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首页> 外文期刊>Journal of hazardous, toxic and radioactive waste >Optimization of Arsenic Adsorption by Mill Scale-Derived Magnetite Particles Using Response Surface Methodology
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Optimization of Arsenic Adsorption by Mill Scale-Derived Magnetite Particles Using Response Surface Methodology

机译:利用响应面法测定磁铁矿颗粒的优化砷吸附

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This study focuses on the optimization and application of mill scale-derived magnetite particles for the adsorptive removal of arsenic (As) from groundwater. The reverse coprecipitation method is applied to synthesize the magnetite from the mill scale, a byproduct of the iron and steel industry. The independent variables (initial As concentration, pH, contact time, and adsorbent size) affecting the adsorption process were optimized by central composite design of the response surface methodology (RSM). The analysis of variance (ANOVA) results showed that all the independent variables significantly influenced the adsorption capacity. ANOVA analysis exhibited a good fit between the experimental values and the quadratic model predictions, thus resulting in R of 0.986. The P-value (<0.0001) displayed the significance of the model at 99% level. The P-values for pH, As(V) concentration, particle size, and contact time are determined as <0.0001, <0.0001, 0.0002, and 0.0009, respectively. The experimental optimization of batch adsorption parameters revealed 100% As(V) removal efficiency with pH 7, particle size 75 urn, 120 min contact time, and 550 ug/l initial concentration. At the maximum initial concentration (1,000 μg/l), the arsenic removal efficiency was 78% when the pH, particle size, and the contact time were 5, 45 urn, and 120 min, respectively. The reproducibility of adsorption experiments at higher concentration (1,000 μg/l) under optimal conditions confirmed the adsorption capacity 8.13 ±0.08 mg/g.
机译:该研究侧重于研磨型磁铁矿颗粒的优化和应用,用于从地下水中吸附砷(AS)的吸附除去。逆向共沉淀方法应用于从磨机规模合成磁铁矿,钢铁工业的副产品。通过响应表面方法(RSM)的中央复合设计,优化影响吸附过程的独立变量(初始浓度,pH,接触时间和吸附剂尺寸)。方差分析(ANOVA)结果表明,所有独立变量都显着影响了吸附能力。 ANOVA分析在实验值和二次模型预测之间表现出良好的拟合,从而导致r为0.986。 P值(<0.0001)显示模型在99%水平的显着性。 pH值的p值,作为(v)浓度,粒度和接触时间分别被确定为<0.0001,<0.0001,0.0002和0.0009。批量吸附参数的实验优化显示100%AS(v)用pH7,粒径75瓮,120分钟接触时间和550ug / L初始浓度的初始浓度。在最大初始浓度(1,000μg/ L),当pH,粒径和接触时间分别为5,45瓮和120分钟时,砷去除效率为78%。在最佳条件下在较高浓度(1,000μg/ L)下吸附实验的再现性证实了吸附能力8.13±0.08mg / g。

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