科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Journal of hazardous materials2026-09-11

Mechanisms of lithium adsorption on Fe/Mn-modified biochar: A ToF-SIMS and surface complexation modeling study.

Yangyang Zhang, Xinyu Han, Jinghe Chen, Bo Zu

原始摘要(英文原文)· Original abstract
Lithium contamination from the expanding battery industry is an emerging environmental concern, yet Li adsorption mechanisms on heterogeneous sorbents remain poorly understood. Here, Fe/Mn-modified wheat straw biochars were synthesized at three Fe:Mn ratios. The optimal material, F5M1BC, achieved a Li+ adsorption capacity of 145.2 mg/g, retained 90% uptake over 10 regeneration cycles, and maintained above 85% removal under 20-fold excess competing cations. ToF-SIMS was applied for the first time to lithium adsorption on biochar, coupled with an automated Pearson co-localization protocol screening 130 fragment ions across lateral and depth dimensions. The analysis identified 17 Li-bearing fragments in five binding categories, namely Li-silicate, Li-Mn, Li-Fe, Li-Fe-Mn ternary, and Li-chloride, partitioned between metal oxide and silicate microdomains. Depth profiling resolved a three-layer architecture consisting of a surface metal oxide-hydroxyl domain, an intermediate organic-metal composite domain, and a deep silica-rich interior. A three-site non-electrostatic surface complexation model, with each site defined by a ToF-SIMS depth domain, reproduced pH-edge and isotherm data with fitted pKa values of 2.41, 6.05, and 9.19, linking spatially resolved binding architecture to macroscopic adsorption. Combining automated ToF-SIMS co-localization screening with site-specific surface complexation modeling provides a generalizable strategy for examining adsorption mechanisms on chemically heterogeneous materials.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Mechanisms of lithium adsorption on Fe/Mn-modified biochar: A ToF-SIMS and surface complexation modeling study. — 科研速览 Science Skim