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1.
Abstract: This paper describes the practice in technical condition c ontrol and electrolyte purification for high-nickel copper anode electrolysis.
文摘:介绍了高镍铜阳极板电解的技术条件控制和电解液净化的实践。
2.
Nickel anode sheets
GB/T2057-1989镍阳极板
3.
Study on the Tough Cathode Surface;
高镍铜电解精炼阴极表面质量改善研究
4.
Study on Improvement Properties of Lead, Nickel, Aluminum, Zinc and Copper Electrodes;
铅、镍、铝、锌和铜电极改性的研究
5.
Ni/NiO and Cu/Cu_2O Nanoparticles Modified Glassy Carbon Electrode for the Determination of Hydrogen Peroxide
镍-氧化镍/铜-氧化亚铜复合纳米粒子修饰玻碳电极测定过氧化氢
6.
Fore-control and Fore-elimination of copper in Its Anode Mud
铜阳极泥中铜的预选控制与脱除
7.
manganese copper
锰铜镍合金, 锰铜
8.
Higher purity copper cathode-Determination of nickel content-Zeeman effect electrothermal atomic absorption spectrometric method
GB/T13293.8-1991高纯阴极铜化学分析方法塞曼效应电热原子吸收光谱法测定镍量
9.
Low Ni High Mn Cu-Al Alloy Bush for Hot Plate Mill
低镍高锰铜铝合金轴瓦新材料的研究
10.
The inert anode of NiFe_2 O_4 spinel is of semi-conductor materials, but it couldn't meet the need of inert anode for aluminum electrolysis.
镍铁尖晶石基惰性阳极属于高温半导体材料,在铝电解过程中其电导率不能满足要求.
11.
Studies on Spinel-Based Inert Anodes for Aluminium Electrolysis and Oxide Membrane Inert Anodes on the Ni-plate;
铁锌尖晶石基铝用惰性阳极及镍基底氧化物膜惰性阳极的研究
12.
SIMULTANEOUS DETERMINATION OF TRACE OF BISMUTH, LEAD, CADMIUM AND ZINC IN NICKEL AND NICKEL-BASE ALLOYS BY DIFFERENTIAL PULSE ANODIC STRIPPING VOLTAMMETRY
微分脉冲阳极溶出伏安法同时测定镍和镍基合金中微量铋、铅、镉、锌
13.
For high-pressure and higher temperature service, nickel and certain alloys of nickel and copper are preferred. Most metals will react with NF3 at temperatures in excess of 300 c.
对于高压和高温设施,镍同镍和铜的特定合金是首
14.
Nickel and nickel-copper alloys round bars
GB/T4435-1984镍及镍铜合金棒
15.
Nickel and nickel-copper alloy tube
GB/T2882-1981镍及镍铜合金管
16.
Property and Preparation of High-frequency and High-tension NiCuZn Ferrite;
高频高耐压镍铜锌铁氧体材料性能与制备
17.
Industrial Testing on Retrieving Sn、Bi、Cu and Pb from Anode Slime;
锡阳极泥中回收锡铋铜铅的工业试验
18.
Tungsten alloys are materials with a high tungsten content and low amounts of NiFe or NiCu.
钨基高比重合金是钨中加入少量的镍铁或镍铜烧结而成。