首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >RESPONSE SURFACE METHODOLOGY AS OPTIMIZATION TOOL IN STUDY OF COMPETITIVE EFFECT OF Ca2+ AND Mg2+ IONS IN SORPTION PROCESS OF Co2+ BY DRIED ACTIVATED SLUDGE
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RESPONSE SURFACE METHODOLOGY AS OPTIMIZATION TOOL IN STUDY OF COMPETITIVE EFFECT OF Ca2+ AND Mg2+ IONS IN SORPTION PROCESS OF Co2+ BY DRIED ACTIVATED SLUDGE

机译:活化活性污泥吸附Co2 +过程中Ca2 +和Mg2 +离子竞争作用的响应表面法作为优化工具

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The aim of present study was to investigate biosorption of cobalt ions onto dried activated sludge (DAS) from ternary solution Co-Ca-Mg, as a function of pH and concentration of cobalt, calcium and magnesium via Box-Behnken design under Response surface methodology (RSM). The four parameters namely cobalt initial concentration of 2000 μmol/L, calcium initial concentration of 2000 μmol/L, magnesium initial concentration of 2000 μmol/L and pH of 5.5 were chosen as center points from the previous study of metal sorption process. The experimental data on sorption capacity Qexp of DAS for Co2+ ions were obtained by 60Co gamaspectrometry and fitted into a quadratic polynomial model using multiple regression analysis. The experimental Box-Behnken design revealed that biosorption of cobalt ions from ternary system increase with increasing pH of the system, initial cobalt concentration and magnesium concentration. Results showed also drastic inhibitory effect of increasing calcium concentration in sorption process of cobalt ions. The present study provides valuable information about combined effect of independent variables on sorption process from multivariable system and enables us to minimize number of needed experiments from 60 to 29.
机译:本研究的目的是通过响应表面方法通过Box-Behnken设计研究钴离子从三元溶液Co-Ca-Mg吸附到干燥的活性污泥(DAS)上的pH和钴,钙和镁浓度的函数。 (RSM)。从先前的金属吸附过程研究中,选择了钴初始浓度为2000μmol/ L,钙初始浓度为2000μmol/ L,镁初始浓度为2000μmol/ L和pH值这四个参数为中心。通过60Co伽马光谱法获得DAS对Co2 +离子的吸附能力Qexp的实验数据,并使用多元回归分析将其拟合为二次多项式模型。 Box-Behnken实验设计表明,三元系统对钴离子的生物吸附随着系统的pH值,初始钴浓度和镁浓度的增加而增加。结果还显示出增加钙浓度对钴离子吸附过程的显着抑制作用。本研究提供了有关自变量对多变量系统吸附过程的综合影响的有价值的信息,并使我们能够将所需实验的数量从60减少到29。

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