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  • 网络二氧化锰
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  1. Moreover , the MnO2 / bamboo-based activated carbon supercapacitor electrode composite calcined has higher specific capability .

    另外煅烧后的二氧化锰/竹基活性炭复合电极材料比煅烧前具有更高的比容量。

  2. Scrap Alkaline Zn / MnO2 Battery and Its Recovery The recycle of alkaline scrap material produced in natural alkali industry

    废旧碱性二氧化锰电池特点和湿法再资源化研究天然碱工业伴生废渣的再生循环利用

  3. MnO2 / activated carbon composite electrode materials were prepared by chemical co-precipitation method .

    化学共沉淀法制得α-MnO2·nH2O和活性炭的复合电极材料。

  4. Study on Chemical Polishing Process for Current Collector in Alkaline Zn / MnO2 Battery

    碱锰电池集流体铜钉化学抛光工艺的研究

  5. A new type zinc gel binder for mercury - free alkaline Zn / MnO2 battery

    一种新型的无汞碱锰电池锌膏凝胶剂

  6. It indicated that the alkaline Zn / MnO2 battery had larger development potentiality .

    指明碱性Zn/MnO2电池仍有较大的发展潜力。

  7. EMD is one of the key materials of Hg free alkaline Zn / MnO2 battery .

    电解二氧化锰是实现碱性锌锰电池无汞化的关键材料之一。

  8. Technical progress of zinc gel binders for alkaline Zn / MnO2 battery was summarized .

    概述了碱性锌锰电池锌膏增稠剂的技术进步。

  9. It was pointed out that leakage problems of alkaline Zn MnO2 battery could be solved through technology design and technology control .

    指出可从工艺设计、工艺控制两方面着手解决碱性锌锰电池漏液问题;

  10. δ– MnO2 and nano-carbon composites were synthesized by in situ hydrothermal method .

    通过原位水热法制备出δ-MnO2和纳米碳的复合材料。

  11. This provides a new approach for improving the high-power discharge performance of alkaline Zn / MnO2 battery cathode materials .

    这为改善碱性锌锰电池正极材料的大功率放电性能提供了一条新的途径。

  12. The surface states and CO oxidation activities of MnO2 / TiO2 catalysts with various loading amount were studied in this paper .

    研究了不同负载量的MnO2/TiO2系列催化剂的表面状态及CO氧化活性。结果表明,当MnO2负载量低于5.7wt%时,MnO2呈Mn2O3相;

  13. Moreover the as-prepared MWCNTs / MnO2 composite electrode still keeps excellent capacitive property after 100 cycles .

    经过100次循环后,电容器仍保持良好的电容特性。而未经过真空处理的MWCNTs/MnO2复合电极的比容量为135F/g。

  14. The cause of capacity-loss during alkaline Zn / MnO2 battery storage and its control measure was pointed out .

    分析了造成碱锰电池贮存后容量衰减的原因,并提出了改进措施。

  15. The main texts are as follows : MnO2 nanostructures have been fabricated by precipitation method at room temperature and hydrothermal method , respectively .

    用常温化学沉淀法和水热反应法制备了MnO2的纳米结构。

  16. Li / MnO2 battery has the advantage of high voltage , discharging smoothly , high specific energy , simply and inexpensive to produce .

    锂锰电池具有电压高、放电平稳、高比能量、制造简单廉价等优势。

  17. All solid-state Zn / MnO2 rechargeable battery .

    全固态锌锰二次电池。

  18. The research of technical automatic assembly line system for Li / MnO2 batteries relied on this method has gotten satisfactory effects and attained expected objective .

    应用这种方法进行Li/MnO2电池自动装配生产线技术系统的设计研究,取得了满意的效果,达到了预期的目标。

  19. Results showed that the MnO2 / MWCNTs anodes had a better wettability and greater kinetic activity than the plain graphite anode .

    结果表明,与普通石墨电极相比,MnO2(50%)/MWCNTs阳极具有更好的润湿性和动力学活性。

  20. A new technique had been developed for measuring discharge curves of dry cells as well as the electrode potential of MnO2 and Zn electrode potential and internal resistance simultaneously .

    本文提出了测量电池放电电压曲线的同时测量二氧化锰电极电位,锌电极电位和电池内阻变化的新技术。

  21. The causes of unfavored phenomena about the capacity on the low side and low voltage of mercury free alkaline Zn / MnO2 battery was analysed .

    分析了无汞碱性锌锰电池出现容量偏低、低电压等不良现象的原因;

  22. Because the alkaline Zn / MnO2 battery has higher investment value and good market developing vista . It shall become one of the dominant battery products in the 21st century .

    由于它具有极高的投资价值和良好的市场前景,将成为21世纪电池主导产品之一。

  23. With the rapid development of electronic digital products , the applications of existing alkaline Zn / MnO2 cell has been limited due to its poor fast discharge properties and rechargeable ability .

    现有的碱锰电池由于快速充放电和循环性能差,已经无法满足电子数码产品的使用需求。

  24. In Chapter 4 , we synthesized MnO2 / graphene oxide nanocomposite via a simple in situ deposition approach to construct the nonenzymatic hydrogen peroxide biosensor .

    在第4章中,我们采用简单的原位沉积的方法制备了基于MnO2/石墨氧化物复合物的非酶生物传感器,用于检测过氧化氢。

  25. The first paper in a series summarized the research and achievements of chemical power sources about Zn / MnO2 batteries in China in the recent 50 years , especially in the recent 20 years .

    初步小结了新中国成立后,Zn/MnO2电池50年来的研究和进展。

  26. This paper focuses on the novel process of activated carbon / fresh MnO2 + rice-husk biofilm reactor and studied its characteristic in high strength acrylonitrile ( AN ) wastewater treatment .

    本文研究开发了活性炭/新生态MnO2+稻壳生物膜反应器组合新工艺处理高浓度丙烯腈(AN)废水,并对其性能进行了研究。

  27. Then , Manganese dioxide ( MnO2 ) was synthesized on nickel foam by using a novel unipolar pulse electro-polymerization method and to study the electrochemical behavior of it .

    接着,利用单电极脉冲在泡沫镍上电镀聚合二氧化锰并研究其电化学行为。

  28. To improve the capacitance , Li + as additive was added to ( NH4 ) 2SO4 electrolyte for activated carbon and MnO2 / activated carbon hybrid supercapacitor .

    在电解液(NH4)2SO4中加入Li+添加剂,用以提高二氧化锰/活性炭混合超级电容器以及活性炭电容器的容量。

  29. The alkaline Zn / MnO2 cell reflects many advantages such as high specific energy , easy to use since it was been commercialized . So it has become the most widely used battery in civil areas .

    碱锰电池自商品化以来,由于比能量高、使用方便等特点,在民用电池领域发挥了重要作用。

  30. The experiment showed that the combination of SnO2 + Sb2O4 is a better intermediate layer material and will play a important role in Ti / MnO2 and Ti / PbO2 anodes .

    实验表明,SnO2+Sb2O4是一种具有良好导电性和结合力的耐酸Ti基MO2电极中间层材料。