Method for separating arsenic mineral from copper-bearing material with high arsenic grade
    1.
    发明授权
    Method for separating arsenic mineral from copper-bearing material with high arsenic grade 有权
    从砷含量高的含砷材料中分离出砷矿物的方法

    公开(公告)号:US08685350B2

    公开(公告)日:2014-04-01

    申请号:US13577353

    申请日:2011-02-03

    Abstract: Disclosed herein is a method for separating an arsenic mineral from a copper-bearing material, including the steps of grinding a copper-bearing material containing arsenic, adding water to the copper-bearing material to prepare a slurry, and adding a flotation agent including a depressant, a frother, and a collector to the slurry and blowing air into the slurry for performing flotation to obtain a copper concentrate, wherein the depressant is a chelator. As the chelator, a polyethyleneamine or the like is used. Particularly, when triethylenetetramine is used as the chelator, the amount of triethylenetetramine to be added is preferably 1 to 10 equivalents relative to the amount of soluble copper generated by oxidation of the copper-bearing material, and the pH of the slurry is more preferably adjusted to 7 or more but 8 or less before the slurry is subjected to the flotation.

    Abstract translation: 本发明公开了一种从含铜材料中分离砷矿物的方法,包括以下步骤:研磨含有砷的含铜材料,向含铜材料中加入水以制备浆料,并加入浮选剂,包括 抑制剂,起泡剂和收集剂,并将空气吹入浆料中进行浮选以获得铜精矿,其中抑制剂是螯合剂。 作为螯合剂,使用聚乙烯胺等。 特别是,当使用三亚乙基四胺作为螯合剂时,相对于通过含铜材料的氧化产生的可溶性铜的量,三亚乙基四胺的添加量优选为1〜10当量,更优选调节浆料的pH 在浆料进行浮选之前为7以上且8以下。

    Method of reducing phosphate ore losses in a desliming process
    2.
    发明申请
    Method of reducing phosphate ore losses in a desliming process 有权
    在脱盐过程中减少磷矿矿石损失的方法

    公开(公告)号:US20030121833A1

    公开(公告)日:2003-07-03

    申请号:US10026223

    申请日:2001-12-19

    Abstract: The specification describes one or more embodiments of the present invention, which relates to a method of reducing phosphate ore losses in a desliming process. A phosphate ore preparation slurry is directed to a desliming unit; surfactants and/or an organic polymers are added to the slurry and mixed into the slurry to reduce the viscosity of the slurry and to settle out the fine phosphate ore particles for recovery. These particles are collected and directed to a beneficiation process for recovering the phosphate ore product. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope of meaning of the claims. 37 CFR 1.72(b).

    Abstract translation: 本说明书描述了本发明的一个或多个实施方案,其涉及在脱灰过程中减少磷酸盐矿石损失的方法。 磷酸盐矿石制备浆液被引导至脱灰单元; 将表面活性剂和/或有机聚合物加入到浆料中并混合到浆料中以降低浆料的粘度并沉淀出细磷酸盐矿石颗粒进行回收。 将这些颗粒收集并引导至用于回收磷酸盐矿石产品的选矿方法。 要强调的是,提供这个摘要是为了遵守规定抽象的规则,允许读者快速确定技术公开内容的主题。 提交的理由是,它不会用于解释或限制权利要求的含义范围。 37 CFR 1.72(b)。

    Flotation reagents
    3.
    发明授权
    Flotation reagents 失效
    浮选试剂

    公开(公告)号:US4579651A

    公开(公告)日:1986-04-01

    申请号:US689675

    申请日:1985-01-08

    CPC classification number: B03D1/012 B03D1/0043 B03D2201/005 B03D2203/02

    Abstract: A composition and process are provided for the recovery of the values of zinc, molybdenum, copper, lead, iron (pyrite), and iron-containing small amounts of gold or uranium, or both, from ores comprising these mineral sulfides. The aqueous composition is the impure form of an alkali metal alkyl trithiocarbonate compound. The process comprises employing said aqueous composition as a collection agent for the above minerals in an ore recovery process.A process for the separation of zinc values from lead values from a ore comprising both is provided by employing an alkali metal alkyl trithiocarbonate compound as a collection agent for zinc.In addition, both a composition and process are provided for the recovery of the values of iron, copper, and lead from ores comprising these values. The composition consists essentially of a dispersant and an impure form of an alkali metal alkyl trithiocarbonate compound. The process comprises employing this composition as a collection agent for the above minerals in an ore recovery process.

