電化學反應 的英文怎麼說

中文拼音 [diànhuàxuéfǎnyīng]
電化學反應 英文
electrochemical reaction
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  1. A slight dew depositing on terminals may cause electro - chemical reaction resulting in terminal open circuit

    極端子上的結露會因電化學反應導致開路。
  2. It was shown that resistance of pore solution ( r ) and resistance of electrochemistry reaction ( ret ) increased with the prolongation of hydration ages but r decreased with the augment of coal stone. can indirectly reflect the hydration degree of cement pastes

    研究結果表明,孔溶液阻隨著水齡期的延長而增大,但隨著煤矸石摻量的增大而減小;電化學反應阻隨著水齡期的延長而增大,且可以間接地映水泥漿體的水程度;分形維數值隨著水齡期的延長而減小,但隨著煤矸石摻量的增大而增大。
  3. In this paper all kinds of fuel cell, the current research situation and working principle of proton exchange membrane fuel cell ( pemfc ) are outlined. mathematical models in relation to electrochemistry reaction and transfer process in direct methanol fuel cell ( dmfc ) are compared and analyzed. latest progress of membrane materials and instrument analysis technique in dmfc has also been described

    介紹了燃料池的分類以及質子交換膜燃料池( pemfc )的工作原理和研究現狀,並對直接甲醇燃料池( dmfc )中有關電化學反應及傳遞過程的數模型進行了比較和分析,描述了適用於dmfc的膜材料以及儀器分析技術的最新進展,認為直接甲醇燃料池是目前較理想的燃料池,有著廣闊的發展前景。
  4. Oxygen diffusion transport and electrochemical reaction in the oxygen cathode of direct methanol fuel cell ( dmfc ) have been expressed with the tffa model. model calculation has been carried out to investigate the effects of structural parameters of the dmfc cathode on the electrode performance, which is respectively represented by the curve of cathode overpotential versus current density. much attention has been paid to parameters including the porosity of the reaction layer, the thickness of the thin - film on the flooded - agglomerate, the radius of the flooded - agglomerate, the volume fraction of the flooded - agglomerates in the reaction layer

    本文首先運用tffa模型描述直接甲醇燃料池( dmfc )陰極氧氣的傳遞和電化學反應過程,研究了過位-流密度曲線受陰極結構參數變的影響程度,其中著重考慮了以下幾個參數:催層的孔隙率,浸漬聚集體薄膜的厚度,浸漬聚集體的半徑,浸漬聚集體在催層中的體積分數。
  5. The other was to research new li - al solid solution alloy material and use it as anode in lithium battery. by the trace alloy component, aluminum, doping in lithium metal, it was hoped to improve the sei film stability of lithium / electrolyte interface and consequentially enhance the performances of lithium anode. meanwhile, different form the previously studied lial alloy that had very high content of aluminum, such alloy should not decrease the mass specific energy and electrochemical potential of lithium electrode

    方法二:研究新型鋰鋁固溶體合金材料並將其用於鋰二次池中,通過微量合金成份鋁的摻雜提高鋰極/解質界面sei膜的穩定性,進而提高鋰負極性能;而該合金不會像以往高鋁含量的鋰鋁合金那樣降低鋰極的質量比能量和電化學反應勢。
  6. Polymer three - dimension packed bed electrochemical reactor potential distribution

    復合型三維極固定床電化學反應勢分佈
  7. Too frequently, however, we think of these materials solely in terms of their electronic or optical properties, preparation and electrochemical polymerization process. we need to remind ourselves that other, nonelectronic properties of these materials can be equally important. for example, certain mechanical properties and fatigue failure mechanism related to their applications

    不過,到目前為止,人們主要關心的是材料的物理和特性、制備方法、電化學反應控制、聚合鏈上多種相互作用的分子形成過程和分子聚合特性等,而對與實際用密切相關的材料力特性和疲勞損傷機理等力問題的研究則相當匱乏。
  8. Model of electrochemical reaction charge transferring on surface of mineral grain and its flotation significance

    顆粒表面電化學反應荷傳遞模型及其浮選意義
  9. The optimum electrochemical temperature is near room temperature

    因此,適宜的電化學反應盈夔為室溫附近。
  10. The charging and discharging electrochemistry mechanism of the storage battery is analyzed. the equipment of measuring capacity of storage batteries is developed

    分析了蓄池充、放過程中電化學反應機理,研製了一套蓄池充、放容量測試系統。
  11. But the comprehensive properties were improved remarkably. with the addition of carbon nanotubes, the polarization of charging process decreased, the plateau of discharge became flatter and the migration of potential of peaks value of cyclic voltemmograms reduced. for the other hand, the exchange current increased, ohm resistance and electrochemical reaction resistance of the electrodes decreased, the diffusion resistance of hydrogen and the resistance of adsorption decreased, too

