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    • 2. 发明授权
    • Method of treating a surface to protect the same
    • 处理表面以保护其表面的方法
    • US08119203B2
    • 2012-02-21
    • US11420904
    • 2006-05-30
    • Robert L. HiseGeoffrey E. ScanlonJoseph Bergmeister, IIIDaniel B. Knorr
    • Robert L. HiseGeoffrey E. ScanlonJoseph Bergmeister, IIIDaniel B. Knorr
    • C10G35/00B05D3/00B05D3/02
    • C10G35/04C10G75/00C23C4/18C23C26/00C23C28/021C23C28/023
    • A method of treating a substrate by applying a layer of at least one metal to the substrate to form an applied metal layer on the substrate and followed by curing of the applied metal layer at sub-atmospheric pressure to form a metal protective layer. A method of treating a substrate by applying a layer of at least one metal to a substrate of an unassembled component of a reactor system to form an applied metal layer on the substrate of the unassembled component and curing the applied metal layer on the substrate of the unassembled component to form a metal protective layer. A method of treating a substrate by applying a layer of at least one metal to the substrate to form an applied metal layer, curing the applied metal layer at a first temperature and pressure for a first period of time, and curing the applied metal layer at a second temperature and pressure for a second period of time, wherein the curing forms a metal protective layer.
    • 一种通过将至少一种金属层施加到衬底上以在衬底上形成施加的金属层并随后在亚大气压下固化所施加的金属层以形成金属保护层来处理衬底的方法。 一种通过将至少一种金属层施加到反应器系统的未组装组分的衬底上来处理衬底的方法,以在未组装的组件的衬底上形成施加的金属层,并将所施加的金属层固化在所述衬底上 未组装的组分形成金属保护层。 一种通过将至少一种金属层施加到基板上以形成施加的金属层来处理基板的方法,在第一温度和压力下固化所施加的金属层一段时间,并且将施加的金属层固化在 第二温度和压力持续第二时间段,其中所述固化形成金属保护层。
    • 3. 发明授权
    • Selective hydrogenation catalyst and methods of making and using same
    • 选择性氢化催化剂及其制备和使用方法
    • US07417007B2
    • 2008-08-26
    • US11458937
    • 2006-07-20
    • Tin-Tack Peter CheungJoseph Bergmeister, IIIZongxuan Hong
    • Tin-Tack Peter CheungJoseph Bergmeister, IIIZongxuan Hong
    • B01J27/02B01J27/045B01J27/10
    • B01J27/13B01J21/04B01J23/44B01J23/50B01J27/125B01J35/1009B01J37/0205B01J37/0207B01J37/24C10G45/40C10G2300/70
    • A method for producing a selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition. A selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon formed by the method comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition. A method of selectively hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon comprising contacting the highly unsaturated hydrocarbon with a selective hydrogenation catalyst composition produced by contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition.
    • 一种制备用于将高度不饱和烃氢化成不饱和烃的选择性氢化催化剂的方法,包括使无机催化剂载体与含氯化合物接触以形成氯化催化剂载体并向氯化催化剂载体中加入钯以形成负载钯 组成。 一种用于将高度不饱和烃氢化成不饱和烃的选择性氢化催化剂,该方法包括使无机催化剂载体与含氯化合物接触以形成氯化催化剂载体,并向氯化催化剂载体中加入钯以形成负载钯 组成。 包括将高度不饱和烃选择性氢化为不饱和烃的方法,包括使高度不饱和烃与选择性氢化催化剂组合物接触,所述选择性氢化催化剂组合物通过使无机催化剂载体与含氯化合物接触而形成氯化催化剂载体并向氯化物中加入钯 催化剂载体以形成负载型钯组合物。
    • 7. 发明授权
    • Selective hydrogenation catalyst and methods of making and using same
    • 选择性氢化催化剂及其制备和使用方法
    • US08729326B2
    • 2014-05-20
    • US12191899
    • 2008-08-14
    • Tin-Tack Peter CheungJoseph Bergmeister, IIIZongxuan Hong
    • Tin-Tack Peter CheungJoseph Bergmeister, IIIZongxuan Hong
    • C07C7/163B01J27/13
    • B01J27/13B01J21/04B01J23/44B01J23/50B01J27/125B01J35/1009B01J37/0205B01J37/0207B01J37/24C10G45/40C10G2300/70
    • A method for producing a selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition. A selective hydrogenation catalyst for hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon formed by the method comprising contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition. A method of selectively hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon comprising contacting the highly unsaturated hydrocarbon with a selective hydrogenation catalyst composition produced by contacting an inorganic catalyst support with a chlorine-containing compound to form a chlorided catalyst support and adding palladium to the chlorided catalyst support to form a supported-palladium composition.
    • 一种制备用于将高度不饱和烃氢化成不饱和烃的选择性氢化催化剂的方法,包括使无机催化剂载体与含氯化合物接触以形成氯化催化剂载体并向氯化催化剂载体中加入钯以形成负载钯 组成。 一种用于将高度不饱和烃氢化成不饱和烃的选择性氢化催化剂,该方法包括使无机催化剂载体与含氯化合物接触以形成氯化催化剂载体,并向氯化催化剂载体中加入钯以形成负载钯 组成。 包括将高度不饱和烃选择性氢化为不饱和烃的方法,包括使高度不饱和烃与选择性氢化催化剂组合物接触,所述选择性氢化催化剂组合物通过使无机催化剂载体与含氯化合物接触而形成氯化催化剂载体并向氯化物中加入钯 催化剂载体以形成负载钯组合物。
    • 9. 发明授权
    • Methods of making and using a selective hydrogenation catalyst
    • 制备和使用选择性氢化催化剂的方法
    • US07199076B2
    • 2007-04-03
    • US10741800
    • 2003-12-19
    • Joseph Bergmeister, IIITin-Tack Peter Cheung
    • Joseph Bergmeister, IIITin-Tack Peter Cheung
    • B01J27/06B01J27/128B01J27/13B01J27/138
    • C07C5/05C07C5/09C07C2523/66
    • In an embodiment, a method of hydrogenating a highly unsaturated hydrocarbon to an unsaturated hydrocarbon includes contacting the highly unsaturated hydrocarbon with a catalyst in the presence of hydrogen. The catalyst comprises palladium and an inorganic support having a surface area of from about 4.5 to about 20 m2/g, or alternatively 5 to 14.5 m2/g. The inorganic support may comprise α-alumina treated with a fluoride source. The palladium may be primarily disposed near the surface of the support. In addition, the catalyst may comprise silver distributed throughout the support. In another embodiment, a method of making the foregoing selective hydrogenation catalyst includes contacting a fluorine-containing compound with an inorganic support, heating the support, and adding palladium to the inorganic support. After adding palladium to the support, the support can then be heated again, followed by adding silver to and then heating the support once again.
    • 在一个实施方案中,将高度不饱和烃氢化成不饱和烃的方法包括在氢的存在下使高度不饱和烃与催化剂接触。 催化剂包括钯和无机载体,其表面积为约4.5至约20m 2 / g,或者5至14.5m 2 / g。 无机载体可以包括用氟化物源处理的α-氧化铝。 钯可以主要设置在支撑体的表面附近。 此外,催化剂可以包含分布在整个载体上的银。 在另一个实施方案中,制备上述选择性氢化催化剂的方法包括使含氟化合物与无机载体接触,加热载体,并向无机载体中加入钯。 向载体中加入钯后,再次加热载体,然后再加入银,然后再次加热载体。