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Efficient Removal of Ammonium, Heavy Metals, and Scale-Forming Cations from Oilfield Produced Water by Sulfonated Biochar

作者:Zhengfeng Jiang, Chen He, Quan Shi, Yang Chen, Shilin Ma, Zhimao Zhou, Haimeng YU, Fei Gao · 发表于:ACS ES&T Water · 年份:2025 · DOI:10.1021/acsestwater.5c01066 · 被引用次数:4 · 研究领域:Membrane Separation Technologies、Adsorption and biosorption for pollutant removal、Calcium Carbonate Crystallization and Inhibition

The treatment of oilfield produced water (OPW), which contains complex pollutants, such as scale-forming cations, heavy metals, ammonia, and organic matter, presents a significant challenge. In this study, we utilized low-cost sulfonated biochar (SBC), produced through in situ sulfonation of alkylated waste sulfuric acid with waste rice husk, to remove these pollutants from actual OPW. Treatment with 60 g/L of SBC achieved removal rates of 65.7% for COD, 66.1% for DOC, 89.6% for NH 4 + –N, and over 96.3% for scale-forming cations (Ba 2+, Ca 2+, and Mg 2+ ), with heavy metals (Cd 2+ and Cu 2+ ) being completely removed (100%). SBC effectively adsorbed cationic pollutants via surface functional groups (−SO 3 H, −OH, and −COOH) and removed diverse organic pollutants (highly unsaturated compounds, polyphenols, and polycyclic aromatics) through pore-filling, electrostatic interactions, and π–π interaction mechanisms. SBC released substantial quantities of sulfur- and oxygen-containing compounds, inducing a pH decrease in OPW from 6.97 to 3.05. Approximately 30% of these compounds are microbially bioactive molecules (H/C ≥ 1.5). Moreover, SBC proved effective for OPW treatment, maintaining a stable adsorption performance through six consecutive cycles. These findings suggest that SBC holds great potential for large-scale applications as an adsorbent in the pretreatment stages of OPW treatment processes.