Valorizing date palm spikelets into activated carbon-derived composite for methyl orange adsorption: advancing circular bioeconomy in wastewater treatment—a comprehensive study on its equilibrium, kinetics, thermodynamics, and mechanisms

Mazen S. F. Al-Hazeef, Amel Aidi, Lynda Hecini, Ahmed I. Osman*, Gamil Gamal Hasan, Mohammed Althamthami, Sabrina Ziad, Tarik Otmane, David W. Rooney

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

Leveraging date palm spikelets (DPS) as a precursor, this study developed a DPS-derived composite (ZnO@DPS-AC) for water treatment, focusing on methyl orange (MO) removal. The composite was synthesized through ZnCl2 activation and pyrolysis at 600 °C. Comprehensive characterization was conducted using TGA, FTIR, XRD, SEM/EDS, and pHPZC. Characterization revealed a highly carbonaceous material (> 74% carbon) with significant porosity and surface functional groups. ZnO@DPS-AC demonstrated rapid MO removal, achieving over 45% reduction within 10 min and up to 99% efficiency under optimized conditions. The Langmuir model-calculated maximum adsorption capacity reached 226.81 mg/g at 20 °C. Adsorption mechanisms involved hydrogen bonding, π-π interactions, and pore filling. The composite showed effectiveness in treating real wastewater and removing other pollutants. This study highlights the potential of agricultural waste valorization in developing efficient, sustainable adsorbents for water remediation, contributing to circular bioeconomy principles.

Original languageEnglish
Number of pages20
JournalEnvironmental Science and Pollution Research
Early online date03 Aug 2024
DOIs
Publication statusEarly online date - 03 Aug 2024

Keywords

  • Agricultural waste valorization
  • Azo dye adsorption
  • Bioresource utilization
  • Circular bioeconomy
  • Sustainable composite
  • Water remediation

ASJC Scopus subject areas

  • Environmental Chemistry
  • Pollution
  • Health, Toxicology and Mutagenesis

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