首页> 外文会议>International Conference on Advances in Energy Research >Study of Carbon Materials and Effect of Its Ball Milling, on Capacitance of Supercapacitor
【24h】

Study of Carbon Materials and Effect of Its Ball Milling, on Capacitance of Supercapacitor

机译:超级电容器电容研究碳材料及其球磨的影响

获取原文

摘要

The various forms of energy are available in nature, however the electrical energy is the most convenient form of energy for any application. Due to this reason, day by day the demand of electrical energy is rapidly growing in this decade. There is always mismatch in time zone between availability of energy especially from renewable energy sources and demand. Thus, the storage of electrical energy is now becoming important. However, amount of electrical energy which can be stored is again a critical issue in many renewable energy systems. Supercapacitor can be a new technology for the storage of electrical energy. Supercapacitors are currently a prominent area of research for energy storage devices as they have high power density, long cycling time, and short charging time. Due to a short charging time feature of supercapacitor, in future it can have application in hybrid cars. Supercapacitor is similar to a regular capacitor in operation, however it offers a very high capacitance in a small package for achieving the requirement of power supplies. Capacitance, internal resistance, self discharge, ageing, pulse current, size, shape are some of the parameters in selection of supercapacitor in various applications. Capacitance value of capacitor is very important in energy storage system as amount of energy stored by capacitor is directly proportional to its capacitance value. The capacitance value of supercapacitor depends on types of carbon material and method of construction of supercapacitor. Various kinds of activated carbon materials are available with different pore size, pore density and specific surface area, are found more suitable to get higher values of capacitor. In this research work, the properties of various carbons are studied to select appropriate carbon material to construct the supercapacitor. Supercapacitor along with fuel cell can address many issues related to effective electrical energy storage and it can have number of applications in future. This research work also presents the effect of ball milling of an electrode material on the value of capacitance of an aqueous metal oxide based supercapacitor.
机译:各种形式的能量是自然的,然而电能是任何应用最方便的能量形式。由于这个原因,日复一日,电能的需求在这十年中迅速增长。在能量的可用性之间尤其来自可再生能源和需求之间总是存在不匹配的时区。因此,电能存储现在是重要的。然而,可以存储的电能量在许多可再生能源系统中再次成为一个关键问题。超级电容器可以是存储电能的新技术。 SuperCapacitors目前是能量存储设备的突出研究领域,因为它们具有高功率密度,长循环时间和短充电时间。由于超级电容器的短收费时间特征,将来,它可以在混合动力汽车中应用。超级电容器类似于常规电容器,但它在小包装中提供了非常高的电容,以实现电源的要求。电容,内阻,自放电,老化,脉冲电流,尺寸,形状是各种应用中选择超级电容器中的一些参数。电容器的电容值在能量存储系统中非常重要,因为电容器存储的能量与其电容值成正比。超级电容器的电容值取决于碳材料的类型和超级电容器的构建方法。各种活性炭材料可提供不同的孔径,孔密度和比表面积,更适合获得更高的电容值。在这项研究工作中,研究了各种碳的性质,选择适当的碳材料以构建超级电容器。超级电容器以及燃料电池可以解决与有效电能存储有关的许多问题,并且可以将来拥有应用数量。该研究工作还呈现了电极材料的球磨对基于金属氧化物水性氧化物的超级电容器的电容值的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号