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New discovery of unavoidable ions source in chalcopyrite flotation pulp: Fluid inclusions

机译:黄铜矿浮选矿浆中不可避免离子源的新发现:流体包裹体

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This study aims to determine the presence of fluid inclusions, and investigate their types, structures, and compositions in natural pure chalcopyrite. The study also aims to measure the total concentrations of Cu (C_(CuT)) and Fe (C_(FeT)) released from the inclusions. Results indicate that large numbers of fluid inclusions with sizes ranging from a few to dozens of microns exist in the chalcopyrite, and that these fluid inclusions are isolated and concentrated. The fluid inclusions take on various shapes-long strip, oval shape, and irregular and exhibit a directional distribution along the chalcopyrite crystal growth zone. The inclusion body sizes fall between 3 and 60 urn, with lengths ranging from 3 μm to 50 urn and widths from 2 μm to 30 μm. The inclusions are rich in Cl~-, SO_4~(2-), Cu, Fe, and so on because they capture diagenesis fluid and mineralizing fluid during the ore-forming process. The compositions of inclusions are broken when released to solution through the grinding process. In the experimental conditions of 2 g chalcopyrite placed into 40 ml pure deionized water under an inert environment, C_(CuT) and C_(FeT) released from the inclusions reach concentrations of 5.79 × 10~(-6) and 17.20 × 10~(-5)mol/L, respectively. These values are much higher than those from the experimental dissolution under an inert environment (0.05 × 10~(-6) and 0.12 × 10~(-6) mol/L, respectively). Therefore, the release of Cu and Fe from the inclusions is the new source of Cu and Fe concentration in the solution. This finding sheds new light on the source of unavoidable ions in the flotation pulp. The residual position domain after the release of the inclusions causes the morphology difference in the chalcopyrite surface composition and roughness. Discovering that fluid inclusions are the new source of unavoidable ions in the flotation pulp is significant in the study of flotation theory and environmental geochemistry.
机译:这项研究旨在确定流体包裹体的存在,并研究其在天然纯黄铜矿中的类型,结构和组成。该研究还旨在测量从夹杂物中释放出的铜(C_(CuT))和铁(C_(FeT))的总浓度。结果表明,在黄铜矿中存在大量尺寸从几微米到几十微米不等的流体夹杂物,并且这些流体夹杂物被分离并浓缩。流体包裹体呈长条形,椭圆形和不规则形等各种形状,并沿黄铜矿晶体生长区显示方向分布。包涵体的大小在3至60微米之间,长度在3微米至50微米之间,宽度在2微米至30微米之间。夹杂物富含Cl〜-,SO_4〜(2-),Cu,Fe等,因为它们在成矿过程中捕获成岩流体和矿化流体。夹杂物的成分在通过研磨过程释放到溶液中时会破裂。在惰性环境下将2 g黄铜矿放入40 ml纯去离子水中的实验条件下,从夹杂物中释放出的C_(CuT)和C_(FeT)达到5.79×10〜(-6)和17.20×10〜( -5)mol / L。这些值比惰性环境下的实验溶出值高得多(分别为0.05×10〜(-6)mol / L和0.12×10〜(-6)mol / L)。因此,从夹杂物中释放的铜和铁是溶液中铜和铁浓度的新来源。这一发现为浮选纸浆中不可避免的离子源提供了新的思路。夹杂物释放后的残留位置域导致黄铜矿表面组成和粗糙度的形貌差异。在浮选理论和环境地球化学研究中,发现流体包裹体是浮选矿浆中不可避免的离子的新来源具有重要意义。

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