4.7 Article

Electrochemical treatment of reverse osmosis concentrate on boron-doped electrodes in undivided and divided cell configurations

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 279, 期 -, 页码 111-116

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2014.06.060

关键词

Electrochemical oxidation; Reverse osmosis brine; Boron-doped diamond; Electrolytic cell configuration; Vibrio fischeri bioassay

资金

  1. Australian Research Council [LP0989159, LP100100285]
  2. Veolia Water Australia
  3. Seqwater
  4. Magneto Special Anodes
  5. Queensland Health Forensic and Scientific Service
  6. Urban Water Security Research Alliance
  7. Western Australian Water Corporation
  8. Water Quality Research Australia
  9. Smart Future Fund of the Queensland Government
  10. Australian Research Council [LP0989159, LP100100285] Funding Source: Australian Research Council

向作者/读者索取更多资源

An undivided electrolytic cell may offer lower electrochlorination through reduction of chlorine/hypochlorite at the cathode. This study investigated the performance of electrooxidation of reverse osmosis concentrate using boron-doped diamond electrodes in membrane-divided and undivided cells. In both cell configurations, similar extents of chemical oxygen demand and dissolved organic carbon removal were obtained. Continuous formation of chlorinated organic compounds was observed regardless of the membrane presence. However, halogenation of the organic matter did not result in a corresponding increase in toxicity (Vibrio fischeri bioassay performed on extracted samples), with toxicity decreasing slightly until 10 Ah L-1, and generally remaining near the initial baseline-toxicity equivalent concentration (TEQ) of the raw concentrate (i.e., similar to 2 mg L-1). The exception was a high range toxicity measure in the undivided cell (i.e., TEQ-11 mg L-1 at 2.4 Ah L-1), which rapidly decreased to 4 mg L-1. The discrepancy between the halogenated organic matter and toxicity patterns may be a consequence of volatile and/or polar halogenated by-products formed in oxidation by OH center dot electrogenerated at the anode. The undivided cell exhibited lower energy compared to the divided cell, 0.25 kWh gCOD(-1) and 0.34 kWh gCOD(-1), respectively, yet it did not demonstrate any improvement regarding by-products formation. (C) 2014 Elsevier B.V. All rights reserved.

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