of Carbon Rod
    氯化锌电池工艺对炭棒头出水的影响
  20. Organic expanders were the most influential factors for charge acceptance of lead acid battery, other influential factors ( such as antioxidants, carbon black and SiO_2), technical parameters ( such as acid content in paste, formation temperature and paste density) were also evaluated.
    有机膨胀剂对铅蓄电池充电接受率影响最大,其他有影响的因素为抗氧化剂、碳黑和SiO2,工艺参数为加酸量、化成温度和铅膏密度等,也予以评价。
  21. On the base of review the development of lithium-ion battery and its additive in detail, carbon bisulfide ( CS_2) was chosen as the film-forming electrolyte additive by theory calculation.
    论文详细评述了锂离子电池及其添加剂的发展现状,通过理论计算,确定二硫化碳作为SEI膜成膜添加剂。
  22. The electrochemical behavior of the lithium ion battery using poly ( p-phenylene) resin carbon materials as electrodes have been studied.
    测试了对聚苯树脂碳电极组装的锂离子电池电化学性能。
  23. High Power Battery Leakage Caused by Carbon Rods
    高功率电池碳棒漏液的探讨
  24. A Good Assistant to Battery Industry& An interview with the Director of Wuzhou Carbon Red Factory, Guangxi
    电池行业的好帮手
  25. Rechargeable lithium battery is developed rapidly due to the adoption of carbon materials as the anode material for Li ion battery. However, the structure and properties of carbon materials is still the disputed subject as well as its effect on Li ion intercalation property.
    碳材料用作锂离子蓄电池的负极材料导致了可充锂电池的飞速发展,但碳材料的结构、性能及其贮锂性能的影响至今仍然是有争议的课题。
  26. Using a battery of bioassays for assessing ozone-biological activated carbon process in drinking water treatment
    用生物测试评价臭氧-生物活性炭净水工艺
  27. As electrode material for Li-ion battery, carbon nanotubes had a higher lithium capacity than graphite and performed good cycle performance.
    作为锂离子电极材料,碳纳米管具有高于石墨的嵌锂容量和良好的循环性能;
  28. A new Sn/ C composite material for lithium-ion battery anode was synthesized by carbonization and carbothermal reduction with phenolic resin as carbon source and stannous chloride or stannous sulfate as the tin source.
    以酚醛树脂为碳源,分别以氯化亚锡和硫酸亚锡这两种无机锡盐为锡源,经过简单的混合、炭化过程即可制备出目标Sn/C复合材料。
  29. 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.
    锂离子电池是一种新型能源,它以其无污染,可以降低炭排放量等优势,开始作为一些传统能源的替代品。