    摻入碳納米管對儲氫合金極的容量影響較小,但其性能卻有較大的改善,主要體現在:充的極減小,放平臺更加平穩、循環伏安曲線的峰值位隨掃描速度增大的遷移量減小,交換流密度增大,極的歐姆阻、電化學反應、擴散阻和吸附阻均減小。
  12. After finished the cyclic voltammetry experiments, the results showed that iron steel grid can act as good current collector in the aqueous electrolyte. while the scan rate was fall in the range of 0. 5 - 4. 0mv / s, electrochemical reaction of the lithium insertion / extraction in the solid phase was kinetically limited by the diffusion of lithium ions. after 40 cycles in aqueous electrolyte the discharge capacities of sample of s13 reached 77mah / g, and showed good cycle performance

    在水溶液中不銹鋼網可以作為極的集流體,在0 . 5 - 4 . 0mv / s的掃描速度范圍內,鋰離子在尖晶石鋰錳氧物的嵌入和脫嵌的電化學反應在動力上是受鋰離子在固相中的擴散所控制,充放實驗顯示樣品s13在水解液中經過40個循環后達到77mah / g的放容量,具有很好的循環穩定性。
  13. It was found that in the simulated physiological solution, the hydrogen bindings between some amido groups in the mp - 11 molecules are decomposed and the mp - 11 dimers become monomers. it induces the increase in the contents of the a - helical and ( 3 - turn conformation, the decrease in the content of the random coil conformation of mp - 11 as well as the increase in the exposure extent of the heme group. therefore, the reversibility of the electrochemical reaction and the electrocatalytic activity of mp - 11 for h2o2 reduction increase comparing the situation in the aqueous solution

    發現在模擬生理條件下, mp - 11分子的多肽鏈上一些酰氨基的氫鍵發生了解離,使部分雙聚的mp - 11分子變成單體分子, mp - 11分子二級結構中-螺旋和-轉角結構的含量增加,無規捲曲結構含量降低,導致了mp - 11分子中血紅素的暴露程度變大,因此mp - 11電化學反應的可逆性和對h _ 2o _ 2還原的活性比在水溶液中有所增加。
  14. The experimental results of two - phase flow and electric performance reveal the two - phase flow characteristics, the rule of bubble growing and breaking away and the effect of the gravity factor on cell performance. the work provided dependable scientific data and guidance for the application of the proton exchange membrane fuel cell in the aerospace realm. the main work and results of the study are presented as follows : 1

    實驗得到了微重力條件下直接甲醇燃料池內部伴有電化學反應的氣液兩相流動圖像和相性能等實驗數據,揭示出了伴有的氣液兩相流特點、氣泡生長與脫離規律以及重力因素對燃料池性能的影響規律,為質子交換膜燃料池在航天領域的用提供了可靠的科數據和設計與運控指導。
  15. The electrochemical impedance spectroscopy of anodic reaction shows that the formation of black nickel was mainly controlled by electrochemical reaction at low anodic potential, and is mainly controlled by electrochemical reaction and diffusion at high anodic potental. with the increasing of anodic potential., the formation of black nickel is still controlled by electrochemical re

    陽極阻抗譜表明,氧位較低時ni ( oh ) :氧生成黑鎳的過程主要受電化學反應所控制,位較高時,黑鎳形成過程主要受電化學反應及擴散混合控制,位進一步增加,析氮占據主導優勢,陽極氧過程仍主要受電化學反應及擴散混合控制。
  16. The key part of proton exchange membrane fuel cells ( pemfc ) is membrane electrode assembly ( mea ), where mass transfer processes and electrochemical reactions proceed simultaneously. the accurate, systematic and in - deepth acquaintance with mea has not been obtained yet. so a comprehensive study about mea is completely necessary

    質子交換膜燃料池( pemfc )的膜極中包含多種傳輸過程,且傳輸過程與電化學反應過程在相互交錯的區域內進行,目前人們對膜極的結構、傳輸過程和極的微觀性質還缺乏準確、系統和深層次的認識。
  17. As a new method of polymerization, electroless polymerization was introduced to form polyaniline film on substrate of any shape. in electroless polymerization, aniline molecules were oxidized to form pn film by soluble oxygen on the catalytic surface of pt or pd substrate without the supply of electric current. similar to the mechanism of electroless plating, electroless polymerization of aniline involves local and spontaneous electrochemical reactions on only substrate

    提出了一種新的聚合方法無聚合。在沒有外流的情況下,溶液中的苯胺分子在具有催活性的鉑或鈀基底表面上被溶解氧氧為聚苯胺膜。與鍍的原理類似,苯胺的無聚合過程包含陰極半和陽極半兩個電化學反應
  18. In the cathodic reduction technique, the oxidation efficiency for o - chlorophenol was enhance, with rational design of electrochemical reactor, compared with that of direct anodic oxidation

    在陰極還原工藝中,通過合理的電化學反應器設計使得鄰氯苯酚的氧效率較直接陽極氧有所提高。
  19. The effect of ultrasound on voltammetric behavior and surface of electrode in different electrochemical system

    功率超聲對電化學反應極表面的影響研究
  20. Conjugated electrochemical reactions

    共軛電化學反應
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