Pea peel waste-derived hierarchical porous carbon for dual applications in water purification and aqueous zinc-ion capacitors

Waste valorization towards the application of energy and environmental remediation is an excellent and effective approach for the sustainable development. In this work, pea peels ( Pisum sativum ), an abundant agricultural residue, were converted into porous activated carbon and used for dual applications in wastewater remediation and aqueous zinc-ion capacitors (AZICs), without the use of harmful chemicals or metal/metal oxide-based adsorbents. The pea peel-derived activated carbon (PPAC-800), synthesized via controlled thermal annealing at an optimized temperature, exhibited excellent adsorption performance towards methylene blue dye, achieving a maximum Langmuir adsorption capacity of 440.5 mg g −1 with a removal efficiency of 99%. Furthermore, the same biomass-derived activated carbon was employed as a cathode material in aqueous zinc-ion capacitors, delivering a specific capacitance of 152 F g −1 and an energy density of 54 Wh kg −1 at a current density of 1 A g −1 . The hierarchical porous architecture and heteroatom-rich surface promote rapid ion transport and efficient charge storage, resulting in enhanced electrochemical performance and good cycling stability. This study demonstrates a sustainable waste-to-value approach for converting abundant agricultural waste into multifunctional carbon materials for environmental remediation and energy storage applications.

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Publication Details

Journal
Biomass and Bioenergy
Published
2026-09-12
DOI
https://doi.org/10.1016/j.biombioe.2026.110080
Primary Topic
Advanced battery technologies research
Type
article
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Pea peel waste-derived hierarchical porous carbon for dual applications in water purification and aqueous zinc-ion capacitors

Aditi Halder, Arkaj Singh, Kanchan Parmar, Kamaljeet Nain et al.
Biomass and Bioenergy
Advanced battery technologies research
article

Pea peel waste-derived hierarchical porous carbon for dual applications in water purification and aqueous zinc-ion capacitors

Aditi Halder, Arkaj Singh, Kanchan Parmar, Kamaljeet Nain, Harajyoti Thausen
article en

Abstract

Waste valorization towards the application of energy and environmental remediation is an excellent and effective approach for the sustainable development. In this work, pea peels ( Pisum sativum ), an abundant agricultural residue, were converted into porous activated carbon and used for dual applications in wastewater remediation and aqueous zinc-ion capacitors (AZICs), without the use of harmful chemicals or metal/metal oxide-based adsorbents. The pea peel-derived activated carbon (PPAC-800), synthesized via controlled thermal annealing at an optimized temperature, exhibited excellent adsorption performance towards methylene blue dye, achieving a maximum Langmuir adsorption capacity of 440.5 mg g −1 with a removal efficiency of 99%. Furthermore, the same biomass-derived activated carbon was employed as a cathode material in aqueous zinc-ion capacitors, delivering a specific capacitance of 152 F g −1 and an energy density of 54 Wh kg −1 at a current density of 1 A g −1 . The hierarchical porous architecture and heteroatom-rich surface promote rapid ion transport and efficient charge storage, resulting in enhanced electrochemical performance and good cycling stability. This study demonstrates a sustainable waste-to-value approach for converting abundant agricultural waste into multifunctional carbon materials for environmental remediation and energy storage applications.

Biomass and BioenergyVol. 217
Indian Institute of Technology Mandi (IN)
Clean water and sanitation
Openalex Percentile: Top 20%
Advanced battery technologies research
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Pea peel waste-derived hierarchical porous carbon for dual applications in water purification and aqueous zinc-ion capacitors — Aditi Halder, Arkaj Singh, et al. · Biomass and Bioenergy (2026) | TGRS Research Map | TGRS