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利用 EEM-PARAFAC 和差分吸收光谱结合二维相关光谱技术深入研究生物炭衍生 DOM 的金属结合特性。

Insight into metal binding properties of biochar-derived DOM using EEM-PARAFAC and differential absorption spectra combined with two-dimensional correlation spectroscopy.

机构信息

Gansu Key Laboratory for Environmental Pollution Prediction and Control, College of Earth and Environmental Sciences, Lanzhou University, Tianshui South Road 222, Lanzhou, 730000, Gansu, China.

出版信息

Environ Sci Pollut Res Int. 2021 Mar;28(11):13375-13393. doi: 10.1007/s11356-020-11573-7. Epub 2020 Nov 12.

Abstract

A large amount of biochar-derived dissolved organic matter (BDOM) will be released into the environment with biochars application into repairing soil/water, which may alter the fate and transport of contaminants. In this study, four DOM samples were extracted from cauliflower root biochar (CRBC), reed straw biochar (RSBC), corn stalks biochar (CSBC), and potato stalk biochar (PSBC). Excitation-emission matrix combined with parallel factor (EEM-PARAFAC) analysis, differential absorbance spectra (DAS), and two-dimensional correlation spectroscopy (2D-COS) analysis were applied to explore the complexation property of BDOM with metals. DAS showed sites heterogeneity within the DOM pool for metals complexing. Humic-like and fulvic-like substances were main fluorescent components identified by EEM-PARAFAC. 2D-COS analysis revealed that polysaccharides and aliphatic firstly responded to Pb(II) binding with CRBC-derived DOM and three other biochar-derived DOM, respectively. While aliphatic groups, aromatic N=O, and polysaccharides gave the fastest response to Cu(II) binding with CRBC, RSBC, and the other two biochar-derived DOM, respectively.

摘要

大量生物炭衍生的溶解有机物质(BDOM)将随着生物炭在修复土壤/水方面的应用而释放到环境中,这可能会改变污染物的归宿和迁移。在这项研究中,从菜花根生物炭(CRBC)、芦苇秸秆生物炭(RSBC)、玉米秸秆生物炭(CSBC)和土豆秸秆生物炭(PSBC)中提取了 4 种 DOM 样品。采用激发-发射矩阵结合平行因子(EEM-PARAFAC)分析、差示吸收光谱(DAS)和二维相关光谱(2D-COS)分析,探讨了 BDOM 与金属的络合特性。DAS 表明 DOM 池中的金属络合位点具有异质性。EEM-PARAFAC 分析表明,腐殖酸类和富里酸类物质是主要的荧光成分。2D-COS 分析表明,多糖和脂肪族物质首先与 CRBC 衍生的 DOM 以及其他三种生物炭衍生的 DOM 中的 Pb(II)结合产生响应。而脂肪族、芳香族 N=O 和多糖与 CRBC、RSBC 和其他两种生物炭衍生的 DOM 中的 Cu(II)结合时,分别表现出最快的响应。

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