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Confluence of montmorillonite and Rhizobium towards the adsorption of chromium(vi) from aqueous medium

机译:Montmorillonite和Rhizobium从水性介质吸附铬(VI)的汇合

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摘要

Chromium in its hexavalent oxidation state is carcinogenic and wastewater from the electroplating industry is one of the principal sources of pollution. To reduce this toxicity and pave way towards environmental safety, a combination of environmental microbiology and chemistry is quite efficient for developing biosorbents to sequester chromium from waste water. Immobilization of Rhizobium in sodium montmorillonite provides a conducive environment to capture hexavalent chromium. Various characterization techniques such as FTIR, XPS and SEM-EDAX were performed and batch parameters such as pH variation, adsorbent dosage, concentration of metal ion and temperature were optimized. Pseudo second order kinetics coupled with a higher regression coefficient for Freundlich isotherm and a Langmuir adsorption capacity of 22.22 mg g(-1) was achieved for the adsorption process. The adsorption was enhanced by the charge interactions between the protonated clay-Rhizobium surface and Cr(vi) ions in acidic medium. The biosorbent was stable and easily regenerated using NaOH. Preliminary column studies were performed to test the efficiency of the developed biosorbent at higher volumes on a laboratory scale.
机译:其六价氧化态的铬是致癌和来自电镀工业的废水是主要污染源之一。为了减少这种毒性并铺设环境安全,环境微生物学和化学的组合对于开发生物吸收性来螯合来自废水中的铬螯合铬。在蒙脱石钠中的rhizobium提供了一种有利于捕获六价铬的有利环境。进行了各种表征技术,例如FTIR,XPS和SEM-EDAX,并优化了批次参数,例如pH变异,吸附剂剂量,金属离子浓度和温度。伪二阶动力学与Freundlich等温线的较高回归系数耦合,吸附过程实现了22.22mg G(-1)的朗米鲁吸附容量。通过酸性介质中的质子粘土 - 菱形表面和Cr(VI)离子之间的电荷相互作用增强了吸附。生物吸附剂稳定,易于使用NaOH再生。进行初步柱研究以在实验室规模上以较高的体积测试发达的生物吸附剂的效率。

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    《RSC Advances》 |2019年第49期|共12页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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