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1)  anodic bubble
阳极气泡
1.
The current and potential response induced by anodic bubbles has been studied.
测量了恒电流和恒电位作用下阳极气泡引起的电位、电流变化 ,结果表明 :电流、电位的波动与极化电位或电流具有很好的线性关系 ;恒电位作用下 ,每个波动对应的电量近似相等 ,而恒电流作用下 ,气泡频率与极化电流之间有很好的正比关系。
2.
The present paper describes the anodic bubble formation process, increase of cell voltage, electrolyte flow and the anodic effect caused by bubbles.
综述了铝电解阳极气泡的形成过程,气泡引起的槽电压增加、电解质流动和阳极效应等,以及各种因素对气泡形成的影响,提出用计算机模拟气泡的形成过程。
2)  anode gas
阳极气体
1.
,the flow induced by electromagnetic force,the flow driven by anode gas,and the flow driven simultaneously by the above two forces,respectively.
通过适当的简化,建立了铝电解槽内电解质运动的物理模型和数学模型,以商业CFD软件为平台,分别对电磁力作用、阳极气体作用以及电磁力和阳极气体共同作用3种情况下的电解质运动进行了数值模拟。
2.
The results reveal that with the help of the grooves,anode gas discharging is facilitated,residence time of bubbles in the interpolar gap(or ACD) and the bubbles coverage of the anode bottom can be reduced,which greatly contributes to the decrease of the voltage drop in ACD and anode effects,so the energy consumption of the aluminum pro.
对预焙铝电解槽阳极底部开排气沟时周围电解质流场进行计算,发现部分阳极气体可以通过排气沟向外排放,减少气泡在阳极底部停留时间和阳极底掌气泡覆盖率,从而有利于降低极间电阻压降和阳极效应系数,减少电解能耗;另一方面气体带动电解质进入排气沟,然后进入电解槽侧部通道,扩大了电解质循环通道,促进了阳极周围电解质流动和槽内的传质传热,有利于保持电解正常进行,相比之下排气沟为通沟时较非通沟更有利于保持电解质流动稳定;同时由于排气沟促进了阳极气体排放,使铝液与阳极气体发生“二次反应”(即电解还原的铝卷入电解质中被阳极气体重新氧化)的机会减少,有利于提高铝电解电流效率。
3)  anode atmosphere
阳极气氛
1.
Oxidation of SUS430 alloy interconnector in simulated SOFC anode atmosphere;
SUS430合金连接体在模拟SOFC阳极气氛下的氧化
4)  anodic gas
阳极气体<冶>
5)  gas diffusion anode
气体扩散阳极
1.
Preparation of gas diffusion anode by thermo-compression process
热压法制备气体扩散阳极
2.
The energy-saving and consumption-reducing theory of gas diffusion anode(GDA) for zinc hydrometallurgy is introduced.
介绍了气体扩散阳极(氢扩散阳极)在湿法炼锌上的节能降耗原理,用气体扩散阳极代替普通阳极将降低50%左右的能耗;与此同时,介绍了氢扩散阳极的结构并对它在冶金上的应用进行了展望。
3.
The saving-energy and reducing-consume principle for gas diffusion anode(GDA) used in hydrometallurgy is described.
介绍气体扩散阳极(氢扩散阳极)在湿法冶金上的节能降耗原理。
6)  gas-fired anode-baking furnace
燃气阳极焙烧炉
1.
In this paper,the combustion processes in a gas-fired anode-baking furnace and an oil-fired anode-baking furnace are simulated and analyzed by means of the principle of numerical simulation and relative CFD software.
针对燃气的阳极焙烧炉和燃油的阳极焙烧炉炉内燃烧情况,本文采用数值模拟的方法和CFD软件分别进行了计算与分析,并对比了两种燃料对阳极焙烧炉运行情况的影响,认为燃气阳极焙烧炉的综合性能优于燃油阳极焙烧炉。
补充资料:银阳极泥提银(见铜阳极泥提金银)


银阳极泥提银(见铜阳极泥提金银)
extraction of silver from silver anode slime

y In yongJ,nl tlyln银阳极泥提银(extraetion of Silve:fr()nl 511一ver anode slime)见铜阳极泥提金银
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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