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    • 1. 发明申请
    • PROCESS TO INCREASE THE BIOLEACHING SPEED OF ORES OR CONCENTRATES OF SULFIDE METAL SPECIES, BY MEANS OF CONTINUOUS INOCULATION WITH LEACHING SOLUTION THAT CONTAINS ISOLATED MICROORGANISMS, WITH OR WITHOUT PRESENCE OF NATIVE MICROORGANISMS
    • 通过连续分析含有分离微生物的浸出溶液,或者不存在原生微生物的方法,提高硫化物金属物种的生物量或浓度的方法
    • US20080127779A1
    • 2008-06-05
    • US11862035
    • 2007-09-26
    • Pedro Antonio Morales CerdaRicardo Badilla Badilla Ohlbaum
    • Pedro Antonio Morales CerdaRicardo Badilla Badilla Ohlbaum
    • C22B3/18
    • C22B3/18C22B15/0071Y02P10/234Y02P10/236Y02P10/238
    • The invention publishes a process to increase the bioleaching speed of ores or concentrates of sulfide metal species in heaps, tailing dams, dumps, or other on-site operations. The process is characterized by the continuous inoculation of the ores or concentrates with isolated microorganisms of the Acidithiobacillus thiooxidans type, together with isolated microorganisms of the Acidithiobacillus ferrooxidans type, with or without native microorganisms, in such a way that the total concentration of microorganisms in the continuous inoculation flow is of around 1×107 cells/ml to 5,6×107 cells/ml. In particular, the invention publishes the continuous inoculation of Acidithiobacillus thiooxidans Licanantay DSM 17318 together with Acidithiobacillus ferrooxidans Wenelen DSM 16786 microorganisms, or with other native microorganisms at a concentration higher than 5×107 cells/ml. In addition to the inoculation of isolated bacteria, the invention includes the addition of oxidizing agents such as the ferric ion produced externally, together with nutrients in the shape of salts of ammonium, magnesium, iron, potassium, as well as air enriched continuously with carbon dioxide to promote bacterial action in the bioleaching process of ores or concentrates.
    • 本发明公开了一种增加堆积物,尾矿坝,垃圾场或其他现场操作中硫化物金属物质的矿石或精矿的生物浸出速度的方法。 该方法的特征在于用硫酸氧化硫酸杆菌类型的分离的微生物连续接种矿石或浓缩物,以及具有或不具有天然微生物的分离的氧化亚硫酸氧化亚铁杆菌的微生物,使得微生物的总浓度 连续接种流量约为1×10 7细胞/ ml至5×10 6细胞/ ml。 特别地,本发明公开了硫酸氧化硫杆菌Licanantay DSM 17318与酸性氧化硫杆菌Wenelen DSM 16786微生物或其它天然微生物以高于5×10 7细胞/ ml的浓度的连续接种。 除了接种分离的细菌外,本发明还包括加入氧化剂如外部产生的铁离子,以及铵,镁,铁,钾盐形式的营养物质,以及连续地用碳浓缩的空气 二氧化物以促进矿石或精矿的生物浸出过程中的细菌作用。
    • 3. 发明授权
    • Process to increase the bioleaching speed of ores or concentrates of sulfide metal species, by means of continuous inoculation with leaching solution that contains isolated microorganisms, with or without presence of native microorganisms
    • 通过连续接种含有分离的微生物的浸出溶液,有或没有天然微生物的存在,提高硫化物金属物质的矿石或浓缩物的生物浸出速度的方法
    • US07837760B2
    • 2010-11-23
    • US11862035
    • 2007-09-26
    • Pedro Antonio Morales CerdaRicardo Badilla Badilla Ohlbaum
    • Pedro Antonio Morales CerdaRicardo Badilla Badilla Ohlbaum
    • C22B15/00C22B3/18
    • C22B3/18C22B15/0071Y02P10/234Y02P10/236Y02P10/238
    • The invention publishes a process to increase the bioleaching speed of ores or concentrates of sulfide metal species in heaps, tailing dams, dumps, or other on-site operations. The process is characterized by the continuous inoculation of the ores or concentrates with isolated microorganisms of the Acidithiobacillus thiooxidans type, together with isolated microorganisms of the Acidithiobacillus ferrooxidans type, with or without native microorganisms, in such a way that the total concentration of microorganisms in the continuous inoculation flow is of around 1×107 cells/ml to 5,6×107 cells/ml. In particular, the invention publishes the continuous inoculation of Acidithiobacillus thiooxidans Licanantay DSM 17318 together with Acidithiobacillus ferrooxidans Wenelen DSM 16786 microorganisms, or with other native microorganisms at a concentration higher than 5×107 cells/ml. In addition to the inoculation of isolated bacteria, the invention includes the addition of oxidizing agents such as the ferric ion produced externally, together with nutrients in the shape of salts of ammonium, magnesium, iron, potassium, as well as air enriched continuously with carbon dioxide to promote bacterial action in the bioleaching process of ores or concentrates.
    • 本发明公开了一种增加堆积物,尾矿坝,垃圾场或其他现场操作中硫化物金属物质的矿石或精矿的生物浸出速度的方法。 该方法的特征在于用硫酸氧化硫酸杆菌类型的分离的微生物连续接种矿石或浓缩物,以及具有或不具有天然微生物的分离的氧化亚硫酸氧化亚铁杆菌的微生物,使得微生物的总浓度 连续接种流量约为1×10 7个细胞/ ml至5×10 6个细胞/ ml。 特别地,本发明与硫酸氧化硫杆菌Wenelen DSM 16786微生物或其他天然微生物以高于5×10 7个细胞/ ml的浓度连续接种硫酸氧化硫杆菌Licanantay DSM 17318。 除了接种分离的细菌外,本发明还包括加入氧化剂如外部产生的铁离子,以及铵,镁,铁,钾盐形式的营养物质,以及连续地用碳浓缩的空气 二氧化物以促进矿石或精矿的生物浸出过程中的细菌作用。