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首页> 外文期刊>The Korean journal of chemical engineering >Application of Doehlert experimental design for the optimization of cadmium biosorption in an aqueous solution by marine yeast biomass of Yatrowia Upolytica
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Application of Doehlert experimental design for the optimization of cadmium biosorption in an aqueous solution by marine yeast biomass of Yatrowia Upolytica

机译:Doehlert实验设计在优化解脂耶氏酵母海洋酵母生物量水溶液中镉生物吸附中的应用

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摘要

A cadmium biosorption process was optimized by varying three independent variables pH (4.5-7.5), initial cadmium ion concentration (10-30 mg L~(-1)), and Yarrowia lipolytica dosage (3-5 g L~(-1)) by using a Doehlert experimental design (DD) involving response surface methodology (RSM). For the maximum biosorption of cadmium ion in an aqueous solution by Y. Upolytica, a total of fifteen experimental runs were set and the experimental data fitted to the empirical second-order polynomial model of a suitable degree. The analysis of variance of the quadratic model demonstrates that the model was highly significant. Three-dimensional plots demonstrate relationships between the cadmium ion uptake with the paired variables (when other variable was kept at its optimal level), describing the behavior of biosorption system in a batch process. The model showed that cadmium uptake in aqueous solution was affected by all the three variables studied. The optimum values of the variables were found to be 6.43, 17.56 mg L~(-1) and 3.63 g L ~(-1) for pH, initial cadmium ion concentration and biomass dosage, respectively, at a contact time of 40 min. At these optimal conditions, the maximum percentage biosorption of cadmium was predicted to be 48.89. The experimental values were in good agreement with predicted values and the correlation coefficient was found to be 0.9985. It showed that both monolayer adsorption and intra-particle diffusion mechanisms were effective in the cadmium biosorption process. Therefore, it is apparent that the DD involving RSM not only gives valuable information on interactions between the variables but also leads to identification of feasible optimum values of the studied variables.
机译:通过改变三个独立变量pH(4.5-7.5),初始镉离子浓度(10-30 mg L〜(-1))和解脂耶氏酵母剂量(3-5 g L〜(-1))来优化镉的生物吸附过程。 ),使用涉及响应面方法(RSM)的Doehlert实验设计(DD)。为了通过Y. Upolytica对水溶液中镉离子的最大生物吸附,设置总共15个实验运行,并将实验数据拟合到合适程度的经验二阶多项式模型。对二次模型方差的分析表明,该模型非常重要。三维图显示了镉离子吸收与成对变量之间的关系(当其他变量保持在最佳水平时),描述了分批过程中生物吸附系统的行为。该模型表明,水溶液中镉的吸收受所研究的所有三个变量的影响。在40分钟的接触时间下,pH,初始镉离子浓度和生物量的变量的最佳值分别为6.43、17.56 mg L〜(-1)和3.63 g L〜(-1)。在这些最佳条件下,镉的最大生物吸附百分比预计为48.89。实验值与预测值吻合良好,相关系数为0.9985。结果表明,单层吸附和颗粒内扩散机制在镉生物吸附过程中均有效。因此,很明显,涉及RSM的DD不仅给出了变量之间相互作用的有价值的信息,而且还导致了对研究变量的可行最佳值的识别。

著录项

  • 来源
    《The Korean journal of chemical engineering》 |2013年第5期|1067-1075|共9页
  • 作者单位

    Department of Biotechnology, GUAM Institute of Technology, GITAM University, Gandhinagar, Rushikonda, Visakhapatnam 530 045, AP, India;

    Department of Environmental Studies, GITAM Institute of Sciences, GITAM University, Gandhinagar, Rushikonda, Visakhapatnam 530 045, AP, India;

    Department of Biotechnology, GUAM Institute of Technology, GITAM University, Gandhinagar, Rushikonda, Visakhapatnam 530 045, AP, India;

    Department of Biotechnology, GUAM Institute of Technology, GITAM University, Gandhinagar, Rushikonda, Visakhapatnam 530 045, AP, India;

    UGC Affairs & Research Activities, GITAM University, Gandhinagar, Rushikonda, Visakhapatnam 530 045, AP, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biosorption; doehlert experimental design; response surface methodology; Yarrowia Upolytica;

    机译:生物吸附杜勒特实验设计;响应面方法解脂耶氏酵母;

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