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Box-Behnken Design Application to Study Leaching of Pyrolusite from Manganese Mining Residue Using Olive Mill Wastewater as Reductant

机译:Box-Behnken设计应用在研究以橄榄磨废水为还原剂的锰矿渣中硫铁矿的浸出研究

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The leaching capacity of olive mill wastewater (OMW) for pyrolusite mine tailings (MnO2) was evaluated using the Box-Behnken experimental design of response surface methodology. The selected test parameters include the concentration of sulfuric acid, the OMW dosage chemical oxygen demand (COD), the solid/liquid ratio S/L, and particle size. It was determined that the MnO2 dissolution increased with an increase in the sulfuric acid concentration and the OMW dosage, and with a decrease in the solid/liquid ratio. The particle size does not have significant influence on the manganese recovery. A quadratic polynomial model has been developed to predict the amount of manganese extraction from pyrolusite for other operating conditions that were not directly tested. The leaching ability was evaluated based on manganese recovery (Mn%) and the removal capability of chemical oxygen demand (COD%). The predicted values for the responses agreed well with experimental values; R (2) (correlation coefficient) values for Mn% and COD% were 0.9602 and 0.9687, respectively. Within the design space, the optimum conditions for the lixiviation of MnO2 in terms of manganese recovery and COD removal were established and include [H2SO4] of 3 mol L-1, OMW in range of 23 g L-1 to 25 g L-1 COD, and pulp density in range of 90 g L-1 to 100 g L-1. Under these conditions, the response values generated by the model are Mn% similar to 49% and COD% > 40%. These values show good agreement with those obtained in the validation test. This study has demonstrated that it is possible to use the olive mill wastewater as a reductant agent to recover manganese from a pyrolusite mining residue.
机译:使用响应面方法的Box-Behnken实验设计评估了橄榄磨厂废水(OMW)对软锰矿尾矿(MnO2)的浸出能力。选择的测试参数包括硫酸浓度,OMW化学需氧量(COD),固/液比S / L和粒径。可以确定,随着硫酸浓度和OMW剂量的增加以及固/液比的降低,MnO2的溶出度增加。粒度对锰回收率没有显着影响。已经开发了二次多项式模型来预测在未直接测试的其他操作条件下从软锰矿中提取锰的量。根据锰回收率(Mn%)和化学需氧量的去除能力(COD%)评估浸出能力。反应的预测值与实验值非常吻合; Mn%和COD%的R(2)(相关系数)值分别为0.9602和0.9687。在设计空间内,确定了锰回收和去除COD的MnO2浸出的最佳条件,包括3 mol L-1的[H2SO4],23 g L-1至25 g L-1的OMW。 COD,纸浆密度在90 g L-1至100 g L-1之间。在这些条件下,模型生成的响应值为Mn%(类似于49%)和COD%> 40%。这些值显示出与验证测试中获得的一致。这项研究表明,可以使用橄榄磨厂废水作为还原剂从软锰矿开采残渣中回收锰。

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