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Development of chemical separation processes for the treatment and monitoring of metallic cations and oxoanions in polluted waters

机译:化学分离工艺的开发,用于处理和监测污水中的金属阳离子和氧阴离子

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摘要

The chemical contamination of natural waters is a global problem with a worldwide impact. Considering the relevance of this problem, this thesis is intended, on one hand, to develop different separation/preconcentration techniques based on membranes ability to permeate anions for the transport of toxic oxyanions of chromium(VI) and arsenic contained in aqueous matrices. In particular, we have investigated supported liquid membranes and polymer inclusion membranes, both of which contain the commercial quaternary ammonium salt Aliquat 336 as a carrier, as well as commercial anion exchange membranes. On the other hand, we have focused on the development of chemical sensors to facilitate the monitoring of several metals from different aqueous matrices. Thus, a selective optical sensor for Cr(VI) based on polymeric membranes containing Aliquat 336 as an ionophore has been designed. Additionally, mercury-based screen-printed electrodes have been evaluated for for cadmium, lead, copper and zinc detection.
机译:天然水的化学污染是一个全球性的问题,具有世界范围的影响。考虑到该问题的相关性,一方面,本论文旨在基于膜渗透阴离子的能力开发不同的分离/预浓缩技术,以传输水中基质中所含铬(VI)和砷的有毒含氧阴离子。尤其是,我们研究了支持的液体膜和聚合物夹杂膜,它们均包含商业季铵盐Aliquat 336作为载体,以及商业阴离子交换膜。另一方面,我们专注于化学传感器的开发,以促进对不同水性基质中几种金属的监测。因此,基于包含Aliquat 336作为离子载体的聚合物膜,设计了一种用于Cr(VI)的选择性光学传感器。此外,已经对汞基丝网印刷电极进行了镉,铅,铜和锌检测的评估。

著录项

  • 作者

    Güell Martí Raquel;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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