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    • 1. 发明授权
    • Method of manufacturing single crystal wire and other single crystal metallic articles
    • 单晶线及其他单晶金属制品的制造方法
    • US08663388B2
    • 2014-03-04
    • US12436754
    • 2009-05-06
    • Se Young JeongChae Ryong ChoSang Eon ParkSung Kyu Kim
    • Se Young JeongChae Ryong ChoSang Eon ParkSung Kyu Kim
    • C30B11/00
    • C30B15/00C22B11/02C30B11/00C30B11/14C30B15/36C30B29/02C30B29/62
    • Disclosed are a single crystal wire and other single crystal articles, and a manufacturing method thereof. The method comprises the steps of: placing into a growth crucible at least one metal selected from the group consisting of gold, copper, silver, aluminum and nickel; heating and melting the metal placed in the growth crucible; growing a single crystal using metal crystal as a seed by Czochralski or Bridgman method; cutting the grown single crystal by electric discharge machining; and machining the cut single crystal and producing a wire or other articles such as a ring. In the method, the grown metal single crystal is cut into a disc-shaped piece by electric discharge machining. The piece is transformed into a single crystal wire or other articles by wire-cut electric discharge machining, and the single crystal wire can be used as a ring, a pendant, or a wire for high-quality cables for audio and video systems. Also, the single crystal formed into the disc-shaped piece by electric discharge machining can be used as a substrate and a target for deposition.
    • 公开了单晶线及其它单晶制品及其制造方法。 该方法包括以下步骤:将生长坩埚放入至少一种选自金,铜,银,铝和镍的金属; 加热和熔化置于生长坩埚中的金属; 使用Czochralski或Bridgman方法生长使用金属晶体作为种子的单晶; 通过放电加工切割生长的单晶; 并加工切割的单晶并生产线或其它物品如环。 在该方法中,通过放电加工将成长的金属单晶切割成圆盘状的片。 该片通过线切割放电加工转换为单晶线或其他物品,单晶线可用作音频和视频系统的高品质电缆的环形,吊坠或线材。 此外,通过放电加工形成为盘状片的单晶可以用作基板和沉积靶。
    • 4. 发明授权
    • Process for preparing supported nickel catalyst for reforming hydrocarbons
    • 制备用于重整碳氢化合物的负载型镍催化剂的方法
    • US06242380B1
    • 2001-06-05
    • US08978799
    • 1997-11-26
    • Sang-Eon ParkJong-San ChangKyu-Wan Lee
    • Sang-Eon ParkJong-San ChangKyu-Wan Lee
    • B01J2946
    • B01J37/0081B01J29/072B01J37/088C01B3/40C01B2203/1052Y02P20/52Y10S502/514
    • A process for preparing supported nickel catalyst consisting of supporting nickel or metal salt of nickel, alkali metal, alkaline earth metal having low melting point on silicon and aluminum-containing support having high surface area such as zeolite, silica and alumina as an oxide by melting effectively nickel or metal salt of nickel, alkali metal and alkaline earth metal having low melting point is disclosed. This process is characterized in that the supported nickel catalyst prepared by the present invention can be used in reforming reaction of hydrocarbons by using carbon dioxide, steam and oxygen as an oxidant. Metal salts used in the preparation of supported nickel catalyst is generally nitrate, chloride, acetate and carbonate having low melting point of 500° C. or less. The contents of nickel, alkali metal and alkaline earth metal of the catalyst are 1 to 20% by weight, 10% by weight or less and 20% by weight or less, respectively. The calcination temperature of the catalyst is in a range of 300° C. to 1200° C.
    • 一种制备负载型镍催化剂的方法,该方法包括将镍或镍的金属盐,碱金属,在硅上具有低熔点的碱土金属和具有高表面积的含铝载体如沸石,二氧化硅和氧化铝作为氧化物,通过熔化 公开了具有低熔点的镍,碱金属和碱土金属的镍或金属盐。 该方法的特征在于,通过使用二氧化碳,蒸汽和氧气作为氧化剂,通过本发明制备的负载型镍催化剂可用于烃的重整反应。 用于制备负载型镍催化剂的金属盐通常是具有500℃或更低熔点的硝酸盐,氯化物,乙酸盐和碳酸盐。 催化剂的镍,碱金属和碱土金属的含量分别为1〜20重量%,10重量%以下且20重量%以下。 催化剂的煅烧温度在300℃〜1200℃的范围内。
    • 10. 发明授权
    • Direct manufacturing method of hydrogen peroxide
    • 直接制造过氧化氢的方法
    • US5972305A
    • 1999-10-26
    • US161835
    • 1998-09-29
    • Sang-Eon ParkJung Whan YooWoo Jin LeeJong-San ChangYong Ki ParkChul Wee Lee
    • Sang-Eon ParkJung Whan YooWoo Jin LeeJong-San ChangYong Ki ParkChul Wee Lee
    • C01B15/01B01J29/74C01B15/022C01B15/023
    • C01B15/023C01B15/022
    • The invention herein relates to a direct manufacturing method of hydrogen peroxide over zeolite, wherein transition metals such as palladium or platinum, and organic compounds such as 2-alkyl anthraquinone or the like are encapsulated onto the zeolite channels, and then reducing agents such as hydrogen, ammonia or alcohol are used in the reaction temperature range of 10.about.90.degree. C. under atmospheric pressure. In general, alkyl anthiraquinone used in the conventional manufacturing, method of hydrogen peroxide can be easily hydrogenated in a relatively mild temperature condition in the range of room temperature to 100.degree. C. by means of a compound having hydrogen. However, the use of alkyl anthraquinone in the reaction is problematic due to the fact that it can only be utilized in a working solution with a solvent which can effectively dissolve alkyl anthraquinoe. The invention herein provides a method of directly manufacturing hydrogen peroxide in aqueous solution, which can overcome the problems of the conventional methods, wherein the compounds which can transfer hydrogen such as alkyl anthraquinone or the like are encapsulated onto the zeolite pores.
    • 本发明涉及在沸石上的过氧化氢的直接制造方法,其中将过渡金属如钯或铂,以及有机化合物如2-烷基蒽醌等包封在沸石通道上,然后还原剂如氢 在大气压下在10℃-10℃的反应温度范围内使用氨或醇。 通常,在常规制造中使用的烷基蒽醌可以在相对温和的温度条件下在室温至100℃的范围内通过具有氢的化合物容易地氢化。 然而,在反应中使用烷基蒽醌是有问题的,因为它只能用于能够有效溶解烷基蒽醌的溶剂的工作溶液中。 本发明提供了一种在水溶液中直接制造过氧化氢的方法,其可以克服常规方法的问题,其中可将氢转移的化合物如烷基蒽醌等包封在沸石孔中。