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热解温度对生物炭衍生溶解有机质中质子和镉结合性能的影响:荧光团和生色团的作用。

Effects of pyrolysis temperature on proton and cadmium binding properties onto biochar-derived dissolved organic matter: Roles of fluorophore and chromophore.

机构信息

Institute of Ecological and Environmental Sciences, Sichuan Agricultural University, Chengdu, Sichuan, 611130, PR China; Rural Environment Protection Engineering & Technology Center of Sichuan Province, Sichuan Agricultural University, Chengdu, Sichuan, 611130, PR China.

College of Resources and Environmental Sciences, Hunan Normal University, Changsha, 410081, PR China; College of Environmental Science and Engineering, Hunan University and Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha, 410082, PR China.

出版信息

Chemosphere. 2022 Jul;299:134313. doi: 10.1016/j.chemosphere.2022.134313. Epub 2022 Mar 12.

Abstract

Understanding the environmental behavior of biochar-derived dissolved organic matter (BDOM) is crucial for promoting the extensive utilization of biochar and meeting the carbon neutrality targets. However, limited studies focused on the binding mechanism of protons and Cd with DOM released from biochar produced at different pyrolysis temperatures. By combining excitation-emission matrix spectroscopy and parallel factor analysis, we found that the humic-like fluorophores in BDOM had higher aromaticity, molecular weight, and contents of carboxylic and phenolic groups relative to the protein-like fluorophores. Conversely, the protein-like fluorophores exhibited a stronger binding affinity for Cd than humic-like fluorophores. With the pyrolysis temperature increased from 300 °C to 500 °C, the quenching effects of Cd on the protein-like components were enhanced significantly. Their fluorescence intensities could be quenched up to 51.64%. The results of ultraviolet-visible absorbance spectroscopy and differential absorbance spectroscopy showed that the carboxylic-like and phenolic-like chromophores were involved in the protons and Cd binding process of BDOM. The binding ability of phenolic-like chromophores with Cd was reduced as a function of increasing pyrolysis temperature. These findings implied that these carboxylic and phenolic groups were mainly contained in the non-fluorescent components. Besides, protons and Cd could also induce inter-chromophore interactions in BDOM, and the interaction was proportional to the pyrolysis temperature. These results clearly demonstrated the pyrolysis temperature-dependent changes in the protons and Cd binding properties of BDOM. More importantly, the possible risk of Cd mobility caused by the protein-like components in BDOM cannot be ignored when the biochar was applied in contaminated soils. This research extends our knowledge of the application potentiality of biochar in heavy metal polluted soil.

摘要

了解生物炭衍生溶解有机质(BDOM)的环境行为对于促进生物炭的广泛利用和实现碳中和目标至关重要。然而,目前关于不同热解温度下生物炭产生的 DOM 中质子和 Cd 与 DOM 结合的机制的研究还很有限。通过结合激发-发射矩阵光谱法和平行因子分析,我们发现 BDOM 中的腐殖质类荧光团具有较高的芳香度、分子量以及羧酸和酚基含量,而蛋白质类荧光团则具有更强的与 Cd 结合的亲和力。随着热解温度从 300°C 升高到 500°C,Cd 对蛋白质类成分的猝灭效应显著增强。其荧光强度可被猝灭高达 51.64%。紫外-可见吸收光谱和差分吸收光谱的结果表明,羧酸类和酚类生色团参与了 BDOM 中质子和 Cd 的结合过程。随着热解温度的升高,酚类生色团与 Cd 的结合能力逐渐降低。这表明这些羧酸和酚基主要存在于非荧光成分中。此外,质子和 Cd 还可以诱导 BDOM 中发色团之间的相互作用,这种相互作用与热解温度成正比。这些结果清楚地表明了 BDOM 中质子和 Cd 结合性质随热解温度的变化。更重要的是,当生物炭应用于污染土壤时,BDOM 中的蛋白质类成分可能会导致 Cd 迁移的风险不容忽视。本研究扩展了我们对生物炭在重金属污染土壤中应用潜力的认识。

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