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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Sustainable and Efficient Recovery of Tungsten from Wolframite in a Sulfuric Acid and Phosphoric Acid Mixed System
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Sustainable and Efficient Recovery of Tungsten from Wolframite in a Sulfuric Acid and Phosphoric Acid Mixed System

机译:从硫酸和磷酸混合系统中的钨酸盐可持续和有效地回收钨

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The innovative technology of coleaching scheelite concentrates by a mixture of sulfuric acid and phosphoric acid is an environmentally friendly and low-cost technology. Although the world's first production line for continuous scheelite decomposition has been implemented in recent years, it remains difficult to digest wolframite effectively. To reveal the origin for this behavior and to improve the wolframite leaching process, the leaching mechanism for synthesized and natural wolframite was investigated in this work. The results indicate that synthesized wolframite obtained after the calcination process has a similar crystal structure to natural wolframite and that changes in the cell parameters of the synthesized wolframite are related to the changes in its leaching efficiency. It was also found that the synthesized ferberite is more difficult to leach than the synthesized huebnerite, in agreement with the observed strong relationship between the decomposition (leaching efficiency) of natural wolframite and its Fe/Mn ratio. In addition, a mechanical activation method was used to improve the leaching process; it was demonstrated that the leaching efficiency of wolframite is increased due to the generation of defects in the wolframite crystal lattice, while the leaching efficiency of wolframite concentrates with greater ferberite content remains unacceptable. With the effect of added Ca(OH)(2) in the grinding process, the wolframite concentrates with greater ferberite content were found to be converted into scheelite, which enabled one to obtain a satisfactory leaching efficiency. This study provides an effective countermeasure to make the sulfuric acid and phosphoric acid system suitable for the decomposition of wolframite and scheelite-wolframite mixed ores.
机译:通过硫酸和磷酸的混合物进行植物植物浓缩物的创新技术是一种环保和低成本的技术。虽然近年来,世界上第一款用于连续的白钨矿分解的生产线,但有效地消化Wolframite仍然难以消化。为了揭示这种行为的起源和改善沃尔氟酯浸出过程,在这项工作中研究了合成的合成和天然狼间的浸出机制。结果表明,在煅烧过程之后获得的合成蒿酸盐与天然狼,并且合成的Wolframite的细胞参数的变化与浸出效率的变化有关。还发现合成的青霉素比合成的Huebnite更难以浸出,同意观察到天然蒿类分解(浸出效率)与其Fe / Mn比之间的分解(浸出效率)之间的强烈关系。此外,使用机械活化法来改善浸出过程;据证明,由于旱草晶石晶格中的缺陷产生,旱草酸盐的浸出效率增加,而具有更大的比尔酸盐含量的Wolframite浓缩物的浸出效率仍然是不可接受的。随着Ca(O​​H)(2)在研磨过程中的作用,发现具有更大的青霉菌素含量的Wolframite浓缩物被转化为单壳石,使得能够获得令人满意的浸出效率。该研究提供了一种有效的对策,使硫酸和磷酸系统适合于分解Wolframite和Schelite-Wolframite混合矿石。

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