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April 13, 2026Waste Management0 citationsOpen Access

Toward a comprehensive standard for sustainable regenerated activated Carbon: Performance, Safety, and carbon reduction benefits

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XJXiaoqin JinLSLingling SheYHYi He

Key Points

  • This research aims to create a comprehensive quality standard for sustainable regenerated activated carbon (RAC) in China while emphasizing its carbon reduction benefits.
  • Established a comprehensive quality standard system for RAC.
  • Integrated national and industry standards with pollution control regulations.
  • Developed a triple-verification system focusing on performance, safety, and climate impact.
  • Collected and analyzed data from 10 samples of recycled activated carbon from enterprises.
  • Conducted a carbon footprint analysis comparing RAC to traditional activated carbon.
  • RAC's moisture content was ≤ 2.85% and abrasion resistance was ≥ 96%, meeting overall standards.
  • Iodine number of RAC ranged from 782 to 860 mg/g, showing good adsorption properties.
  • Carbon tetrachloride adsorption rate was 44.9% − 46.82%, meeting only qualified product requirements.
  • Hazardous components like mercury and lead were below limit values.
  • RAC's carbon footprint was 46.5% − 68.1% lower compared to traditional activated carbon.

Abstract

• Established the China’s first comprehensive quality standard system for RAC. • Quantitatively revealed the significant carbon reduction co-benefits of RAC. • Constructed a triple-verification system for “performance-safety-climate impact”. This study was based on the status of the recycling industry of spent activated carbon (SAC) in China. By integrating national and industry standards (GB/T 7701.1–3, GB/T 13803.1–5, LY/T 3284–2021, etc.) with pollution control regulations (GB 34330–2017, GB 5085.7–2019, etc.), a quality and hazardous composition indicators system for regenerated activated carbon (RAC) used for industrial organic waste gas purification was constructed. The applicability of the indicators was verified by collecting test data from 10 effective samples of typical recycling enterprises nationwide, including iodine adsorption value, wear resistance strength, carbon tetrachloride adsorption rate, and 11 heavy metal limits. Furthermore, a comparative carbon footprint analysis was conducted based on industrial project data, quantifying the carbon reduction benefits of regeneration. The results showed that the physical properties (moisture content ≤ 2.85%, abrasion resistance ≥ 96%) and adsorption properties (iodine number 782–––860 mg/g) of RAC met the overall standards, but the carbon tetrachloride adsorption rate (44.9% − 46.82%) only met the requirements for qualified products. The hazardous components (such as mercury 0.013–––0.088 mg/kg, lead 1.4–––10.1 mg/kg) were significantly lower than the limit values. Critically, the carbon footprint of RAC (1.632–––2.736 tCO 2 e/t) was 46.5% − 68.1% lower than that of activated carbon (5.112 tCO 2 e/t), demonstrating a substantial climate mitigation benefit. This study provides a comprehensive technical support, encompassing quality, safety, and environmental benefits, for the standardized application and market promotion of RAC products, which is expected to promote the high-quality development of SAC resource utilization industry.

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Cite This Study

Jin et al. (2026) studied this question.

synapsesocial.com/papers/69dc87983afacbeac03e9dechttps://doi.org/10.1016/j.wasman.2026.115519
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