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Calcium alginate entrapped Eupatorium adenophorum Sprengel stems powder for chromium(VI) biosorption in aqueous mediums

机译:海藻酸钙包埋的紫茎泽兰Sprengel干粉在水介质中对铬(VI)的生物吸附

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摘要

A novel biosorbent, Eupatorium adenophorum Sprengel-alginate beads was used for chromium(VI) biosorption from aqueous solutions. Biosorption process was optimized at pH 2.0, biomass concentration 1.0 g/L, contact time 60 min, and temperature 30 oC respectively. Maximum uptake capacity of Cr(VI) was calculated at 28.011 mg/g. It was found that the overall biosorption process was best described by pseudo second-order kinetics with high correlation coefficient values. Intraparticle diffusion model suggested that Cr(VI) biosorption may proceed within multiple steps. Data obtained from the batch studies confirmed well to the Langmuir, Temkin, and Hill-der Boer isotherm models. Scatchard plot analysis further supported the mono-layer biosorption of Cr(VI) ions on Eupatorium adenophorum Sprengel-alginate beads as described by Langmuir isotherm model. Numerical values of E obtained from Dubinin-Radushkevich isotherm model identified the physisorption as predominant mechanism for Cr(VI) biosorption. The negative values of ΔGo confirmed the spontaneous and feasibility nature, whereas positive value of ΔHo showed the endothermic nature of biosorption process. Positive value of ΔSo indicated an increase in the randomness at the solid/solution interface during the biosorption process. The endothermic nature of Cr(VI) biosorption was also described by Temkin isotherm model. The results indicated that Cr(VI) biosorption was not significantly affected by the presence of co-ions at lower concentrations. Desorption of Cr(VI) ions from metal-loaded Eupatorium adenophorum-alginate beads was observed at 92.091% with 0.5 M HNO3 solution in solid to liquid ratio of 1.0 g/L.
机译:一种新型的生物吸附剂紫茎泽兰Sprengel-藻酸盐珠用于从水溶液中吸附铬(VI)。分别在pH 2.0,生物质浓度1.0 g / L,接触时间60 min和温度30℃下优化了生物吸附过程。 Cr(VI)的最大吸收量经计算为28.011 mg / g。已发现,通过具有较高相关系数值的伪二级动力学可以最好地描述整个生物吸附过程。颗粒内扩散模型表明,Cr(VI)的生物吸附可能在多个步骤中进行。从批处理研究获得的数据很好地证实了Langmuir,Temkin和Hill-der Boer等温线模型。 Scatchard图分析进一步支持了兰格米尔等温线模型所描述的紫茎泽兰Sprengel-藻酸盐微珠对Cr(VI)离子的单层生物吸附。从Dubinin-Radushkevich等温线模型获得的E数值确定了物理吸附是Cr(VI)生物吸附的主要机理。 ΔG o 的负值证实了自发性和可行性,而ΔH o 的正值表明了生物吸附过程的吸热性。 ΔS o 的正值表示在生物吸附过程中固/溶液界面的随机性增加。 Temkin等温模型也描述了Cr(VI)生物吸附的吸热特性。结果表明,较低浓度的共离子对Cr(VI)的生物吸附作用没有显着影响。在0.5 g HNO3溶液中,固液比为1.0 g / L时,金属负载的紫茎泽兰-海藻酸盐珠粒中的Cr(VI)离子解吸率为92.091%。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Mahendra Aryal;

  • 作者单位
  • 年(卷),期 2012(14),8
  • 年度 2012
  • 页码 e0213477
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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