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Updated: Aug 27, 2026

Physical, Chemical and Biological Characterization of Six Biochars Produced for the Remediation of Contaminated Sites
Published on: November 28, 2014
Functionalized biochar for plasticizer remediation in aquatic systems: synergistic adsorption and advanced oxidation
Chathumi Manangodage1, Sashini Gunarathna1, Praveen Abhishek1
1Ecosphere Resilience Research Centre, Faculty of Applied Sciences, University of Sri Jayewardenepura Nugegoda 10250 Sri Lanka.
Abstract:
Biochar-based treatment strategies have received growing interest; however, no comprehensive review has systematically assessed the mechanisms and performance of functionalized biochar for plasticizer remediation. This review critically compares pristine biochar and its advances in biochar modifications for plasticizer adsorption. Additionally, it unveils how functionalized biochar integrates with advanced oxidation processes (AOPs) to achieve synergistic adsorption and degradation of plasticizers in water. As different studies have used varying initial concentrations, a direct comparison is not appropriate. Therefore, the partition coefficient (PC) was determined to enable a normalized and insightful comparison. The modified biochar exhibited higher PC values (0.179-42.7 L g-1) than pristine biochar (0.082-1.852 L g-1), highlighting the enhancement of adsorption capacity through targeted modifications. The pine cone-derived pristine biochar demonstrated the highest PC (2.56 L g-1). Further, nitrogen-doped (N-doped) biochar exhibited superior adsorption for DEP (32.3 L g-1) and DBP (42.7 L g-1). For degradation, persulfate-based AOP achieved rapid plasticizer degradation (∼99% within minutes) under different conditions with rapid persulfate activation. Plasticizer mitigation in aquatic systems using biochar remains constrained by inconsistent performance due to variability in feedstock, modification methods, and experimental conditions, which limits reliable comparisons across studies. Therefore, addressing these inconsistencies is crucial for optimizing the performance of biochar in real-world water remediation systems.
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