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首页> 外文期刊>Journal of Hazardous Materials >Bioleaching of spent hydro-processing catalyst using acidophilic bacteria and its kinetics aspect
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Bioleaching of spent hydro-processing catalyst using acidophilic bacteria and its kinetics aspect

机译:嗜酸菌对废加氢催化剂的生物浸出及其动力学方面

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Bioleaching of metals from hazardous spent hydro-processing catalysts was attempted in the second stage after growing the bacteria with sulfur in the first stage. The first stage involved transformation of elemental sulfur particles to sulfuric acid through an oxidation process by acidophilic bacteria. In the second stage, the acidic medium was utilized for the leaching process. Nickel, vanadium and molybdenum contained within spent catalyst were leached from the solid materials to liquid medium by the action of sulfuric acid that was produced by acidophilic leaching bacteria. Experiments were conducted varying the reaction time, amount of spent catalysts, amount of elemental sulfur and temperature. At 50 g/L spent catalyst concentration and 20 g/L elemental sulfur, 88.3% Ni, 46.3% Mo, and 94.8% V were recovered after 7 days. Chemical leaching with commercial sulfuric acid of the similar amount that produced by bacteria was compared. Thermodynamic parameters were calculated and the nature of reaction was found to be exothermic. Leaching kinetics of the metals was represented by different reaction kinetic equations, however, only diffusion controlled model showed the best correlation here. During the whole process Mo showed low dissolution because of substantiate precipitation with leach residues as MoO_3. Bioleach residues were characterized by EDX and XRD.
机译:在第一阶段用硫使细菌繁殖后,第二阶段尝试从危险的废加氢处理催化剂中生物浸出金属。第一步涉及通过嗜酸性细菌的氧化过程将元素硫颗粒转化为硫酸。在第二阶段,将酸性介质用于浸出过程。废催化剂中所含的镍,钒和钼在嗜酸浸出细菌产生的硫酸作用下从固体材料浸出到液体介质中。进行实验以改变反应时间,废催化剂的量,元素硫的量和温度。在废催化剂浓度为50 g / L和元素硫为20 g / L的情况下,在7天后回收了88.3%的Ni,46.3%的Mo和94.8%的V。比较了用与细菌产生的类似量的商业硫酸进行的化学浸出。计算了热力学参数,发现反应的性质是放热的。金属的浸出动力学由不同的反应动力学方程式表示,但是,只有扩散控制模型显示出最佳的相关性。在整个过程中,Mo的溶解度较低,这是因为有大量的浸出残渣,MoO_3充分沉淀。通过EDX和XRD对生物沥滤残渣进行了表征。

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