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Updated: Feb 4, 2026

Assessment of Waste-Derived Biochars on the Health and Biological Activity of Soil
Published on: October 10, 2025
Chitosan-Coated Sewage Sludge-Coal Gangue Biochar Spheres for Efficient Cr(VI) Removal from Water and Soil
Xiao Ma1,2, Xingyu Liu1, Hongtao Wu1
1College of Urban and Environmental Sciences, Huangshi Key Laboratory of Prevention and Control of Soil Pollution, Hubei Normal University, 11 Cihu Road, Huangshi 435002, P.R. China.
Abstract:
A chitosan-coated biochar sphere (BC-CG-CT) was fabricated via facile copyrolysis of municipal sewage sludge (SS) and coal gangue (CG), followed by ionic gelation encapsulation. Under optimized conditions (650 °C pyrolysis, 100 min, SS:CG = 1:1), BC-CG-CT achieved a maximum Cr(VI) adsorption capacity of 23.85 mg·g-1 and removal rates above 97% at pH 5 in aqueous systems. Kinetic and isotherm studies revealed a dominant pseudo-first-order behavior, monolayer adsorption, and energetically favorable interactions. Thermodynamic analysis indicated spontaneous, endothermic adsorption. In soil incubation tests (90 days, up to 300 g·kg-1 dosage), BC-CG-CT reduced soluble Cr(VI) by up to 57.6%, shifted Cr fractionation from labile (EX/CB) to stable (OX/RS) pools, elevated soil pH and TOC, and suppressed CaCl2-extractable Cr to below 0.1 mg·kg-1. Mechanistic investigations combining SEM-EDS, XRD, FTIR, and XPS confirmed synergistic immobilization via pore-filling, electrostatic adsorption, Cr(VI) reduction by electron-donor groups, and complexation/precipitation. The robust spherical morphology enhances recoverability and reuse. This work demonstrates a promising and sustainable strategy for simultaneous remediation of Cr(VI) in water and soil, leveraging industrial and municipal waste valorization.
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