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生物炭活性位点的调变及其在汞污染土壤修复中的应用:综述。

Tuning active sites on biochars for remediation of mercury-contaminated soil: A comprehensive review.

机构信息

School of Energy Science and Engineering, Central South University, Changsha, Hunan 410083, China.

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, China.

出版信息

Ecotoxicol Environ Saf. 2024 Jan 15;270:115916. doi: 10.1016/j.ecoenv.2023.115916. Epub 2024 Jan 2.

Abstract

Mercury (Hg) contamination is acknowledged as a global issue and has generated concerns globally due to its toxicity and persistence. Tunable surface-active sites (SASs) are one of the key features of efficient BCs for Hg remediation, and detailed documentation of their interactions with metal ions in soil medium is essential to support the applications of functionalized BC for Hg remediation. Although a specific active site exhibits identical behavior during the adsorption process, a systematic documentation of their syntheses and interactions with various metal ions in soil medium is crucial to promote the applications of functionalized biochars in Hg remediation. Hence, we summarized the BC's impact on Hg mobility in soils and discussed the potential mechanisms and role of various SASs of BC for Hg remediation, including oxygen-, nitrogen-, sulfur-, and X (chlorine, bromine, iodine)- functional groups (FGs), surface area, pores and pH. The review also categorized synthesis routes to introduce oxygen, nitrogen, and sulfur to BC surfaces to enhance their Hg adsorptive properties. Last but not the least, the direct mechanisms (e.g., Hg- BC binding) and indirect mechanisms (i.e., BC has a significant impact on the cycling of sulfur and thus the Hg-soil binding) that can be used to explain the adverse effects of BC on plants and microorganisms, as well as other related consequences and risk reduction strategies were highlighted. The future perspective will focus on functional BC for multiple heavy metal remediation and other potential applications; hence, future work should focus on designing intelligent/artificial BC for multiple purposes.

摘要

汞(Hg)污染被认为是一个全球性问题,由于其毒性和持久性,引起了全球关注。可调表面活性位(SAS)是高效 BC 修复 Hg 的关键特征之一,详细记录其与土壤介质中金属离子的相互作用对于支持功能化 BC 在 Hg 修复中的应用至关重要。尽管特定的活性位在吸附过程中表现出相同的行为,但系统地记录它们在土壤介质中与各种金属离子的合成和相互作用对于促进功能化生物炭在 Hg 修复中的应用至关重要。因此,我们总结了 BC 对土壤中 Hg 迁移性的影响,并讨论了 BC 中各种 SAS 对 Hg 修复的潜在机制和作用,包括含氧、含氮、含硫和含 X(氯、溴、碘)官能团(FGs)、比表面积、孔隙率和 pH 值。综述还对引入氧、氮和硫到 BC 表面以增强其 Hg 吸附性能的合成途径进行了分类。最后但同样重要的是,强调了可以用来解释 BC 对植物和微生物以及其他相关后果和降低风险策略的不利影响的直接机制(例如,Hg-BC 结合)和间接机制(即,BC 对硫的循环有重大影响,从而影响 Hg-土壤结合)。未来展望将侧重于多功能 BC 用于修复多种重金属及其他潜在应用;因此,未来的工作应侧重于设计用于多种用途的智能/人工 BC。

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