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应用功能生物炭减轻稻田土壤和水稻植株中的铊威胁。

Mitigation of thallium threat in paddy soil and rice plant by application of functional biochar.

机构信息

Key Laboratory of Water Quality and Conservation in the Pearl River Delta, Ministry of Education, School of Environmental Science and Engineering, Guangzhou University, Guangzhou, China.

School of Environmental and Chemical Engineering, Foshan University, Foshan, China.

出版信息

J Environ Manage. 2024 Sep;367:121861. doi: 10.1016/j.jenvman.2024.121861. Epub 2024 Aug 2.

Abstract

Thallium (Tl) is a highly toxic metal, and its contamination in soils entails high risks to human health via food chain. It remains largely unknown of the effects of applying biochar on Tl uptake in paddy systems despite that few studies have shown that biochar exhibits great potential for decreasing Tl bioavailability in soils. Herein, we examined the mitigating effects of the application of biochar (5 and 20 g/kg pristine biochar; 5 and 20 g/kg Fe/Mn-modified biochar) on Tl uptake in paddy soil and rice plant after an entire rice growth period. The results suggested that the application of Fe/Mn-modified biochar (FMBC) considerably mitigated the accumulation of Tl in different tissues of rice plants. Specifically, total Tl content in rice plants treated with FMBC-20 decreased by over 75% compared with control experiment. In addition, the amendment of FMBC in Tl-rich paddy soils can enhance the communities of microorganisms (Actinobacteria and Proteobacteria). Further analysis of the soil microbial symbiosis network revealed that FMBC promotes the living microorganisms to play modular synergistic interactions, which is crucial for FMBC-induced Tl stabilization in soils. All these findings indicated that FMBC is an efficient and environmentally friendly Tl-immobilization alternative material and can be potentially used in the remediation of Tl-contaminated paddy soils and/or cropland.

摘要

铊(Tl)是一种剧毒金属,其在土壤中的污染通过食物链对人类健康构成了高风险。尽管一些研究表明生物炭具有降低土壤中铊生物有效性的巨大潜力,但对于生物炭对稻田系统中铊吸收的影响仍知之甚少。在此,我们研究了生物炭(原生物炭 5 和 20 g/kg;Fe/Mn 改性生物炭 5 和 20 g/kg)在整个水稻生长期间对稻田土壤和水稻植株中铊吸收的缓解作用。结果表明,Fe/Mn 改性生物炭(FMBC)的应用显著减轻了不同水稻组织中铊的积累。具体来说,与对照实验相比,用 FMBC-20 处理的水稻植株中的总铊含量降低了 75%以上。此外,在富铊稻田土壤中添加 FMBC 可以增强微生物群落(放线菌和变形菌)。对土壤微生物共生网络的进一步分析表明,FMBC 促进了生活微生物发挥模块化协同作用,这对于 FMBC 诱导土壤中铊稳定化至关重要。所有这些发现表明,FMBC 是一种高效、环保的铊固定替代材料,可潜在用于修复受铊污染的稻田和/或农田。

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