工业水处理 ›› 2022, Vol. 42 ›› Issue (6): 79-84. doi: 10.19965/j.cnki.iwt.2022-0013

• 可持续发展污水处理专题 • 上一篇    下一篇

基于H2O2绿色合成的电化学高级氧化处理苯酚废水

乔羽婕(), 李楠(), 安敬昆   

  1. 天津大学环境科学与工程学院,天津 300072
  • 收稿日期:2022-03-02 出版日期:2022-06-20 发布日期:2022-06-22
  • 作者简介:

    乔羽婕(1998— ),在读硕士。电话:15900305250,E-mail:

    李楠,博士,教授,E-mail:

  • 基金资助:
    国家自然科学基金项目(52070140)

Treatment of phenol wastewater by electrochemical advanced oxidation based on H2O2 green synthesis

Yujie QIAO(), Nan LI(), Jingkun AN   

  1. School of Environmental Science and Engineering,Tianjin University,Tianjin 300072,China
  • Received:2022-03-02 Online:2022-06-20 Published:2022-06-22

摘要:

H2O2因其安全高效的优势成为高级氧化技术中的常用氧化剂。在H2O2的众多合成方法中,电化学合成法是一种绿色环保的技术方法,但其生产过程中产生的废弃电解液存在污染环境的问题。本研究以可分解的NH4HCO3作为绿色电解液电化学原位合成H2O2,考察了电流密度、反应器构型、电解液浓度对H2O2合成的影响,探究了NH4HCO3与Na2SO4电解液的差异性。结果表明,在电流密度为20 mA/cm2、NH4HCO3电解液浓度为50 mmol/L时,单室、双室反应器可分别高效累积合成(237±2) mg/(L·h)和(327±2) mg/(L·h)的H2O2。同时本研究搭建了绿色高级氧化苯酚处理系统,利用UV催化在NH4HCO3电化学体系中原位合成的H2O2快速产生·OH,进而高效降解苯酚。结果表明,在低功率UV条件下,该系统单室反应器可在120 min内快速完全降解废水中的苯酚。

关键词: 高级氧化, 过氧化氢, NH4HCO3电解液, 苯酚废水

Abstract:

H2O2 is a common oxidant in advanced oxidation technology due to its high efficiency and safety advantages. Among the many synthesis methods of H2O2,the electrochemical synthesis of H2O2 is a green and environmentally friendly technology,but the waste electrolyte in the production process causes environmental pollution. In this work,decomposable NH4HCO3 was used as the electrolyte to in situ synthesize H2O2 electrochemically. Meanwhile,the effects of current density,reactor configuration and electrolyte concentration on the synthesis of H2O2 were investigated,and the differences between NH4HCO3 and Na2SO4 electrolytes were explored. The results showed that when the electrolyte concentration was 50 mmol/L,(237±2) mg/(L·h) and (327±2) mg/(L·h) H2O2 were synthesized respectively in the single-chamber and double-chamber reactors at 20 mA/cm2. At the same time,a green advanced oxidized phenol degradation system was built,UV was used to rapidly catalyze H2O2 to generate ·OH for degradation of phenol. The results showed that phenol could be degraded rapidly and completely in a single chamber reactor within 120 min under low power UV condition.

Key words: advanced oxidation, H2O2, NH4HCO3 electrolyte, phenol wastewater

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