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February 26, 2026Results in Chemistry0 citationsOpen Access

Degradation of 2-(methylamino)benzoic acid and methyl anthranilate using a novel electrochemical trickle-fixed bed reactor without pH regulation

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HYHesen YangQHQiongjian HuangXHXinghua Huang

Key Points

  • This research aims to improve degradation efficiency of organic pollutants in wastewater using a novel electrochemical reactor.
  • Investigation of 2-(methylamino)benzoic acid and methyl anthranilate degradation
  • Utilization of a trickle-fixed bed reactor with Sb-doped SnO₂/Ti anodes
  • Assessment of a scaled-up 50 L reactor performance
  • Achieved 80% COD removal for 2-(methylamino)benzoic acid and 60% for methyl anthranilate
  • Maintained stable COD removal efficiency during scale-up
  • Controlled energy consumption suitable for industrial use

Abstract

As a high-performance wastewater treatment method, an electrochemical oxidation process has been used to degrade refractory organic pollutants. However, the addition of electrolyte and/or adjustment of pH value would inevitably cause secondary pollution and increase the difficulty of subsequent treatment. The degradation of 2-(methylamino)benzoic acid and methyl anthranilate was investigated using a novel electrochemical trickle-fixed bed reactor, integrated with Sb-doped SnO₂/Ti anodes. In the 2 L reactor, the chemical oxygen demand removal efficiency of 2-(methylamino)benzoic acid and methyl anthranilate was 80% and 60% respectively using 100 mg/L solution within 10 h under 30 V applied voltage without pH regulation. To improve the degradation efficiency and the application probability in actual organic wastewater treatment, a 50 L electrochemical reactor was designed and tested. The experimental results demonstrated that the scaled-up reactor maintained stable COD removal efficiency for 2-(methylamino)benzoic acid, while its energy consumption was controlled at a level suitable for industrial application through optimized multi-electrode arrays and high direct current power supply. This work provides an innovative solution for the deep treatment of toxic aromatic amine-containing wastewater without pH regulation and/or added electrolyte, bridging scalable reactor design with insights into voltage-dependent pathways and the influence of molecular polarity.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/699f95a81bc9fecf3dab3b6chttps://doi.org/10.1016/j.rechem.2026.103172
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