    Abstract translation: 提供了一种组合物和方法,用于从包含这些矿物硫化物的矿石中回收锌,钼,铜,铅,铁(黄铁矿)和含铁少量的金或铀或两者的值。 含水组合物是碱金属烷基三硫代碳酸酯化合物的不纯形式。 该方法包括在矿石回收方法中使用所述含水组合物作为上述矿物的收集剂。 通过使用碱金属烷基三硫代碳酸酯化合物作为锌的收集剂来提供锌值与来自包含两者的矿石的铅值的方法。 此外,提供组合物和方法用于从包含这些值的矿石中回收铁,铜和铅的值。 该组合物基本上由分散剂和不纯形式的碱金属烷基三硫代碳酸酯化合物组成。 该方法包括在矿石回收方法中采用该组合物作为上述矿物的收集剂。

    Flotation reagents
    4.
    发明授权
    Flotation reagents 失效
    浮选试剂

    公开(公告)号:US4556500A

    公开(公告)日:1985-12-03

    申请号:US489846

    申请日:1983-05-06

    Abstract: A composition and process are provided for the recovery of the values of zinc, molybdenum, copper, lead, iron (pyrite), and iron-containing small amounts of gold or uranium, or both, from ores comprising these mineral sulfides. The aqueous composition is the impure form of an alkali metal alkyl trithiocarbonate compound. The process comprises employing said aqueous composition as a collection agent for the above minerals in an ore recovery process.A process for the separation of zinc values from lead values from an ore comprising both is provided by employing an alkali metal alkyl trithiocarbonate compound as a collection agent for zinc.In addition, both a composition and process are provided for the recovery of the values of iron, copper, and lead from ores comprising these values. The composition consists essentially of a dispersant and an impure form of an alkali metal alkyl trithiocarbonate compound. The process comprises employing this composition as a collection agent for the above minerals in an ore recovery process.

    Abstract translation: 提供了一种组合物和方法,用于从包含这些矿物硫化物的矿石中回收锌,钼,铜,铅,铁(黄铁矿)和含铁少量的金或铀或两者的值。 含水组合物是碱金属烷基三硫代碳酸酯化合物的不纯形式。 该方法包括在矿石回收方法中使用所述含水组合物作为上述矿物的收集剂。 通过使用碱金属烷基三硫代碳酸酯化合物作为锌的收集剂,提供锌值与来自含有矿石的矿石的铅值的方法。 此外,提供组合物和方法用于从包含这些值的矿石中回收铁,铜和铅的值。 该组合物基本上由分散剂和不纯形式的碱金属烷基三硫代碳酸酯化合物组成。 该方法包括在矿石回收方法中采用该组合物作为上述矿物的收集剂。

    Flocculating reagents
    5.
    发明授权
    Flocculating reagents 失效
    絮凝剂

    公开(公告)号:US4415458A

    公开(公告)日:1983-11-15

    申请号:US350372

    申请日:1982-02-19

    Applicant: Pearl M. Klein

    Inventor: Pearl M. Klein

    Abstract: Cost effective and environmentally acceptable reagents and a method for flocculating fine particles from liquid suspensions are provided. A method for selectively flocculating fine particles from a slurry is also provided. The reagents comprise orange peel extract, corn husk extract and mixtures thereof. The method generally comprises the step of adding a reagent to a suspension of fine particles, mixing the combination of reagent and suspension and allowing the flocculated fine particles to settle out of suspension.

    Abstract translation: 提供了成本有效和环境可接受的试剂以及从液体悬浮液中絮凝细颗粒的方法。 还提供了用于从浆料中选择性地絮凝细颗粒的方法。 试剂包括橙皮提取物,玉米壳提取物及其混合物。 该方法通常包括将试剂添加到细颗粒的悬浮液中,混合试剂和悬浮液的组合并使絮凝的细颗粒沉淀出悬浮液的步骤。

    Process for separating copper and iron minerals from molybdenite
    6.
    发明授权
    Process for separating copper and iron minerals from molybdenite 失效
    从辉钼矿中分离铜和铁矿物的工艺

    公开(公告)号:US4317543A

    公开(公告)日:1982-03-02

    申请号:US211470

    申请日:1980-11-28

    Inventor: Juan P. Olivares

    Abstract: A process for separating molybdenite from copper and iron ores is disclosed. A copper concentrate containing molybdenite is treated during an attritioning stage with a surfactant which is an alkyl ester of sodium and/or calcium succinic or succinamic acids and a molybdenite concentrate is recovered by flotation. The molybdenite concentrate contains at least 90% of the original molybdenite and less than 5% of the undesirable ores.

    Abstract translation: 公开了一种从铜和铁矿石中分离辉钼矿的方法。 含有辉钼矿的铜精矿在磨耗阶段用表面活性剂进行处理,表面活性剂是琥珀酸或琥珀酸钠和/或钙的烷基酯,通过浮选回收辉钼矿精矿。 辉钼矿浓缩物含有至少90%的原始辉钼矿和少于5%的不需要的矿石。

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