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1)  foamed nickel electrodes
泡沫镍正极
2)  foamed nickel electrode
泡沫镍电极
1.
5Ah D size NiCd batteries are researched and developed with foamed nickel electrode and pasted cadmium electrode.
通过对镍电极的改良,提高了氢氧化镍的利用率,加入适量的Cd化合物,提高了O2的析出过电位并起到反极物质的作用,镍电极的比容量超过500mAh/cm3,依次确定了泡沫镍电极的最适宜配比。
3)  spent forth nickel electrode plate
废泡沫式镍极板
1.
The P507 is intermediate product in the course of separating nickel from spent forth nickel electrode plate yielded in producing secondary batteries.
此P5 0 7有机溶液是用P5 0 7从二次电池废泡沫式镍极板中回收镍流程中的中间产物。
4)  zinc-plated foam nickel electrode
泡沫镍镀锌电极
1.
Electrochemical performance of zinc-plated foam nickel electrode in alkaline solution (KOH) was stu-died by grazing ellipsometry and cyclic voltammetry.
结果表明 :掠射椭偏术用于此类多孔电极体系的研究可以弥补反射式椭圆偏振技术的不足 ,显示出掠射式表面测试技术独特的优点 ;再者由于所研究的泡沫镍镀锌电极除具有较高的孔隙率和比表面外 ,还具有适当的活性 ,在电池充放电期间 ,负极上的锌能够得到充分的利用。
5)  porous nickel
泡沫镍
1.
The porous strontium doping,strontium and fluorin doping photocatalytic materials with porous nickels as the carriers were prepared by hydrothermal method.
以多孔泡沫镍为载体,采用水热合成法制备了Sr改性和Sr、F共掺杂改性多孔光催化材料,采用XRD、TEM、SEM、FT-IR、UV-vis、XPS对样品进行了表征,并以样品对水中罗丹明B的降解性能为评价指标,对样品的光催化性能进行了评价。
2.
Porous titanium dioxide-based photocatalytic materials with porous nickel as carrier were prepared by electroless composite plating method.
以多孔泡沫镍为载体,采用化学复合镀法制备了性能优良的多孔光催化材料,以产品对水中罗丹明B的降解性能为评价指标,对产品的光催化性能进行评价。
3.
With one 10 W ultraviolet sterilized lamp,and by using titanium dioxide as catalysis, which is immobilized on porous nickels, an investigation of the photocatalytic degradation of the organic pollutants with low boiling point had been studied.
以10W直管紫外杀菌灯为光源,以泡沫镍基纳米TiO2为催化剂,研究了低沸点有机小分子污染物的光催化降解。
6)  foam nickel
泡沫镍
1.
Optimal film thickness of TiO_2 coated on foam nickels for the photocatalytic degradation of formaldehyde;
负载TiO_2的泡沫镍网光催化降解甲醛的膜厚优化
2.
Catalytic hydrodechlorination of 4-chlorophenol in aqueous solution by a palladized foam nickel catalyst
钯/泡沫镍对水体中4-氯酚的氢解脱氯研究
3.
Anatase TiO2 and TiO2/Al2O3 films were successfully prepared on foam nickel substrates by sol-gel technique.
以泡沫镍为载体,Al2O3作为过渡中间层,用溶胶-凝胶法在泡沫镍上负载锐钛矿相的TiO2薄膜,制成泡沫金属基的TiO2和TiO2/Al2O3光催化剂,利用XRD和FE-SEM等测试手段对其性质进行表征,用乙醛气体的光催化降解测试其活性。
补充资料:泡沫镍
分子式:
CAS号:

性质:碱性蓄电池极板常采用的一种多孔镍基板(plaque)。由多孔泡沫塑料片化学镀镍后烧去塑料芯制成。其优点是孔率大,能填充较多活性物质;缺点是电阻率较高,不宜大电流放电。

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