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使用紫外-可见光谱、傅里叶变换红外光谱和(1)H 核磁共振技术监测臭氧化后腐殖质结构和性质的变化。

Monitoring changes in the structure and properties of humic substances following ozonation using UV-Vis, FTIR and (1)H NMR techniques.

机构信息

Department of Chemistry, Higher Polytechnic School, University of Burgos, Spain, Av. Cantabria s/n, 09006 Burgos, Spain.

Department of Chemistry & Biology, Faculty of Mathematics and Natural Science, University of Wuppertal, Germany.

出版信息

Sci Total Environ. 2016 Jan 15;541:623-637. doi: 10.1016/j.scitotenv.2015.09.127. Epub 2015 Oct 2.

Abstract

The main objective of this work is to conduct a comprehensive structural characterization of humic substances using the following experimental techniques: FTIR, 1H NMR and several UV–Vis parameters (Specific UV Absorbance at 254 nm or SUVA254, SUVA280, A400, the absorbance ratios A210/254, A250/365, A254/203, A254/436, A265/465, A270/400, A280/350, A465/665, the Absorbance Slope Index (ASI), the spectral slopes S275–295, S350–400 and the slope ratio SR). These UV–Vis parameters have also been correlated with key properties of humic substances such as aromaticity, molecular weight (MW) and trihalomethane formation potential (THMFP). An additional objective of this work is also to evaluate the usefulness of these techniques to monitor structural changes in humic substances produced by the ozonation treatment. Four humic substances were studied in this work: three of them were provided by the International Humic Substances Society (Suwannee River Fulvic Acid Standard: SRFA, Suwannee River Humic Acid Standard: SRHA and Nordic Reservoir Fulvic Acid Reference: NLFA) and the other one was a terrestrial humic acid widely used as a surrogate for aquatic humic substances in various studies (Aldrich Humic Acid: AHA). The UV–Vis parameters showing the best correlations with aromaticity in this study were SUVA254, SUVA280, A280/A350 ratio and A250/A364 ratio. The best correlations with molecular weight were for SUVA254, SUVA280 and A280/A350 ratio. Finally, in the case of the THMFP it was STHMFP-per mol HS the parameter showing good correlations with most of the UV–Vis parameters studied (especially with A280/A350 ratio, A265/A465 ratio and A270/A400 ratio) whereas STHMFP-per mg C showed poor correlations in most cases. On the whole, the UV–Vis parameter showing the best results was A280/A350 ratio as it showed excellent correlations for the three properties studied (aromaticity, MW and THMFP). A decrease in aromaticity following ozonation of humic substances can be readily monitored by 1H NMR and FTIR; the latter technique also allows to monitor an increase in carboxylic acidity with ozone dosage. This organic matter originated following ozonation (more aliphatic in character and more polar) is expected to be recalcitrant to further oxidation. The terrestrial humic acid (AHA) showed some structural differences with the aquatic humic substances and its behavior upon ozonation also differed in some extent from that shown by them.

摘要

本工作的主要目的是使用以下实验技术对腐殖质进行全面的结构特征描述

傅里叶变换红外光谱(FTIR)、1H 核磁共振(1H NMR)和几种紫外-可见参数(254nm 处的特定紫外吸光度或 SUVA254、SUVA280、A400、吸光度比 A210/254、A250/365、A254/203、A254/436、A265/465、A270/400、A280/350、A465/665、吸光度斜率指数(ASI)、275-295nm 处的光谱斜率 S275–295、350-400nm 处的光谱斜率 S350–400 和斜率比 SR)。这些紫外-可见参数也与腐殖质的关键性质相关联,如芳香度、分子量(MW)和三卤甲烷生成潜能(THMFP)。本工作的另一个目的也是评估这些技术在监测臭氧处理产生的腐殖质结构变化方面的有用性。本工作研究了四种腐殖质:其中三种是由国际腐殖质协会(苏万尼河富里酸标准:SRFA、苏万尼河腐殖酸标准:SRHA 和北欧水库富里酸参考:NLFA)提供的,另一种是一种广泛用于各种研究中作为水生腐殖质替代物的陆地腐殖酸(Aldrich 腐殖酸:AHA)。在本研究中,与芳香度相关性最好的紫外-可见参数是 SUVA254、SUVA280、A280/A350 比和 A250/A364 比。与分子量相关性最好的参数是 SUVA254、SUVA280 和 A280/A350 比。最后,就 THMFP 而言,参数 STHMFP-per mol HS 与研究的大多数紫外-可见参数(尤其是 A280/A350 比、A265/A465 比和 A270/A400 比)表现出良好的相关性,而 STHMFP-per mg C 在大多数情况下相关性较差。总的来说,表现最好的紫外-可见参数是 A280/A350 比,因为它与研究的三种性质(芳香度、MW 和 THMFP)都表现出极好的相关性。腐殖质的臭氧氧化后芳香度的降低可以通过 1H NMR 和 FTIR 很容易地监测到;后一种技术还可以监测随臭氧剂量增加而增加的羧酸酸度。这种由臭氧氧化产生的有机物(性质更具脂肪性和极性)预计对进一步氧化具有抗降解性。陆地腐殖酸(AHA)与水生腐殖质表现出一些结构差异,其臭氧氧化行为在某种程度上也与水生腐殖质不同。

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