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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Origin of dissolved organic matter in the Harz Mountains (Germany): A thermally assisted hydrolysis and methylation (THM-GC-MS) study
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Origin of dissolved organic matter in the Harz Mountains (Germany): A thermally assisted hydrolysis and methylation (THM-GC-MS) study

机译:Harz山脉(德国)溶解有机物的起源:热辅助水解和甲基化(THM-GC-MS)研究

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摘要

Environmental change is increasing the concentration of dissolved organic matter (DOM) in catchments of the Northern Hemisphere. This study aims to assess the causes of high DOM concentrations in streams and reservoirs of the Harz National Park (Germany), by means of molecular characterization using thermally assisted hydrolysis and methylation (THM-GC-MS). In order to formulate proxies of the prevailing origin of the numerous THM products of polyphenols, carbohydrates, proteins, aliphatic macromolecules, resins and other DOM precursors, we created a reference sample set of potential sources (spruce, birch, blueberry, heather, peat moss, soils) from the area. Besides solid-state reference samples (bulk organic matter; BOM) we obtained and analyzed their leachates (water-extractable OM; WEOM). Finally, an existing THM-GC-MS dataset of the DOM from the Oder river, which crosses the boundary between peat and forest biomes in the Harz, was extended and explored chemometrically using Principal Component Analysis (PCA) to test the proxies for stream DOM assessment. The results show large differences between BOM and WEOM, which suggests that the solid-to-leachate transition is highly selective or significantly alters the major biomolecular constituents. THM compounds that tend to be more abundant in WEOM than in BOM are G-type phenolic compounds (1,2-dimethoxybenzenes, from lignin and tannin), nitrogen-containing moieties and benzene carboxylic acids, whereas WEOM is depleted in products of polysaccharides, syringyl lignin and aliphatic macromolecules (cutin and suberin). The lignin fingerprint of the WEOM also differs significantly from that of BOM, being depleted in the vast majority of the typical products of macromolecular lignin (G7, G8, G14, G15) and enriched in the acid moiety (G6, predominantly from vanillic acid), especially for spruce wood. THM chromatograms of DOM from the forest section of the Oder show an extraordinary abundance of G6, most probably from spruce-derived lignin. This may indicate a major role of DOM released from decaying spruce logs and forest soils. The results highlight both the potential and the pitfalls associated with source identification of DOM using THM-GC-MS.
机译:环境变化正在增加北半球溶解有机物(DOM)的浓度。本研究旨在通过使用热辅助水解和甲基化(THM-GC-MS)来评估HARZ国家公园(德国)的溪流和储存器中的高度浓度的原因。为了制定多酚,碳水化合物,蛋白质,脂族大分子,树脂和其他DOM前体的众多THM产物的普遍原产能的代理,我们创建了一个潜在来源的参考样本集(云杉,桦木,蓝莓,石南花,泥炭藓来自该地区的土壤)。除了固态参考样品(散装有机物质; BOM),我们获得并分析了它们的渗滤液(可萃取的OM; WEOM)。最后,使用主成分分析(PCA)延长和探索了泥炭河之间的DOM的现有THM-GC-MS DataSet,它通过主成分分析(PCA)来延长和探索化学测量,以测试流DOM的代理评估。结果表明,BOM和WEOM之间的差异较大,这表明固体 - 渗滤液转变是高度选择性的或显着改变主要的生物分子成分。 THM化合物在Weom中倾向于更加丰富于BOM,是G型酚醛化合物(1,2-二甲氧基苯,来自木质素和单宁),含氮部分和苯羧酸,而WEOM在多糖的产品中耗尽,陶林木质素和脂族大分子(Cutin和Suberin)。 Weom的木质素指纹也与BOM的木质素指纹显着不同,在绝大多数大多数大分子木质素(G7,G8,G14,G15)中耗尽并富集酸部分(G6,主要来自香草酸) ,特别是云杉木。来自奥德森林段的Dom的Thm色谱图显示出非凡的G6丰富,大部分可能来自云杉的木质素。这可能表明DOM从腐烂的云杉日志和森林土壤中发布的主要作用。结果突出显示了使用THM-GC-MS与DOM的源识别相关的潜在和缺陷。

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