redox cell

网络  氧化还原电池

电力



双语例句

  1. By holding and releasing electrons they can take place in redox reactions, which are used to produce energy for the cell.
    通过吸收和释放电子,这些金属原子会发生氧化作用为细胞提供能量。
  2. Iron/ chromium redox flow cell system
    铁铬氧化还原液流电池系统
  3. Studies on the Feasibility to Mn(ⅲ)/ Mn(ⅱ) Cathode of Redox Flow Cell and Tin-based Anode Materials for Lithium-ion Batteries
    Mn(Ⅲ)/Mn(Ⅱ)作为液流电池正极的可行性及锂离子电池锡基负极材料的研究
  4. The Measurement of redox state of glutathione in plasma and red blood cell in health youth of chengdu district and their redox potential distribution
    成都地区青年人群中血浆和红细胞还原/氧化型谷胱甘肽的含量及其氧化-还原电位的分布
  5. In the meanwhile, the three key technologies of developing vanadium redox flow cell and the way to the problem are put forward. Review of R& D status of vanadium redox battery
    同时介绍钒电池制备和应用时的三大技术关键及一定的解决方法。大规模蓄电储能全钒液流电池研究进展
  6. The development of vanadium redox flow battery were also discussed as well as the structure of single vanadium cell and 1 kW vanadium battery pack.
    同时介绍了钒电池的研制发展概况,对钒单电池和千瓦级钒电池组的结构进行了描述。
  7. Study on sodium polysulfide/ bromide redox flow cell
    多硫化钠&溴化钠氧化还原液流电池研究
  8. This paper covers two parts. The first part reported Mn ( III)/ Mn ( II) couple was used to be the cathode in a redox flow cell.
    本文共分两部分,第一部分对Mn(III)/Mn(II)电对作为氧化还原液流电池正极材料的可行性进行研究;
  9. Redox System of Plasma Membrane in Plant Cell
    植物细胞质膜氧化还原系统
  10. Azurin, a bacterial redox cell protein from Pseudomonas Alcaligenes, is a low molecular weight 、 solubility copper protein.
    天青蛋白是由假单胞杆菌绿毒素分泌的一种细胞蛋白,属于低分子量、可溶性的含铜蛋白,因此称其为铜蓝蛋白。
  11. Porous carbon electrodes for sodium polysulfide-bromine redox flow energy storage cell
    多孔碳电极用于多硫化钠-溴储能电池
  12. Improving the stability of electrolyte for vanadium redox cell
    提高钒电池电解液的稳定性
  13. In time of oxidative stress, free radicals and redox in the cell can regulate gene expression by changing the activity of transcription factors.
    氧化应激时,细胞内自由基和氧化还原状态能通过改变转录因子活性调控基因表达,影响细胞内氧化还原状态的物质都能调节这些转录因子所激活的基因表达。
  14. In addition, it is widely recognized that H_2O_2-related redox regulation is the key factor regulating cell activities.
    此外,现已广泛地认识到与H2O2相关的氧还状态调节是调整细胞活动的关键因子。
  15. Measurement of human serum redox status and the relationship of cell redox status with cell injury
    血清氧化-还原态的监测及其与细胞损伤的关系
  16. Electrocatalysis of Prussian Blue for V(ⅴ)/ V(ⅳ) in vanadium redox cell
    普鲁士蓝对钒电池中V(Ⅴ)/V(Ⅳ)的电催化
  17. Modulation of bacterial redox protein azurin induces human osteosarcoma cell apoptosis by Fas antigen and caspase-8
    Fas抗原和caspase-8调控细菌氧化还原蛋白azurin诱导的人骨肉瘤细胞凋亡的实验研究
  18. A study of the electrochemical behaviour of the transition metal ion modified porous electrode in vanadium redox cell system
    过渡金属离子修饰多孔电极在VOSO4溶液中的电化学行为研究
  19. The Research Progress of Flow Redox Cell
    液流电池研究进展
  20. Although the metabolic signal received by the regulatory components of the operons is still unknown, the redox state of cell is believed to play a key role.
    尽管操纵子调控元件接收到的代谢信号仍是未知的,但一般认为细胞的氧化还原状态起着关键作用。
  21. Activation Mechanism Study of Electrochemical Treated Graphite Felt for Vanadium Redox Cell by Electrochemical Impedance Spectrum
    钒液流电池用石墨毡电极电化学活化机理的交流阻抗研究
  22. The redox potential of cells was promoted rapidly, and ion channels in cell membrane were activated leading to H+, Ca 2+ influx and Cl-efflux which caused alkalization of medium.
    细胞的氧化还原电势增高,细胞膜上离子通道被激活,H+和Ca2+内流,Cl-外流;
  23. Objective: To investigate the ways of measuring human serum redox status and the effects of changes of cell redox status on cell proliferation, apoptosis and injuries.
    目的:探讨如何评价体内的氧化还原状态及细胞的氧化还原态改变对细胞增殖、凋亡、损伤等的影响。
  24. The electrochemical behavior of Ce 4+/ Ce 3+ couple with various Ce 4+ concentrations in a novel Ce 4+/ Ce 3+-V 2+/ V 3+ redox cell was investigated by linear polarization and ac impedance techniques.
    用线性极化法和交流阻抗法研究了新型Ce4+/Ce3+V2+/V3+氧化还原电池中Ce4+/Ce3+半电池在不同Ce4+浓度下的电化学行为。
  25. In mitochondria, a primary site of oxygen consumption and the major source of reactive oxygen species ( ROS), GSH plays a key role in maintaining the redox environment to avoid or repair oxidative damage leading to dysfunction and cell death.
    细胞内,线粒体是耗氧的基本位点和活性氧的主要来源,在线粒体中,谷胱甘肽在维持氧化还原环境,避免氧化损伤导致功能失调和细胞死亡方面起着关键作用。
  26. The effect of phenanthroline iron on the catalytic activity is relatively small, and the redox reversibility and equilibrium potential range are in line with the basic requirements of the fuel cell redox shuttle, has and thus it is a promising fuel cell redox shuttle.
    菲啰啉铁对催化剂催化活性的影响相对较小,其氧化还原可逆性和电势平衡电势范围基本符合燃料电池用氧化还原电对的基本要求,具备成为燃料电池氧化还原穿梭电对的潜力。
  27. LDH activity in medium, cells Na+-K+-ATPase activity, cell redox state, cell antioxidant system-associated indicators and mRNA expression of antioxidant enzymes were measured.
    考察指标包括细胞培养液LDH活性、细胞Na+-K+-ATPase活性、细胞氧化还原状态以及抗氧化系统相关指标,并进一步检测抗氧化酶的mRNA表达水平。
  28. The redox status of cell participates in the regulation of division, differentiation, growth and programmed cell death.
    氧化还原态参与细胞分裂、分化、生长和程序性死亡的调控。