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    • 1. 发明申请
    • SCROLL COMPRESSOR
    • 滚动压缩机
    • US20120128518A1
    • 2012-05-24
    • US13388344
    • 2011-06-09
    • Sadayuki YamadaAtsushi SakudaYoshiyuki FutagamiTakashi MorimotoNobuaki OgawaYoshifumi Abe
    • Sadayuki YamadaAtsushi SakudaYoshiyuki FutagamiTakashi MorimotoNobuaki OgawaYoshifumi Abe
    • F04C18/02
    • F04C18/0215F04C23/008F04C29/028F04C2270/701
    • A scroll compressor includes a back pressure chamber oil-feeding path for feeding lubricating oil from a high-pressure region to a back pressure chamber, and a compression chamber oil-feeding path for feeding lubricating oil from the back pressure chamber to a compression chamber. One phase in which the back pressure chamber oil-feeding path is communicated from the high-pressure region to the back pressure chamber and another phase in which the compression chamber oil-feeding path is communicated from the back pressure chamber to the compression chamber are shifted from each other, so that the back pressure chamber oil-feeding path and the compression chamber oil-feeding path are never put into the communicating state simultaneously. Thus, after a halt of the compressor, under-communication oil-feeding of the lubricating oil from the high-pressure region via the back pressure chamber to the compression chamber can be prevented, so that the lubricating oil in the liquid storage section is kept from decreasing and moreover the lubricating oil is kept from being filled into the compression chamber, make it possible to achieve a stable restart-up.
    • 涡旋压缩机包括用于将润滑油从高压区域供给到背压室的背压室供油路径和用于将润滑油从背压室供给到压缩室的压缩室供油路径。 背压室供油路径从高压区域传递到背压室的一个阶段和压缩室供油路径从背压室连通到压缩室的另一个相位被偏移 使得背压室供油路径和压缩室供油路径不会同时进入连通状态。 因此,在压缩机停止之后,可以防止润滑油从高压区域经由背压室向压缩室的不连通供油,从而保持液体存储部分中的润滑油 从而减少润滑油,并且不会将润滑油填充到压缩室中,使得可以实现稳定的重新起动。
    • 8. 发明授权
    • Method of obtaining copper from ore
    • 从矿石中获取铜的方法
    • US07842120B2
    • 2010-11-30
    • US12219894
    • 2008-07-30
    • Yoshifumi AbeHiroshi HosakaKazuaki TakebayashiYasunari IshiguroAkira Yoshimura
    • Yoshifumi AbeHiroshi HosakaKazuaki TakebayashiYasunari IshiguroAkira Yoshimura
    • C22B15/00C22B3/08
    • C22B15/0093C22B3/0005C22B15/0069C22B15/0089Y02P10/234Y02P10/236
    • A method of obtaining copper from feedstock includes: providing feedstock into acid solution including chloride and bromide of one of alkali metal and alkali earth metal, and one of chloride of copper and iron and bromide of copper and iron; leaching monovalent copper and divalent copper with use of oxidizing power of at least one of iron ion and copper ion, with air being blown into the acid solution under an atmospheric pressure at a temperature less than a boiling point of the acid solution; solid-liquid separating the acid solution; blowing air into the solution; oxidizing copper in the solution; coprecipitating iron and impurity; extracting copper from the solution from which deposition including the coprecipitate is separated; obtaining the extracted copper into sulfuric acid solution as copper sulfate; obtaining copper from the copper sulfate; and recycling hydrochloric acid generated in the extracting in another copper leaching.
    • 从原料获得铜的方法包括:向碱性金属和碱土金属之一的氯化物和溴化物以及铜和铁的溴化铜和铁的氯化物之一提供原料; 使用铁离子和铜离子中的至少一种的氧化能力浸出一价铜和二价铜,空气在大气压下在低于酸溶液的沸点的温度下吹入酸溶液中; 固液分离酸溶液; 将空气吹入溶液中; 在溶液中氧化铜; 共沉淀铁和杂质; 从包含共沉淀物的沉积物分离的溶液中提取铜; 将提取的铜作为硫酸铜获得硫酸溶液; 从硫酸铜中获得铜; 并回收在另一种铜浸出中提取中产生的盐酸。
    • 9. 发明授权
    • Method for leaching gold
    • 浸金方法
    • US07682420B2
    • 2010-03-23
    • US11896747
    • 2007-09-05
    • Yoshifumi AbeHiroshi Hosaka
    • Yoshifumi AbeHiroshi Hosaka
    • C22B11/06
    • C22B11/04C22B3/10C22B11/06C22B15/0069Y02P10/234Y02P10/236
    • In a method for leaching gold from copper sulfides, the sulfide ores are first subjected to leaching of copper, thereby producing a leaching residue having 7.9% or less of the copper content. This leaching residue is mixed with a leach liquor, which contains the chloride ion and ferric ion and has 1.9 or less of pH. Gold and copper can be effectively leached from the copper sulfide ores. Ordinarily used oxidizing reagents such as hydrogen peroxide or nitric acid are not used. The gold, copper and iron can, therefore, be leached in a single process and by using an identical leaching liquor. The rate of gold leaching reaction can be enhanced by the co-presence of either copper or bromide ion or both together with the chloride and iron ion.
    • 在从硫化铜中浸出金的方法中,首先对硫化物矿石进行铜浸出,由此生成具有7.9%以下铜含量的浸出残渣。 该浸出残渣与含有氯离子和铁离子的浸出液混合,pH为1.9以下。 铜和铜可以有效地从硫化铜矿石中浸出。 不使用通常使用的氧化剂如过氧化氢或硝酸。 因此,金,铜和铁可以在一个单独的过程中浸出并使用相同的浸出液。 金浸出反应的速率可以通过铜或溴离子的共存或二者与氯离子和铁离子的共存来提高。