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Fluoride toxicity in a chalcocite bioleach heap process

机译:球矾石生物浸出堆过程中的氟化物毒性

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The importance of comprehensive laboratory evaluation for development of an ore body to commercial processing using biohydrometallurgy cannot be understated. Laboratory evaluation for a biohydrometallurgical process must include the microbiological component and definition of operating parameters for the engineers to design the commercial plant. Failure to meet commercial production at a mine site can be a consequence of incomplete understanding of biohydrometallurgical technologies for processing a specific ore. One example is the inability of a copper bioleach process to meet the design criteria in part because of lack of sufficient testing to demonstrate the ramifications of fluoride toxicity to the microbial component of the bioleach process. Laboratory research has demonstrated toxicity of low levels of fluoride to Acidithiobacillus species. However, laboratory determined toxicity values are not always relevant to field conditions at commercial bioleach operations. This is the case with fluoride toxicity where complexing reactions increase the amount of fluoride required for toxicity. Consequently, the toxic fluoride concentrations at field sites can be significantly higher than toxic levels reported in the laboratory, but still achieve concentration inhibitory for the microorganisms.
机译:不能低估进行全面实验室评估对于使用生物湿法进行矿石加工到商业加工的重要性。生物湿法冶金过程的实验室评估必须包括微生物成分和操作参数的定义,以便工程师设计商业工厂。在矿场无法达到商业生产可能是由于对用于处理特定矿石的生物湿法冶金技术的不完全了解。一个例子是铜生物浸出工艺无法满足设计标准,部分原因是缺乏足够的测试来证明氟化物毒性对生物浸出工艺中微生物成分的影响。实验室研究表明,低水平的氟化物对酸性硫杆菌属具有毒性。但是,实验室测定的毒性值并不总是与商业生物浸出操作中的田间条件相关。氟化物毒性就是这种情况,其中络合反应会增加毒性所需的氟化物数量。因此,野外场所的有毒氟化物浓度可能大大高于实验室报告的有毒水平,但仍能抑制微生物的浓度。

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