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1)  RuO_(2)/Ti
钛基RuO2
1.
The results indicated that in the electrochemical reactor with stainless steel, RuO_(2)/Ti and active carbon particles as the anode, cathode and filled electrode, respectively, anion surfactants in wastewater had good degradation effect under appropriate technological condit.
结果表明,在无隔膜复极性固定床电解槽内,以不锈钢为阴极,以钛基RuO2电极为阳极,以活性炭颗粒为填充电极,在合适的工艺条件下,阴离子表面活性剂废水具有较好的降解效果,降解率可达到96%以上,CODCr去除率大于84%。
2)  IrO2·RuO2 titanium electrode
IrO2.RuO2涂层钛电极
3)  Ti/RuO_2
Ti/RuO2
1.
Color removal of simulated Methyl Orange wasterwater was studied systematically by electrolysis in an electrolytic cell with the Ti/RuO_2 as the anode and the foam nickel electrode as the cathode.
在阳极和阴极分别为Ti/RuO2、泡沫镍的无隔膜电解槽内,对甲基橙的电化学脱色效果进行了研究,探讨了外加电压、电解质量浓度、反应时间、以及NaCl的投加量对甲基橙脱色的影响。
4)  Ti-based
钛基
1.
Ti-based amorphous brazing material is a new brazing material with great application prospect.
钛基非晶态钎焊料是一种较有应用前景的新型钎焊材料。
2.
Ti-based bioactive coating materials as high application prospect materials for medical implants are great in material science.
钛基生物活性涂层材料作为极具应用前景的医用种植体材料,是材料领域研究的热点材料。
5)  RuO_2-coating
RuO2包覆
6)  RuO_2·nH_2O films
RuO2·nH2O薄膜
1.
Effects of the different current density on adhesion and morphology of RuO_2·nH_2O films are studied by galvanostatic deposition.
采用直流电沉积的方法研究了阴极电流密度的变化(1mA/cm2、3mA/cm2、5mA/cm2、10mA/cm2)对RuO2·nH2O薄膜附着力和形貌的影响,并探讨了RuO2·nH2O电沉积的机理。
补充资料:1,3-丙二氧基钛双(乙酰乙酸乙基酯)(乙酰丙酮)
CAS:82089-64-3

中文名称:1,3-丙二氧基钛双(乙酰乙酸乙基酯)(乙酰丙酮)

英文名称:1,3-Propanedioxytitaniumbis (ethyl acetoacetate)(acetylacetone)
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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