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1)  Recovered Nickel Hydroxide
回收氢氧化镍
1.
Determination of Sulphur and Phosphorus of Recovered Nickel Hydroxide Simultaneously by ICP-AES;
电感耦合等离子体-原子发射光谱法测定回收氢氧化镍中非金属元素硫和磷的含量
2)  NaOH recovering
氢氧化钠回收
3)  nickel hydroxide
氢氧化镍
1.
Preparation and characterization of nano-scale nickel hydroxide using hydrothermal synthesis method;
纳米氢氧化镍的水热合成及其表征
2.
ICP-OES Determination of Main Content and Impurity in Nickel Hydroxide;
氢氧化镍中主含量及杂质含量的ICP-OES测定方法
3.
Research on preparation and electrochemical performances of nano-sized nickel hydroxide;
纳米级氢氧化镍制备及电化学性能研究
4)  Ni(OH)_2
氢氧化镍
1.
Synthesis and Electrochemical Behaviors of Al and Co co-Doped α-Ni(OH)_2;
铝钴复合掺杂的氢氧化镍的制备及其电性能
2.
Study on the hybrid supercapacitor based on Ni(OH)_2/activated carbon;
氢氧化镍—炭复合超级电容器的研究
3.
Based on the review of the preparation and application of nanostructured materials, the preparation and electrochemistry properties of Nickel-based nanostuctured materials, including Ni(OH)_2 microsphere doped with carbon,hollowed-out Ni microsphere and NiO microsphere,were studied systematically.
(3)以制得的碳杂氢氧化镍微球作为前驱体,600℃氮气的保护下,焙烧制得了镂空结构金属Ni微球,通过分析可知产物大部分呈球形,形貌比较规整,分散性好,大小分布均匀,比表面积较大。
5)  catalytic oxidation/sulfurization and hydrogen recovery
催化氧化硫化氢回收
6)  Nickel hydroxide
镍氢氧化物
1.
Nickel hydroxide modified glassy carbon electrode was successfully prepared by a new method-film plating/cyclic voltammetry.
采用一种新方法———镀膜/循环伏安法成功制备了镍氢氧化物修饰玻碳电极。
2.
Status of study and development of nickel hydroxide with different crystal type and responding electrode were reviewed and the existing problems were also analyzed.
综述了不同晶型镍氢氧化物的研究和发展概况,分析了现有电极材料存在的问题。
补充资料:回收氢
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性质:有如下方法。(1)变压吸附法:简称PSA法,利用沸石型或碳基分子筛在压力下吸附氨合成弛放气中除氢以外的所有其他气体,然后在降压下脱吸以回收氢的方法,整个过程分成四个阶段:吸附、减压、低压解吸和加压。(2)普里森分离法:用渗透膜选择性分离合成弛放气中氢组分的一种方法,优点是流程简单,操作方便,操作维持费低。(3)深冷法:利用部分气体组分在深度冷却温度下被冷凝分离以回收氨合成弛放气中氢组分。主要设备是冷箱,由氨冷冻设备、膨胀机和冷凝分离器等单元组成。此法可将弛放气中95%的氢回收,氢的纯度可达99.99%,但预处理(除水和氨等)要求较严格,操作也复杂。

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