- 更多网络例句与燃料电池相关的网络例句 [注:此内容来源于网络,仅供参考]
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The exchange film can be used in micro direct carbinol fuel battery with high stability good for reducing battery sizes to improve utility of micro liquid fuel materials.
使得用本发明进行改性处理的质子交换膜可用于微型直接甲醇燃料电池,可使微型甲醇燃料电池稳定性得到提高,有利于单体电池尺寸的进一步减小,促进微型液体进料直接甲醇燃料电池的实用化。
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Gas diffusion layer is one of the most important components in proton exchange membrane fuel cell. The contact resistance between current collector and gas diffusion layer is an important part of the total resistance of fuel cell and is also a key factor led to the power loss of PEMFC.
气体扩散层是质子交换膜燃料电池的重要组件,其与极板之间的接触电阻是燃料电池内阻的重要组成部分,也是导致燃料电池功率损失的重要因素。
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Andrew Neilson of Ceramic Fuel Cells, which has deals with several European utilities to develop domestic fuel cells and has sold a few two-kilowatt units, points out that it is especially difficult to shrink all of the components needed to feed air and fuel to the cells and to extract energy from them.
陶瓷燃料电池有限公司与许多欧洲公用服务公司合作发展家用燃料电池,并已售出一些2千瓦的成品。来自该公司的安德鲁尼尔森指出压缩向电池输送空气和燃料并通过他们发电的必备设备极其困难。
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It establishes the uniform, singular and two kinds of normal distributions models of diffusion layer statistical distribution, the result shows that the more singular the statistical distribution of the cathode gas diffusion layer porosity is, the better the cell performance is, and the more uniform, the worse the cell performance is.
最后,从热力学的角度分析了燃料电池过程的能量转化形式,反应的焓变主要转变成电能和热能两种能量形式;归纳了燃料电池电化学的一些基本理论模型及简单的推导过程;描述了燃料电池效率的一些不同的定义以及对采用热电联供的方式提高燃料电池能量利用效率的分析。
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Dynamic response of direct methanol fuel cell is very important for the transportable applications.
直接甲醇燃料电池用作移动电源时,电池的动态响应特性特别重要。该文作者利用自行设计的直接甲醇燃料电池测试系统对一有效面积为 50cm2 的直接甲醇单体燃料电池的动态性能进行了实验研究。
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The results show that when the cathode humidified temperature increase, the humidification of membrane and fuel cell performance improved at lower current density, while the saturation in diffusion layer increase and the performance decreases at higher current density. Humidification of membrane and fuel cell performance improved when the anode humidified temperature increase, the saturation in diffusion layer decrease and fuel cell performance improved when the fuel cell working temperature increase, the resistance of diffusion layer decrease and the performance improved when the porosity largen. At last, the simulation results are compared with the experimental results and they are basically the same.
结果表明随阴极加湿温度的提高,在低电流密度运行时膜的润湿条件改善,燃料电池性能提高,在高电流密度运行时扩散层中液态饱和度增加,燃料电池性能下降;随阳极加湿温度的提高,膜的润湿条件改善,燃料电池性能提高;随燃料电池运行温度的提高,扩散层中液态饱和度下降,燃料电池性能提高;随气体扩散层孔隙率增加,气体扩散层阻力减小,燃料电池性能提高。
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In this paper, the general situation of the overseas applications of micro fuel cells is introduced in detail. The feasibility of micro fuel cells fabrication using MEMS technology and characteristics of different types of MEMS-based micro fuel cells are briefly discussed. Combining with the critical components including the monopolar plate and membrane electrode assembly, the latest research progress of MEMS-based micro fuel cells are also summarized systematically. Finally, the existing problems and development trend are analyzed, and the urgent demand for developing MEMS-based micro fuel cells in our country is demonstrated.
