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1)  continuous band-shaped nickel foam
连续化带状泡沫镍
1.
The continuous band-shaped nickel foam,a key material of Ni-MH.
连续化带状泡沫镍是镍氢、镍镉、镍锌电池的关键材料,是国家“八六三”计划重点攻关项目。
2)  continuous foam separation
连续式泡沫分离
1.
Removing low concentration zinc ion from water using continuous foam separation;
连续式泡沫分离去除水中低含量锌离子的研究
2.
Removal of chromium(Ⅵ)dissolved in water by continuous foam separation was conducted.
采用连续式泡沫分离法处理废水中的Cr(Ⅵ),考察了pH值、阳离子表面活性剂质量浓度、气量、回流量、进水流量、液位高度等因素对Cr(Ⅵ)去除率的影响规律。
3)  foam flotation in a continuous mode
连续式泡沫浮选
4)  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。
5)  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。
6)  Nickel foam
泡沫镍
1.
Effects of different conductive treatments on the performances of continuous nickel foam;
导电化方法对连续泡沫镍性能的影响
2.
Technologies and parameters of nickel foam;
泡沫镍的制备工艺及性能参数
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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