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表征生物炭衍生溶解有机质与铜的结合:热解温度和天然湿地植物的影响。

Characterization of copper binding to biochar-derived dissolved organic matter: Effects of pyrolysis temperature and natural wetland plants.

机构信息

School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang 330022, China.

School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang 330022, China; Key Laboratory of Eco-geochemistry, Ministry of Natural Resource, Beijing 100037, China.

出版信息

J Hazard Mater. 2023 Jan 15;442:130076. doi: 10.1016/j.jhazmat.2022.130076. Epub 2022 Sep 28.

Abstract

Characterization of the biochar-derived dissolved organic matter (BDOM) is essential to understanding the environmental efficacy of biochar and the behavior of heavy metals. In this study, the binding properties of BDOM derived from different pyrolysis temperatures, wetland plants, and plant organs with Cu was investigated based on a multi-analytical approach. In general, the pyrolysis temperature exhibited a more significant impact on both the spectral characteristics of BDOM and Cu binding behavior than those of the feedstocks. With the pyrolysis temperature increased, the dissolved organic carbon, aromaticity, and fluorescence substance of BDOM decreased and the structure became more condensed. Humic-and tryptophan-like substance was more susceptible to the addition of Cu for BDOM pyrolyzed at 300 ℃ and 500 ℃, respectively. In addition, the more tyrosine-like substance is involved in Cu binding at higher pyrolysis temperature (500 ℃). However, the fluvic-like substance occurred preferentially with Cu than the other fluorophores. Moreover, the higher binding capacity for Cu was exhibited by the humic-like substance and by BDOM derived from the higher pyrolysis temperature and the lower elevation plants with the corresponding average stability constants (log K) of 5.58, 5.36, and 5.16.

摘要

研究了不同热解温度、湿地植物和植物器官来源的生物炭衍生溶解性有机质(BDOM)与 Cu 的结合特性,基于多分析方法。一般来说,热解温度对 BDOM 的光谱特征和 Cu 结合行为的影响比原料更为显著。随着热解温度的升高,BDOM 的溶解有机碳、芳香度和荧光物质减少,结构变得更加致密。对于在 300℃和 500℃下热解的 BDOM,腐殖质和色氨酸样物质更容易受到 Cu 的添加。此外,在较高的热解温度(500℃)下,更多的酪氨酸样物质参与 Cu 的结合。然而,与其他荧光团相比,富里酸样物质优先与 Cu 发生作用。此外,腐殖质样物质和源自较高热解温度、较低海拔植物的 BDOM 对 Cu 表现出较高的结合能力,相应的平均稳定常数(log K)分别为 5.58、5.36 和 5.16。

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