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    • 34. 发明授权
    • Nanoporous insulating oxide deionization device having asymmetric electrodes and method of use thereof
    • 具有不对称电极的纳米绝缘氧化物去离子器件及其使用方法
    • US08216445B2
    • 2012-07-10
    • US11932741
    • 2007-10-31
    • Marc A. AndersonKevin C. Leonard
    • Marc A. AndersonKevin C. Leonard
    • H01G9/042H01G9/045H01G9/048C02F1/469C02F1/58
    • C02F1/4691C02F1/4602C02F1/4604C02F1/46114C02F1/4672C02F2001/46133C02F2001/46161C02F2201/46115C02F2201/4613
    • A nanoporous insulating oxide deionization device, method of manufacture and method of use thereof for deionizing a water supply (such as a hard water supply), for desalinating a salt water supply, and for treating a bacteria-containing water supply. The device contains two composite electrodes each constructed from a conductive backing electrode and a composite oxide layer being an insulating oxide or a non-insulating oxide and an intermediate porous layer. The composite layer being substantially free of mixed oxidation states and nanoporous and having a median pore diameter of 0.5-500 nanometers and average surface area of 300-600 m2/g. The composite layer made from a stable sol-gel suspension containing particles of the insulating oxide, the median primary particle diameter being 1-50 nanometers. The difference in zeta potential, at a pH in the range of 6-9, being sufficient to suitably remove alkaline and alkaline earth cations (such as Ca2+ and Na1+), various organic and other inorganic cations and organic and inorganic anions from water, preferably household hard water. One composite layer being constructed from a mixture of Al2O3, MgAl2O4 and/or Mg-doped Al2O3 particles, and the other composite layer being constructed from SiO2 or TiO2.
    • 一种纳米多孔绝缘氧化物去离子装置,其制造方法及其使用方法,用于使供水(例如硬水供应)去离子,用于盐水供应盐的脱盐和用于处理含细菌的水源。 该装置包含两个复合电极,每个复合电极由导电背衬电极和作为绝缘氧化物或非绝缘氧化物的复合氧化物层和中间多孔层构成。 复合层基本上没有混合氧化态和纳米多孔,中值孔径为0.5-500纳米,平均表面积为300-600平方米/克。 复合层由含有绝缘氧化物颗粒的稳定溶胶 - 凝胶悬浮液制成,中值一次粒径为1-50纳米。 ζ电位差在6-9范围内的pH值足以适当地去除碱金属和碱土金属阳离子(如Ca2 +和Na1 +),各种有机和其他无机阳离子以及水中的有机和无机阴离子 家用硬水。 一个复合层由Al2O3,MgAl2O4和/或掺杂Mg的Al2O3颗粒的混合物构成,另一个复合层由SiO2或TiO2构成。
    • 38. 发明授权
    • Reactor process using metal oxide ceramic membranes
    • 使用金属氧化物陶瓷膜的反应器工艺
    • US5308454A
    • 1994-05-03
    • US925443
    • 1992-08-11
    • Marc A. Anderson
    • Marc A. Anderson
    • C02F1/32C02F1/461C02F1/72C25B1/00C25B3/00
    • C02F1/46104C25B1/003C02F1/32C02F1/725Y02P20/135Y10S204/03
    • A reaction vessel for use in photoelectrochemical reactions includes as its reactive surface a metal oxide porous ceramic membrane of a catalytic metal such as titanium. The reaction vessel includes a light source and a counter electrode. A provision for applying an electrical bias between the membrane and the counter electrode permits the Fermi levels of potential reaction to be favored so that certain reactions may be favored in the vessel. The electrical biasing is also useful for the cleaning of the catalytic membrane. Also disclosed is a method regenerating a porous metal oxide ceramic membrane used in a photoelectrochemical catalytic process by periodically removing the reactants and regenerating the membrane using a variety of chemical, thermal, and electrical techniques.
    • 用于光电化学反应的反应容器包括催化金属如钛的金属氧化物多孔陶瓷膜作为其反应性表面。 反应容器包括光源和对电极。 在膜和对电极之间施加电偏压的规定允许有利于费米能级的潜在反应,使得某些反应可能在容器中有利。 电偏置也可用于清洁催化膜。 还公开了一种再生用于光电化学催化方法的多孔金属氧化物陶瓷膜的方法,其通过使用各种化学,热和电技术周期性地除去反应物并再生膜。