A combined biochar and biomineralization approach for enhanced soil Pb immobilization under accelerated aging

IF 6.5 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Journal of Environmental Sciences-china Pub Date : 2026-05-01 Epub Date: 2025-09-09 DOI:10.1016/j.jes.2025.09.007
Huicong Hu, Zhengtao Shen, Chao-Sheng Tang, Wen Mu, Mengtao Wang, Sensen Li, Xiaohua Pan, Huan Liu, Bao-Jun Wang
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引用次数: 0

Abstract

Long-term effectiveness remains a critical challenge for soil heavy metal immobilization. In this study, the combination of biochar and microbial induced carbonate precipitation (MICP), a biomineralization-based approach, referred to as BM treatment, was applied to a Pb-contaminated silty clay. A quantified accelerated aging experiment based on rainfall and wet-dry cycles was conducted to assess the stability of Pb across the simulated 100 years. BM treatment exhibited enhanced performance in Pb immobilization compared with single biochar and single MICP treatments under accelerated aging. Before aging, BM treatment was the only method capable of reducing soil Pb leachability to levels that meet the toxicity characteristic leaching procedure standard. After aging, the total Pb concentration in BM-treated soils showed the lowest reduction (10.6 %) after simulated 100 years, compared to reductions of 23.3 % and 18.1 % in biochar-treated and MICP-treated soils, respectively. BM treatment also significantly increased the fraction of generally stable Pb in the soil, maintaining a relatively high level (39.4 %-45.7 %) and enhanced calcium carbonate production (7.92 %) with minimal dissolution (2.14 % reduction) throughout the simulated 100 years. Biochar’s porous structure facilitated treatment solution delivery, overcoming MICP limitations in fine-pored clay soils. This study sheds light on the potential large-scale application of BM treatment in long-term soil heavy metal immobilization.

Abstract Image

加速老化条件下生物炭与生物矿化联合强化土壤铅固定化的研究
土壤重金属固定的长期有效性仍然是一个关键的挑战。在这项研究中,生物炭和微生物诱导碳酸盐沉淀(MICP)相结合,一种基于生物矿化的方法,被称为BM处理,应用于铅污染的粉质粘土。通过基于降雨和干湿循环的定量加速老化试验,评价了模拟100年Pb的稳定性。在加速老化条件下,BM处理比单一生物炭处理和单一MICP处理对Pb的固定效果更好。在老化前,BM处理是唯一能够将土壤Pb浸出率降低到符合毒性特征浸出程序标准的方法。老化后,bm处理的土壤总铅浓度在模拟100年后下降幅度最小(10.6%),而生物炭处理和micp处理的土壤总铅浓度分别下降了23.3%和18.1%。在模拟的100年中,BM处理还显著增加了土壤中一般稳定的Pb的比例,保持了相对较高的水平(39.4% - 45.7%),并增加了碳酸钙的产量(7.92%),溶解最小(减少2.14%)。生物炭的多孔结构有助于处理溶液的输送,克服了MICP在细孔粘土中的限制。该研究揭示了BM处理在土壤重金属长期固定中的潜在大规模应用。
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来源期刊
Journal of Environmental Sciences-china
Journal of Environmental Sciences-china 环境科学-环境科学
CiteScore
13.70
自引率
0.00%
发文量
6354
审稿时长
2.6 months
期刊介绍: The Journal of Environmental Sciences is an international journal started in 1989. The journal is devoted to publish original, peer-reviewed research papers on main aspects of environmental sciences, such as environmental chemistry, environmental biology, ecology, geosciences and environmental physics. Appropriate subjects include basic and applied research on atmospheric, terrestrial and aquatic environments, pollution control and abatement technology, conservation of natural resources, environmental health and toxicology. Announcements of international environmental science meetings and other recent information are also included.
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