Improving the Treatment Efficiency and Lowering the Operating Costs of Electrochemical Advanced Oxidation Processes

被引:14
|
作者
Muddemann, Thorben [1 ]
Neuber, Rieke [2 ]
Haupt, Dennis [3 ]
Grassl, Tobias [2 ]
Issa, Mohammad [3 ]
Bienen, Fabian [4 ]
Enstrup, Marius [1 ]
Moller, Jonatan [1 ]
Matthee, Thorsten [2 ]
Sievers, Michael [3 ]
Kunz, Ulrich [1 ]
机构
[1] Tech Univ Clausthal, Inst Chem & Elect Proc Engn, D-38678 Clausthal Zellerfeld, Germany
[2] CONDIAS GmbH, D-25524 Itzehoe, Germany
[3] Tech Univ Clausthal, CUTEC Res Ctr Environm Technol, D-38678 Clausthal Zellerfeld, Germany
[4] German Aerosp Ctr, Inst Engn Thermodynam, D-70569 Stuttgart, Germany
关键词
boron-doped diamond; EAOP(R); electrochemical cell; gas diffusion electrode; hydrogen peroxide; ozonation; peroxone; wastewater treatment; WASTE-WATER TREATMENT; BORON-DOPED DIAMOND; PHENOL; DEGRADATION; TECHNOLOGIES; ELECTRODE; ELECTROOXIDATION; GROUNDWATER; REACTORS; REMOVAL;
D O I
10.3390/pr9091482
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Electrochemical advanced oxidation processes (EAOP(R)) are promising technologies for the decentralized treatment of water and will be important elements in achieving a circular economy. To overcome the drawback of the high operational expenses of EAOP(R) systems, two novel reactors based on a next-generation boron-doped diamond (BDD) anode and a stainless steel cathode or a hydrogen-peroxide-generating gas diffusion electrode (GDE) are presented. This reactor design ensures the long-term stability of BDD anodes. The application potential of the novel reactors is evaluated with artificial wastewater containing phenol (COD of 2000 mg L-1); the reactors are compared to each other and to ozone and peroxone systems. The investigations show that the BDD anode can be optimized for a service life of up to 18 years, reducing the costs for EAOP(R) significantly. The process comparison shows a degradation efficiency for the BDD-GDE system of up to 135% in comparison to the BDD-stainless steel electrode combination, showing only 75%, 14%, and 8% of the energy consumption of the BDD-stainless steel, ozonation, and peroxonation systems, respectively. Treatment efficiencies of nearly 100% are achieved with both novel electrolysis reactors. Due to the current density adaptation and the GDE integration, which result in energy savings as well as the improvements that significantly extend the lifetime of the BDD electrode, less resources and raw materials are consumed for the power generation and electrode manufacturing processes.
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页数:16
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