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Thermal Pre-Treatment of Polymetallic Nodules to Create Metal (Ni, Cu, Co)-Rich Individual Particles for Further Processing

机译:多金属结核的热预处理,以创建富含金属(Ni,Cu,Co)的单个颗粒,以进行进一步处理

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Polymetallic nodules are a potential source of industrially demanded metals such as Ni, Co, Cu, and Mo (up to 3 wt %). Even if there is no deep-sea mining of manganese nodules today, a forecasted gap between metal demand and supply as well as continuously high metal prices may make seabed mining economically viable in the future. Up to now, a well-established industrial-scale extraction method for manganese nodules has been missing. Therefore, the aim of this study is to explore how economically interesting metals can be extracted from the nodules in a cost- and energy-efficient way. Polymetallic nodules have a heterogeneous chemical and structural composition without individual metal-rich particles. The economically interesting metals are distributed between different mineral phases (Mn-Fe-(oxy)hydroxides) as well as different growth structures that are intergrown with each other on a nm?μm scale. Because of that a typical ore processing with the beneficiation of valuable particles is not feasible. The process presented here starts with a pyro-metallurgical pre-treatment of the polymetallic nodules, with the aim of creating artificial metal-rich (Ni, Cu, Co, Mo) particles with enrichment factors up to 10 compared to the original average metal contents. Afterwards, these particles should be beneficiated by conventional mineral processing steps to create a concentrate while reducing the mass stream in the process. The resulting metal particles can be further treated in conventional hydrometallurgical and/or pyro-metallurgical processes.
机译:多金属结核是工业上需要的金属(如Ni,Co,Cu和Mo(最高3 wt%))的潜在来源。即使今天没有在深海开采锰结核,金属的预期供需缺口以及持续不断的金属价格也可能使海底采矿在未来经济上可行。迄今为止,还缺少一种成熟的工业化锰结核提取方法。因此,本研究的目的是探索如何以经济高效的方式从结核中提取出经济上有意义的金属。多金属结核具有不均一的化学和结构组成,没有单个富金属颗粒。具有经济意义的金属分布在不同的矿物相(Mn-Fe-(氧)氢氧化物)之间,以及在nm?μm规模上相互生长的不同生长结构之间。因此,采用有价值的选矿进行典型的矿石加工是不可行的。这里介绍的过程从多金属结核的火法冶金预处理开始,目的是制造富金属因子(镍,铜,钴,钼)的人造颗粒,其富集系数比原始平均金属含量高10倍。 。然后,这些颗粒应通过常规的矿物加工步骤进行选矿,以产生精矿,同时减少过程中的质量流。所得的金属颗粒可以在常规的湿法冶金和/或火法冶金方法中进一步处理。

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