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首页> 外文期刊>Journal of Hazardous Materials >Exploring multi-metal biosorption by indigenous metal-hyperresistant Enterobacter sp. J1 using experimental design methodologies
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Exploring multi-metal biosorption by indigenous metal-hyperresistant Enterobacter sp. J1 using experimental design methodologies

机译:探索多金属生物吸附的本地金属超耐药肠杆菌。 J1使用实验设计方法

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摘要

A novel experimental design, combining mixture design and response surface methodology (RSM), was developed to investigate the competitive adsorption behavior of lead, copper and cadmium by an indigenous isolate Enterobacter sp. J1 able to tolerate high concentrations of a variety of heavy metals. Using the proposed combinative experimental design, two different experiment designs in a ternary metal biosorption system can be integrated to a succinct experiment and the number of experimental trials was markedly reduced from 38 to 26 by reusing the mutual experimental data. Triangular contour diagrams and triangular three-dimensional surface plots were generated to describe the ternary metal biosorption equilibrium data in mixture design systems. The results show that the preference of metal sorption of Enterobacter sp. J1 decreased in the order of Pb~(2+) > Cu~(2+) > Cd~(2+). The presence of other metals resulted in a competitive effect. The influence of the other two metals in ternary metal biosorption system can be easily determined by comparing the stray distance from the single metal biosorption. The behavior of competitive biosorption was successfully described and predicted using a combined Langmuir-Freundlich model along with new three-dimensional contour-surface plots.
机译:结合混合物设计和响应表面方法(RSM),开发了一种新颖的实验设计,以研究本地分离的肠杆菌属细菌对铅,铜和镉的竞争性吸附行为。 J1能够耐受高浓度的多种重金属。使用提出的组合实验设计,可以将三元金属生物吸附系统中的两个不同的实验设计集成到一个简洁的实验中,并且通过重用相互的实验数据,实验次数从38个显着减少到26个。生成了三角形轮廓图和三角形三维表面图,以描述混合物设计系统中的三元金属生物吸附平衡数据。结果表明,肠杆菌属细菌优先吸附金属。 J1按Pb〜(2+)> Cu〜(2+)> Cd〜(2+)的顺序递减。其他金属的存在导致竞争效果。通过比较距单一金属生物吸附的杂散距离,可以轻松确定其他两种金属在三元金属生物吸附系统中的影响。使用组合的Langmuir-Freundlich模型以及新的三维等值线图成功地描述了竞争性生物吸附的行为并对其进行了预测。

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