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Arsenic removal from drinking water by electrocoagulation using iron electrodes

机译:铁电极电凝去除饮用水中的砷

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摘要

Arsenic removal from drinking water was investigated using electrocoagulation (EC) followed by filtration. A sand filter was used to remove flocs generated in the EC process. Experiments were performed in a batch electrochemical reactor using iron electrodes with monopolar parallel electrode connection mode to assess their efficiency. The effects of several operating parameters on arsenic removal such as current density (1.5–9.0 mA cm−2), initial arsenic concentration (50–500 μg L−1), operating time (0–15 min), electrode surface area (266–665 cm2), and sodium chloride concentrations (0.01 and 0.02M) were examined. The EC process was able to decrease the residual arsenic concentration to less than 10 μg L−1. Optimum operating conditions were determined as an operating time of 5 min and current density of 4.5 mA cm−2 at pH of 7. The optimum electrode surface area for arsenic removal was found to be 266 cm2 taking into consideration cost effectiveness. The residual iron concentration increased with increasing residence time, and maximum residual iron value was measured as 287 μg L−1 for electrode surface area of 266 cm2. The addition of sodium chloride had no significant effect on residual arsenic concentration, but an increase in current density was observed.
机译:使用电凝(EC),然后过滤研究了饮用水中砷的去除。使用砂滤器去除EC工艺中产生的絮凝物。在使用单极平行电极连接模式的铁电极的批式电化学反应器中进行实验,以评估其效率。几个操作参数对除砷的影响,例如电流密度(1.5–9.0 mA cm-2),初始砷浓度(50–500μgL-1),操作时间(0–15分钟),电极表面积(266) –665 cm2)和氯化钠浓度(0.01和0.02M)进行了检查。 EC工艺能够将残留砷浓度降低至小于10μgL-1。确定最佳操作条件为5分钟的操作时间和pH为7时电流密度为4.5 mA cm-2。考虑到成本效益,发现用于去除砷的最佳电极表面积为266 cm2。残留铁浓度随停留时间的增加而增加,对于266 cm2的电极表面积,最大残留铁值为287μgL-1。氯化钠的添加对残留砷浓度没有显着影响,但观察到电流密度增加。

著录项

  • 来源
    《Korean Journal of Chemical Engineering》 |2013年第10期|1889-1895|共7页
  • 作者单位

    Department of Environmental Engineering Dokuz Eylul University">(1);

    Department of Environmental Engineering Pamukkale University">(2);

    Department of Environmental Engineering Dokuz Eylul University">(1);

  • 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 00:01:29

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