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Optimization of process parameters for the removal of chromium(VI) and nickel(II) from aqueous solutions by mixed biosorbents (custard apple seeds and Aspergillus niger) using response surface methodology

机译:利用响应面法优化混合生物吸附剂(苹果种子和黑曲霉)从水溶液中去除铬(VI)和镍(II)的工艺参数

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The mixture of custard apple seeds and Aspergillus niger was used as biosorbents for the removal of chromium(VI) and nickel(II) from the contaminated water. The batch biosorption process was carried out and it was influenced by the different operating parameters such as initial metal ion concentration, pH, temperature, and biomass loading. The essential process variables were optimized using response surface methodology (RSM) based on the central composite design (CCD) experiments. The ANOVA data obtained from the RSM studies were analyzed using a second-degree polynomial equation and the study of the determination of contour plots showed the interactions among the variables of the biosorption system. The optimum conditions for the removal of chromium(VI) was found to be: initial chromium(VI) concentration=100mg/L; pH 3.0; temperature=36 degrees C, and biosorbent loading=10g/L. At these optimized conditions, the maximum removal of chromium(VI) was found to be of 95.7%. The optimum conditions for the removal of nickel(II) was found to be: initial nickel(II) concentration=100mg/L; pH 5.6; temperature=30 degrees C, and biosorbent loading=10g/L. At these optimized conditions, the maximum removal of nickel(II) was found to be of 96.41%. The mixed biosorbents showed better adsorption properties towards the removal of chromium(VI) and nickel(II) ions from the aqueous solutions. These low-cost biosorption methods can be effectively adopted for the removal of metal ions from the industrial effluents.
机译:南美番荔枝种子和黑曲霉的混合物被用作生物吸附剂,用于从受污染的水中去除铬(VI)和镍(II)。进行了分批生物吸附过程,并受到不同操作参数(例如初始金属离子浓度,pH,温度和生物量负载)的影响。基于中央复合设计(CCD)实验,使用响应面方法(RSM)对基本过程变量进行了优化。使用二阶多项式方程分析了从RSM研究获得的ANOVA数据,等高线图测定的研究显示了生物吸附系统变量之间的相互作用。发现去除铬(VI)的最佳条件是:初始铬(VI)浓度= 100mg / L; pH值3.0;温度= 36℃,生物吸附剂负荷= 10g / L。在这些优化条件下,发现铬(VI)的最大去除率为95.7%。发现去除镍(II)的最佳条件是:初始镍(II)浓度= 100mg / L;初始镍浓度= 100mg / L。 pH值5.6;温度= 30℃,生物吸附剂负荷= 10g / L。在这些优化条件下,发现镍(II)的最大去除率为96.41%。混合的生物吸附剂对从水溶液中去除铬(VI)和镍(II)离子显示出更好的吸附性能。这些低成本的生物吸附方法可以有效地用于从工业废水中去除金属离子。

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