化学
吸附
环境修复
降水
尿素酶
碳酸盐
腐植酸
环境化学
水生生态系统
微观世界
镉
荧光光谱法
优势(遗传学)
细菌
动力学
磷酸盐
水污染
微生物降解
无机化学
生物矿化
吡喃
脱卤球绦虫
作者
Yong Li,Jianghao Cheng,Jiaqi Li,Yong Li,Yuanchi Zhao,Le Li,Zhuqing Liu,Fan Yang,Kui CHENG
出处
期刊:ACS ES&T water
[American Chemical Society]
日期:2026-02-03
卷期号:6 (3): 1543-1555
标识
DOI:10.1021/acsestwater.5c01056
摘要
This study identifies critical dosage thresholds in biochar-enhanced microbially induced carbonate precipitation (BC-MICP) systems for effective cadmium (Cd) remediation in both aquatic and soil environments. In water, 250 mg/L BC optimized Cd fixation (61.4%) via synergistic adsorption-precipitation effects, regulated by urease activity thresholds (0.4 μg/mL). In soil, addition of >2.5% BC activated heterogeneous CdCO3 nucleation, increasing residual Cd by 19.9%. BC-mediated microbial shifts revealed low-dose enrichment of Cd-resistant Bacillus contrasted with high-dose dominance of oligotrophic Actinobacteria. Fluorescence spectroscopy demonstrated matrix-specific organic interactions: humic acid stabilization in water as opposed to protein-BC binding in soil. Our findings highlight BC’s dual role in bridging adsorption kinetics and microbial metabolism, providing critical thresholds for eco-engineered remediation.
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