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anodic相关的网络例句

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与 anodic 相关的网络例句 [注:此内容来源于网络,仅供参考]

In the present paper, the recent advances in anodic synthesis of Bi-,Pb-,Tl- and Cu-based complex oxides from molten salt are reviewed, and the empirical role of anodic electrosynthesis is discussed.

本文介绍了近年来在熔盐中在阳极上合成 Bi 基、 Pb 基、 Tl 基和 Cu 基复杂氧化物的进展,探讨了阳极电合成的经验规律。

The anodic behavior of electrolytic nickel anode in nickel sulfamate plating Solution was investigated,using anodic polarization curves,metallographic observation of cross-sections of nickel deposits,Hull Cell tests with solutions with and without Cl-,F-,bending tests with five solutions of different compositions,and sulfur content analysis in nickel deposit with mass spectrometry.

采用极化曲线、金相观察、赫尔槽电镀试验、弯曲试验和质谱分析方法,研究了氨基磺酸盐镀镍的阳极行为,证明了当在氨基磺酸盐镀液中使用电解镍阳极时,其活化峰值电流和镀液组成有很大的相关性,当镀液中不含F-和Cl-时其阳极活化峰值电流小,阳极处于极化状态,或相当大面积处于极化状态,使氨基磺酸根在极化的阳极表面氧化,从而使含硫化合物夹附于镀镍层,形成镀层内应力,并使镀层成为层状结构,并出现半光亮的外观。

The effects of technologic parameters, including concen- tration and temperature of ADP solution and galvanizing time on rising time of anodic oxide films are discussed. 2. After dipped in amino trimethylene phosphonic acid solution, anodic oxide films are annealed in pipe stove.

将化成箔在氨基三甲叉膦酸溶液中浸渍,取出烘干后再进行热处理,研究了 ATMP 溶液浓度、浸渍温度和热处理温度对氧化膜升压时间、比容、耐电压的影响,找到其最佳耐水合处理工艺;采用FT-IR对水合作用后的 ATMP 处理氧化膜和未经耐水合处理氧化膜进行了分析。

The results show that the anodic reaction is rapid and the current increases quickly and the specimen's surface is bestrewed with arc discharge when the anodic voltage exceeds 170 V.

结果表明:氧化过程存在一个明显的临界电压值(170 V),在电压大于170 V阳极氧化反应剧烈、氧化电流增大、试样表面出现弧光放电。

The inhibitor can desorb from zinc surface at high anodic polarization region and adsorb on to zinc surface quickly as switching off the anodic polarization current.

复合型代汞缓蚀剂的性能测试复合型缓蚀剂对锌在碱性锌酸盐溶液中的缓蚀作用与4%的汞相当。

We put zinc sulphide mine into different sulphate system and analyzed polarization curve about anodic oxidation.we found that the mine was oxidized effectively and the rapid oxidation happened when we adopted the zinc sulphide ore suspension electrolyte which contained ZnSO_4,(NH_4)_2SO_4 and H_2SO_4. This system was suffice to product metal zinc industrially. The appropriate suspension electrolyte composition consisted of zinc 90~130g/l,(NH_4)_2SO_430~50g/l, H_2SO_430~50g/l, suspension electrolysis temperature 50℃, anodic oxidation potentiometer 0.6~0.8V.

研究了硫化锌矿在不同的硫酸盐体系中的溶解,通过阳极氧化极化曲线进行分析,得出当以硫酸锌、硫酸铵和硫酸作为硫化锌矿悬浮电解液时,矿物能够有效地被氧化,氧化速度最快,能满足工业上生产金属锌的要求,并且合适的悬浮电解液组成为:锌90~130g/l,硫酸铵30~50g/l,硫酸30~50g/l,悬浮电解温度40~50℃,阳极氧化电位0.6~0.8V。

After the research of anodic oxidation slag, we got the composition of the suspension electrolyte of zinc sulphate solution. 2 The results of electrode kinetic of anodic oxidation showed that the electron transfer during the process of electrochemical oxidation was 1, and the electrochemical mechanism was: ZnS=Zn~(2+)+S~-+e Zn~(2+)+2S~-=ZnS + S~0 3 The flow sheet which can produce zinc according to suspension electrolysis principle in industry was put forward. 4 Elemental sulfur in oxidizing slag was recovered by distillation.

本文的创新点是: 1提出了以硫酸锌溶液为基础的悬浮电解液体系;通过对阳极氧化渣进行系统的分析研究,得出了硫化锌矿物的悬浮电解的电解液组成; 2通过阳极氧化电极过程动力学分析得到,电化学氧化过程中电子转移数为1,电化学机理为: ZnS=Zn~(2+)+S~-+e Zn~(2+)+2S~-=ZnS+S~0 3提出了工业上利用悬浮电解原理生产金属锌的工艺流程; 4对氧化渣中的元素硫采用蒸馏法原理进行回收。

The result shows that to improve the anodic current efficiency, we should decrease the reactions in the anodic solution between dissolving chlorine and transferring sodium hydrate and reduce a series of the reactions between the anode and the cathode.

本论文首先阐述了氯碱工业生产技术发展历史,并介绍离子膜法电解产生、发展过程以及其发展方向,考察了影响电流效率的各种因素,并提出提高电流效率的措施,得出要提高阳极电流效率,就要尽量减少在阳极液中产生的溶解氯与迁移烧碱之间发生的副反应,减少阳极上氧的析出量;要提高碱的电流效率,就要尽量减少氢氧根离子向阳极室的反渗。

The EDX and EPMA analyses on crosssections of anodic films demonstrate that the anodic films on both aluminum alloys contain Al, O and S elements, with evenly distribution across the films.

此外在5056铝合金上的氧化膜中发现存在均匀分布的Mg元素,由此可见在氧化膜的生长过程中,Mg离子同Al离子一样,也在电场的作用下向外迁移。

In this situation,the electrode potential at equilibrium(i.e,when the rate of the anodic reaction equals the rate of the cathodic reaction) will be shifted from the standard electrode potential and can be defined by the Nernst equation:(5)where E0 is the standard electrode potnetial ,RT/F is a constant,n is the number of electrons transferred ,and a is the activity of the anodic and cathodic reactants.

在这个情况,电极电位在平衡(即,当正极反应的率合计负极反应的率)从标准电极电位将被转移,并且可以由能斯脱等式定义:(5) E0是标准电极potnetial的地方, RT/F是常数, n是转移的电子的数量,并且a是正极和负极反应剂的活动。

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