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    • 1. 发明专利
    • Rigid material consisting of titanium, boron and nitrogen
    • 钛,铌和氮的刚性材料
    • JPS6168323A
    • 1986-04-08
    • JP19064784
    • 1984-09-13
    • Toshio HiraiTakeshi MasumotoToshiaki MatsudaYukio MatsunamiHiroyuki NakaeRes Dev Corp Of JapanNaoki Uno
    • NAKAE HIROYUKIMATSUDA TOSHIAKIUNO NAOKIMATSUNAMI YUKIOHIRAI TOSHIOMASUMOTO TAKESHI
    • C04B41/87C01B35/14C04B35/58C23C16/28C23C16/30
    • PURPOSE: To obtain the rigid material high in hardness and electrically- conductive properties by containing Ti, B and N in proper quantity and specifying the X rays diffraction peak.
      CONSTITUTION: The rigid material which contains about 60W80wt% Ti, about 1W31wt% B plus about 1W25wt% N and is obtained by the chemical gaseous phase deposition or the like has the diffraction peak within the range of (42.6°W44.5°) for 2θ by means of X rays diffraction measurement due to CuK αrays. When using the rigid material as an ultrarigid coating film, the coating can be performed for a short period. The material has excellent electrically- conductive properties and its bulk body is useful for a high-temp. corrosion resistant heater, an electrode material and the contact material, etc. Also the material can be used as a sintered body by crushing it. The rigid material can be manufactured in high deposition rate even at the high temp. of about ≥1,600°C.
      COPYRIGHT: (C)1986,JPO&Japio
    • 目的:通过含有适量的Ti,B和N,并确定X射线衍射峰,获得硬度高,导电性能好的刚性材料。 构成:含有约60-80wt%Ti,约1-31wt%B加约1-25wt%N并且通过化学气相沉积等获得的刚性材料具有在(42.6度)范围内的衍射峰 -44.5度),由于CuK alpharays的X射线衍射测量。 当使用刚性材料作为超薄涂膜时,可以在短时间内进行涂层。 该材料具有优异的导电性能,其体积体积适用于高温。 耐腐蚀加热器,电极材料和接触材料等。此外,该材料可以通过粉碎而用作烧结体。 刚性材料即使在高温下也可以以高沉积速率制造。 约> = 1600℃。
    • 6. 发明授权
    • Process for producing a catalyst for denitration by catalytic reduction
using ammonia
    • 使用氨催化还原制备脱硝催化剂的方法
    • US5087600A
    • 1992-02-11
    • US589452
    • 1990-09-27
    • Yasuyoshi KatoKunihiko KonishiHiroshi AkamaToshiaki MatsudaNobue Teshima
    • Yasuyoshi KatoKunihiko KonishiHiroshi AkamaToshiaki MatsudaNobue Teshima
    • B01D53/86B01J23/24
    • B01J23/24B01D53/8628
    • A catalyst for denitration by catalytic reduction using ammonia capable of preventing catalyst deterioation due to vapors of heavy metal compounds contained in exhaust gases and having a high strength and a superior resistance to poisons and a process for producing the catalyst are provided, which catalyst comprises TiO.sub.2, oxide(s) of at least one of V, Cu, Fe and Mn and oxide(s) of at least one of Mo, W and Sn, the total of the mol number(s) of the oxide(s) of at least one of Mo, W and Sn falling within a range of 2.times.10.sup.-6 to 20.times.10.sup.-6 mol/m.sup.2 per the unit specific surface of the catalyst, and which process comprises having oxide(s) of at least one of Mo, W and Sn adsorbed and supported onto a composition comprising TiO.sub.2 prepared in advance and oxide(s) of at least one of V, Fe, Cu and Mn so as to give the above-specified total of the mol number(s) of oxide(s) of at least one of Mo, W and Sn.
    • 提供了一种使用氨进行催化还原的催化还原催化剂,其能够防止由于废气中含有的重金属化合物的蒸气而导致的催化剂降解,并且具有高强度和优异的抗毒性和催化剂的制备方法,该催化剂包含TiO 2 ,V,Cu,Fe和Mn中的至少一种的氧化物以及Mo,W和Sn中的至少一种的氧化物,以及氧化物的摩尔数(s)为 Mo,W和Sn中的至少一种相对于催化剂的单位比表面积为2×10 -6至20×10 -6 mol / m 2的范围,并且该方法包括具有至少一种Mo,W和 Sn吸附并负载在预先制备的TiO 2和V,Fe,Cu和Mn中的至少一种的氧化物的组合物上,以得到上述规定的氧化物摩尔数的总数, 的Mo,W和Sn中的至少一种。