titanic acid

[taɪˈtænɪk ˈæsɪd][taɪˈtænɪk ˈæsid]

钛酸

  • Dark Adsorption Property of Nanotube of Titanic Acid and Titania

    纳米管 钛酸和二氧化钛的暗态吸附性能

  • Performance of Controlled Release of Antifouling Agent in Nanotubes of Titanic Acid

    纳米 钛酸管对防污剂异噻唑酮的控释作用

  • A Study for the Specific Adsorption of Uranium ( VI ) on Titanic Acid

    铀在 钛酸吸附剂上的特性吸附

  • The content of α - Al_2O_3 decreases with increase of the concent of Na_2WO_4.The research on titanic micro-arc oxidation indicates that the ceramic coating in acid electrolyte is mainly composed of anatase TiO_2 . The content of anatase TiO_2 increases with decrease of pH of the electrolyte .

    微弧氧化研究表明:在 酸性电解液中生成的氧化膜主要为锐钛矿型TiO2,且随着pH值的减小,锐钛矿型TiO2的含量增加,膜层表面结构不均匀,疏松多孔;

  • The influence of vacuum dehydration and visible light irradiation on ESR property of nanotube titanic acid was studied .

    本文报道了纳米管 钛酸在真空 -0.1MPa温度100 的条件下,经过不同时间处理后的ESR特性及其可见光照的影响。

  • The manufacturing technologies of titanic acetic acid heater such as material selection processing of tube sheets welding assembly were presented in the paper .

    介绍了 乙酸加热器的材料,管板加工,焊接,设备组装等制造工艺过程。

  • Preparation of titanic acid nanotubes films by electrophoretic deposition method

    电泳沉积法制备 钛酸纳米管膜层

  • Preparation of organic titanic acid and study on its dye adsorption properties

    表面有机 钛酸材料的制备及吸附染料性能

  • Study on the Composition 、 Structure and ESR Property of Nanotube Sodium Titanate & Nanotube Titanic Acid

    纳米管 钛酸钠和钛酸的化学组成、结构及其ESR特性研究

  • The results indicated that Au 0 nanoparticles were dispersed on both inner and outer surfaces of the titanic acid nanotube after the catalyst sample was treated at 573 K.

    结果表明,经573K处理后,纳米管 钛酸表面及管内均有零价的金颗粒存在。

  • The adsorption properties of nanotube titanic acid TiO_2 ( A ) and P_25TiO_2 to reactive brilliant red X-3B in aqueous solution were studied in the dark .

    研究了在暗态下纳米管 钛酸,TiO2(A),P25TiO2对水溶液中活性艳红X3B的吸附性能。

  • A thorough detoxification method for chromic residue by neutralizing and reducing it with titanic waste acid was introduced .

    介绍了利用 钛白中和还原铬渣并使之解毒彻底的方法。