本文详细介绍了国外微型燃料电池的应用概况,简要论述了将MEMS技术应用于微型燃料电池制作的可行性以及MEMS微型燃料电池的类型特点,并结合关键组件极板和膜电极,系统地总结了近几年来MEMS微型燃料电池的研究进展和成果,最后分析了目前存在的问题和发展趋势以及我国大力发展MEMS微型燃料电池的迫切需求。
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In this paper, the general situation of the overseas applications of micro fuel cells is introduced in detail. The feasibility of micro fuel cells fabrication using MEMS technology and characteristics of different types of MEMS-based micro fuel cells are briefly discussed. Combining with the critical components including the monopolar plate and membrane electrode assembly, the latest research progress of MEMS-based micro fuel cells are also summarized systematically. Finally, the existing problems and development trend are analyzed, and the urgent demand for developing MEMS-based micro fuel cells in our country is demonstrated. Contents
本文详细介绍了国外微型燃料电池的应用概况,简要论述了将MEMS技术应用于微型燃料电池制作的可行性以及MEMS微型燃料电池的类型特点,并结合关键组件极板和膜电极,系统地总结了近几年来MEMS微型燃料电池的研究进展和成果,最后分析了目前存在的问题和发展趋势以及我国大力发展MEMS微型燃料电池的迫切需求。
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The method for starting the high temperature polymer electrolyte membrane fuel cell stack preheats the stack through a heating block coupled to the stack, senses the temperature of the stack, compares the sensed temperature of the stack with a reference temperature, and supplies off-gas from the fuel reformer to the stack according to the results of comparison.
该启动高温聚合物电解质膜燃料电池堆的方法通过与电池堆相连的加热块预热电池堆,检测电池堆的温度,将检测到的电池堆的温度与参考温度进行比较,并根据比较结果向电池堆提供来自燃料重整器的废气。
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They are particularly very promising energy storage systems to replace traditional secondary batteries for space application since URFCs have distinctive advantages over secondary batteries in that they are long-term energy storage systems with extreme high specific energy and without permanent losses by self discharge and capacity limit.
一体式可再生燃料电池是可再生燃料电池中最先进的一种,它是在同一组件上既可以实现燃料电池功能又可以实现水电解功能的储能和供电系统,具有能量密度高、使用寿命长、使用中无自放电且无放电深度及电池容量的限制等优点,是极有希望在空间、军事及可移动电源领域替代传统二次电池的储能系统。
- 更多网络解释与燃料电池相关的网络解释 [注:此内容来源于网络,仅供参考]
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cell; fossil fuel:化石燃料电池
滤膜电解池 cell; filter diaphragm | 化石燃料电池 cell; fossil fuel | 燃料电池 cell; fuel
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fossil fuel cell:化石燃料电池
音叉 fork; tuning | 化石燃料电池 fossil fuel cell | 富可摆 Foucault pendulum
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fuel cell:燃料电池
"燃料电池"(fuel cell)技术的希望"燃料电池"是由具渗透性的膜构成,在膜的一侧供给氢,另一侧供给氧. 氢原子含有一个质子及一个电子,质子被氧"吸引"到膜的另一边以形成水分子,电子仍留在原地,造成带正电的质子及带负电的电子各在膜的一侧,
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fuel cell:燃料电池=>燃料電池
3燃料电池与可再生燃料电池 燃料电池(Fuel Cell)发电是一种新型发电技术,是不经过燃烧直接以电化学反应把燃料的化学能转变为电能的高效发电装置. 以氢为燃料时,其产物仅是水,是氢能转变为电能的最理想的装置. 燃料电池被认为是未来的发电技术之一,
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fuel cell:燃料电池燃料舱
fuel cell 燃料电池 | fuel cell 燃料电池燃料舱 | fuel characteristics 燃油特性
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fuel cell:[维和]燃料小组; 燃料电池
Bottled Water Cell;瓶装水小组;; | Fuel Cell;[维和]燃料小组; 燃料电池;; | director category;[联合国]主任职类;;
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photochemically regenerative fuel cell:光化学再生燃料电池
photochemical 光化学的 | photochemically regenerative fuel cell 光化学再生燃料电池 | photochemistry 光化学
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natural gas-oxygen fuel cell:天然气氧燃料电池
natural gas 天然气 | natural gas-oxygen fuel cell 天然气氧燃料电池 | natural gasoline 天然汽油
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Fuel cells:燃料电池
根据ABI Research星期三发布的报告指出,燃料电池(Fuel cells)在2012年,将成为全球笔记型电脑15%的供电来源. 日本和美国厂商预计在2005年推出2000份试用产品. ABI的报告指出,厂商必须证明充电和替换电池组的成本不会太贵,
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hydrogen-oxygen fuel cell:氢氧燃料电池
此类电池如氢氧燃料电池 ( hydrogen oxygen fuel cell ) 等. 此类电池尚在发展中,且受限于其较大的体积,主要用在发电机组上或最为备用能源. 近来由于技术的提昇,有逐渐小型化的趋势,并运用于电动车辆等领域. 此外,若以电池中的电解液的酸硷度来做区分,