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February 12, 2026Water and Environment Journal0 citations

Low‐Voltage Arcing Regeneration of Saturated Activated Carbon With a Service Life of 10 Years in Water Treatment

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XNXin NieKLKeyuan LvWGWeiXing Gao

Key Points

  • This research aims to evaluate an efficient regeneration method for long-used activated carbon in water treatment.
  • Applied low-voltage arcing regeneration technology to saturated activated carbon (SAC)
  • Compared SAC used for 10 years (SAC-10) with SAC used for 1 year (SAC-1)
  • Measured resistance and efficiency at varying temperatures
  • Utilized preheating to enhance regeneration efficiency
  • SAC-10 had a resistance of 31.9 kΩ compared to SAC-1's 15.5 Ω
  • SAC-10 achieved 41.3% regeneration efficiency at 600°C
  • SAC-1 reached 82.0% efficiency at 850°C
  • Combination heating method enabled both SAC-1 and SAC-10 to achieve 850°C
  • Minimum energy consumption recorded was 0.4 kW·h/kg with a production rate of 25 kg/h

Abstract

ABSTRACT Regenerating saturated activated carbon (SAC) is economically and environmentally vital. This study proposes a low‐voltage arcing regeneration technology, applying it to SAC used for 10 years (SAC‐10) and comparing it to SAC used for 1 year (SAC‐1). SAC‐1's resistance at room temperature is 15.5 Ω, compared to SAC‐10's 31.9 kΩ. High resistance in SAC‐10 challenges low‐voltage arcing regeneration, limiting the final outlet temperature to 600°C and achieving only 41.3% regeneration efficiency. In contrast, SAC‐1 reaches 850°C with 82.0% efficiency. Subsequently, a combination heating regeneration method was proposed, preheating SAC to 350°C to reduce resistance before entering the low‐voltage arcing device. This approach allowed both SAC‐1 and SAC‐10 to reach 850°C, confirming successful regeneration. Overall, the low‐voltage arcing method achieves a minimum energy consumption of 0.4 kW·h/kg and a production rate of 25 kg/h, which shows significant promise for industrial‐scale application.

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Cite This Study

Nie et al. (2026) studied this question.

synapsesocial.com/papers/698d6dd15be6419ac0d52fd2https://doi.org/10.1111/wej.70044
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