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cathode liquor相关的网络例句

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与 cathode liquor 相关的网络例句 [注:此内容来源于网络,仅供参考]

The best combination of anode and cathode flow channel flow was anode flow channel cross-finger, the flow field composed of the cathode flow channel cross-refers was the best combination of flow field.

阳极流道与阴极流道的最佳组合为阳极交指流道、阴极交指流道组成的流场为最佳组合流场。

On the other hand, the external ACMF increased the quantity and directionality of carbon particles, so the quantity and crystallization degree of MWCNTs in cathode depositions. When ACMF and catalyst were adopted at the same time, new cylinder-shaped structures were found in the cathode depositions.

对液体中电弧施加纵向恒定磁场,可以使向阴极表面运动的碳粒子数量增多、定向性增强,从而大大提高阴极沉积物中多壁碳纳米管的数量和晶化程度。

The content of impregnated Ba, Ca aluminates in the bodies can meet the requirements of the conventional impregnated cathode. Emission experiment results show that the space charge limited current density of this kind of cathode has reached more than 30A/cm^2 at 850℃.

发射试验结果表明,这种阴极在850℃的工作温度下空间电荷限制的电流密度超过30A/平方公分,在超过2000h的寿命实验过程中发射仍持续上升,因而在要求高电流密度和一定寿命的微波电子管中具有光明的应用前景。

From the above seems to show the failure, the author estimated that the fault is mostly the work of the subsidiary CRT circuit damage occurred because the cathode-ray tube voltage of the focus is very prone to failure similar to the above phenomenon, the phenomenon that gave rise to such failure is due mainly to display work over time, then the CRT focus very near the jack attached to a lot of dust very easily, which encountered wet dust easily lead to the air tubes of focus very significantly decrease the performance of socket contacts, then a cathode-ray tube focus to the natural voltage decline will be affected down, so that we could monitor the performance will be prone to poor focus, image display is a relatively vague.

从上面的显示故障现象来看,笔者估计该故障现象多半是显像管附属的工作电路发生了损坏,因为显像管的聚焦极电压十分容易发生类似上面的故障现象,引起这种故障现象的原因主要是显示器工作时间一长,那么显像管的聚焦极插孔附近很容易附着不少灰尘,这些灰尘遇到潮湿的空气后容易导致显像管的聚焦极插孔接触性能大大下降,那么一来显像管的聚焦极电压自然就会受到影响而下降下来,这样的话显示器也就容易出现聚焦性能不好、图象显示比较模糊的现象了。

Silver vanadium oxide cathode material has been widely used in implantable cardiac defibrillator power system,and is a cathode material of high value in research and development.

钒酸银正极材料目前已广泛应用于可植入式心脏复律除颤器电源中,是一种极具研究和开发价值的电极材料。

The paper involved two parts: Part 1: A two-chambered microbial fuel cell was constructed with high-concentration sodium acetate as fuel in the anode. The influence of different electron acceptors in the cathode, external resistance value, pH value and concentration of sodium acetate on electricity generation in MFC was investigated. The result showed that the maximum power density of 294.72 mW/m2 and the coulombic efficiency of 25.87% was achieved at sodium acetate concentration of 6.46 g/L, pH 7.0, external resistance 500Ωin the anode and when using potassium permanganate as electron acceptor in the cathode.

全文分为两个部分:第一部分:以乙酸钠为阳极原料构建双室微生物燃料电池,研究不同阴极受体、外接电阻、乙酸钠浓度和pH等因素对电池产电性能的影响,研究结果表明:在500mL的阴阳极反应体系中,选用乙酸钠作为阳极底物,质量浓度为6.46 g/L, pH 7.0,接入500Ω外电阻,阴极电子受体选择高锰酸钾的情况下,微生物燃料电池产电性能最好,最大电功率密度达到294.72 mW/m2,库伦效率能达到25.87%。

A mediator-less two-chambered microbial fuel cell was constructed with sodium acetate as substrate in the anode and carbon felt as cathode. The effects of different electron acceptors in the cathode, external resistances value, concentration of sodium acetate and different inoculation ways on electricity generation by the MFC were investigated.

以乙酸钠为阳极底物,碳毡材料为阴阳电极,构建了无介体双室微生物燃料电池(Microbial fuel cell, MFC),研究不同阴极受体、外接电阻、乙酸钠浓度和不同接种方式等因素对电池产电性能的影响。

At the early stage of MCFC operation, the porous Ni-based cathode subjected to the load of cell stack may deteriorate in the process of its transformation to the working lithiated NiO cathode, which will result in the potential damage to the cell performance and lifetime.

熔融碳酸盐燃料电池在开始运行初期,承受一定负荷的多孔镍在转化为多孔氧化镍阴极的过程中往往会受到较严重的形变破坏,对电池的使用性能和寿命造成不良影响。

A Monte Carlo model was used to simulate the spatial and energy distribution of the emission electrons from the micro hollow cathode discharge, based on these results, spatial distribution of the electron in the micro hollow cathode sustained glow discharge was also modeled.

利用蒙特卡洛方法模拟了微空心阴极放电出射电子的空间以及能量分布,并在此基础上模拟了微空心阴极放电自持的辉光放电中电子的空间分布。

Also the discharge current and gas pressure are both high. The study of the cathode properties such as its material, reaction with gases in a PCVD ambient, temperature, surface state, etc, comes to the conclusions which are much different with that of the cold cathode glow discharge.

由此导致了对于阴极材料的选择、阴极在PCVD气氛中的反应、阴极的工作温度、表面状态等涉及到阴极性质的研究工作,均得到有别于常规冷阴极辉光放电的具有热阴极特征的结论。

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