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A novel sequential process of bioleaching and chemical leaching for dissolving Ni, V, and Mo from spent petroleum refinery catalyst

机译:一种新的生物浸出和化学浸出顺序过程,用于从炼油厂废催化剂中溶解镍,钒和钼

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摘要

Two step leaching experiments were carried out to extract nickel, vanadium, and molybdenum present in spent refinery catalyst. A bioleaching process was applied in the first step. Pulp density, initial Fe(II) concentration, initial pH, particle size, and temperature were varied to optimize the bioleaching process. Ni, V, and Mo were leached out with maximum recoveries of 97%, 92% and 53%, respectively, at an optimized bioleaching condition of initial ferrous ion of 2 g/L, initial pH of 2, pulp density of 10% (w/v), particle size of (—106+45) urn, and a temperature of 35 °C. As the Mo leaching rate was very low, a second leaching step for the bioleached residue was applied with different concentrations of (NH_4)_2CO_3, Na_2CO_3, or H_2SO_4. The second step leaching was optimum at a concentration of 30 g/L (NH_4)_2CO_3 with respect to Mo extraction. The rate of Mo dissolution with respect to concentration of lixiviant in the second leaching step was evaluated. The percentages of Ni, V, and Mo leached were 97%, 97% and 99%, respectively, by combining the first step under optimized conditions and the second step with 30 g/L (NH_4)_2CO_3.
机译:进行了两步浸出实验,以提取废炼厂催化剂中存在的镍,钒和钼。第一步应用了生物浸出工艺。纸浆密度,初始Fe(II)浓度,初始pH,粒径和温度均发生变化,以优化生物浸出过程。在2 g / L的初始亚铁离子,2的初始pH值,纸浆密度为10%的最佳生物浸出条件下,Ni,V和Mo的最大回收率分别为97%,92%和53%。 w / v),(-106 + 45)的粒径和35°C的温度。由于Mo的浸出率非常低,因此对生物浸出残渣进行了第二步浸出步骤,其中添加了不同浓度的(NH_4)_2CO_3,Na_2CO_3或H_2SO_4。相对于Mo萃取,第二步浸出最佳浓度为30 g / L(NH_4)_2CO_3。在第二浸出步骤中,评估了相对于浸滤剂浓度的Mo溶解速率。通过在优化条件下将第一步与第二步与30 g / L(NH_4)_2CO_3结合,可以分别将Ni,V和Mo浸出的百分比分别为97%,97%和99%。

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