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首页> 外文期刊>Separation and Purification Technology >Bioleaching of heavy metals from a petroleum spent catalyst using Acidithiobacillus thiooxidans in a slurry bubble column bioreactor
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Bioleaching of heavy metals from a petroleum spent catalyst using Acidithiobacillus thiooxidans in a slurry bubble column bioreactor

机译:在浆液鼓泡塔生物反应器中使用硫代酸性硫杆菌从石油废催化剂中生物浸出重金属

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In this attempt recovery of heavy metals from a hydrocracking spent catalyst was studied in a slurry bubble column bioreactor using Acidithiobacillus thiooxidans. Firstly adaptation of microorganisms to a spent catalyst was performed in a shaking flask. In the next stage the experiments were done accordance with a central composite design to find the optimal conditions; the three factors of particle size, pulp density, and aeration rate were chosen for examination. A full quadratic as well as two reduced cubic models were established to identify the relationship between the percentage of metals recovered and the variables. The optimal values of variables were a pulp density of 0.9% (w/v), particle size of 60.7 μm, and aeration rate of 209 ml/min to obtain simultaneous maximum recovery of three metals. The results showed that at optimal conditions maximum extraction of 87% ± 5.5% Mo, 37% ± 2.6% Ni and 15% ± 1.3% Al were achieved after only 7 days of batch processing in the bioreactor. The recovery of these metals can decrease the environmental impact of the waste catalysts and according to the results of this research slurry bubble columns, due to decrease the time of bioleaching process, can be further used for industrial purposes.
机译:在该尝试中,在使用硫代酸性氧化硫杆菌的淤浆鼓泡塔生物反应器中研究了从加氢裂化废催化剂中回收重金属的方法。首先,在摇瓶中使微生物适应废催化剂。在下一阶段,根据中央复合设计进行实验以找到最佳条件。选择了颗粒大小,纸浆密度和通气速率这三个因素进行检查。建立了一个完整的二次模型和两个简化的立方模型,以识别回收的金属百分比与变量之间的关系。变量的最佳值是纸浆密度为0.9%(w / v),粒径为60.7μm,通气率为209 ml / min,以同时获得三种金属的最大回收率。结果表明,在最佳条件下,在生物反应器中分批处理仅7天后,最大提取量为87%±5.5%Mo,37%±2.6%Ni和15%±1.3%Al。这些金属的回收可以减少废催化剂对环境的影响,并且根据该研究的结果,由于减少了生物浸出过程的时间,浆料鼓泡塔可以进一步用于工业目的。

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