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Photoelectrocatalytic degradation of acid dye using Ni-TiO_2 with the energy supplied by solar cell: Mechanism and economical studies

机译:Ni-TiO_2结合太阳能电池提供的能量光电催化降解酸性染料:机理与经济性研究

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摘要

This paper reports an investigation into the effect of a number of operating factors on the removal of Acid Red 88 from an aqueous solution through photoelectrocatalysis: photocatalyst dose, dye concentration, pH, bias potential, and electrolyte concentration. The photocatalyst was Ni-TiO_2 applied in suspension to the solution to achieve a larger catalyst surface area. The optimum values for photocatalyst dose, dye concentration, and electrolyte concentration turned out to be 0.6 mg L~(-1), 50 mg L~(-1), and 5 mg L~(-1), respectively. Also, the best pH was found to be 7, and bias potential proved to be best at 1.6 V. The aqueous solution was characterized for its COD and TOC. Photocatalyst efficiency was evaluated using SEM and XRD techniques. The characterization of the post-treatment product using FT-IR, HPLC, and GC-MS studies revealed intermediate compounds. A pathway was proposed for the degradation of the dye. The energy required by the experiment was supplied by solar cells, meaning the money that would have otherwise been spent on electricity was saved. Cost analysis was also done for the treatment process.
机译:本文报告了一项研究,探讨了多种操作因素对通过光电催化从水溶液中去除酸性红88的影响:光催化剂剂量,染料浓度,pH,偏压电势和电解质浓度。光催化剂是将Ni-TiO_2悬浮在溶液中,以获得更大的催化剂表面积。最佳光催化剂剂量,染料浓度和电解质浓度的最佳值分别为0.6 mg L〜(-1),50 mg L〜(-1)和5 mg L〜(-1)。另外,发现最佳的pH为7,并且在1.6V下证明偏置电位最佳。该水溶液的COD和TOC为特征。使用SEM和XRD技术评估光催化剂效率。使用FT-IR,HPLC和GC-MS研究对后处理产品进行表征,发现了中间化合物。提出了降解染料的途径。实验所需的能量由太阳能电池提供,这意味着节省了原本可以花在电力上的钱。还对治疗过程进行了成本分析。

著录项

  • 来源
    《Journal of Environmental Management》 |2013年第30期|210-219|共10页
  • 作者单位

    Department of Environmental Research, Institute for Color Science and Technology, P.O. Box 16765-654, Tehran, Iran;

    Department of Chemistry, Faculty of Science, Islamic Azad University, North Tehran Branch, P.O. Box 19136, Tehran, Iran;

    Department of Chemistry, Faculty of Science, Imam Khomeini International University, P.O. Box 288, Qazvin, Iran;

    Department of Chemistry, Faculty of Science, Islamic Azad University, North Tehran Branch, P.O. Box 19136, Tehran, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acid Red 88; Photoelectrocatalysis; Ni-TiO_2; Solar cell; Cost analysis;

    机译:酸性红88;光电催化;Ni-TiO_2;太阳能电池;成本分析;

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