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Removal of humic acid from water using adsorption coupled with electrochemical regeneration

机译:吸附与电化学再生相结合从水中去除腐殖酸

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摘要

A novel and economic waste water treatment technology comprised of adsorption coupled with electrochemical regeneration was introduced at the University of Manchester in 2006. An electrically conducting adsorbent material called Nyex™ 1000 (Graphite intercalation based material) was developed for the said purpose. This adsorbent material delivered significantly lower adsorption capacity for the removal of a number of organic pollutants. With the aim to expand the scope of newly developed adsorbent material called Nyex™ 2000, we studied the adsorption of humic acid followed by electrochemical regeneration. Nyex™ 2000 is a highly electrically conducting material with an adsorption capacity almost twice that of Nyex™ 1000 (intercalation based graphite compound) for humic acid. The adsorption of humic acid onto both Nyex™ adsorbents was found to be fast enough keeping almost the same kinetics with approximately 50% of the adsorption capacity being achieved within the first twenty minutes. The parameters affecting the regeneration efficiency, including the treatment time, charge passed and current density, were investigated. The regeneration efficiency at around 100% for Nyex™ 1000 & 2000 adsorbents saturated with humic acid was obtained using the charge passed of 8 and 22 Cg−1 at a current density of 7mA cm−2 during a treatment time of 30minutes, respectively.
机译:曼彻斯特大学于2006年引入了一种新颖的经济型废水处理技术,该技术包括吸附与电化学再生相结合。为此,开发了一种名为Nyex™1000(石墨嵌入基材料)的导电吸附材料。这种吸附剂材料去除大量有机污染物的吸附能力大大降低。为了扩大称为Nyex™2000的新开发的吸附材料的范围,我们研究了腐殖酸的吸附,然后进行电化学再生。 Nyex™2000是一种高导电性材料,对腐殖酸的吸附能力几乎是Nyex™1000(基于插层的石墨化合物)的两倍。发现腐殖酸在两种Nyex™吸附剂上的吸附速度足够快,可以保持几乎相同的动力学,在最初的20分钟内可达到约50%的吸附容量。研究了影响再生效率的参数,包括处理时间,电荷通过量和电流密度。在30分钟的处理时间内,分别使用8和22 Cg-1的电荷在7mA cm-2的电流密度下通过的电荷,可使腐殖酸饱和的Nyex™1000和2000吸附剂在100%左右的再生效率。

著录项

  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第7期|1415-1422|共8页
  • 作者单位

    School of Chemical Engineering and Analytical Science University of Manchester">(166);

    School of Chemical Engineering and Analytical Science University of Manchester">(166);

    Department of Chemical and Petroleum Engineeirng University of Calgary">(266);

    Arvia Technology Limited Daresbury Innovation Centre Keckwick Lane">(366);

  • 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

  • 入库时间 2022-08-18 00:01:26

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