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首页> 外文期刊>Soil Science and Plant Nutrition >Characterization of hydrophobic acid fractions in water-soluble organic matter in Dystric Cambisol and in a stream in a small forested watershed: seasonal and vertical variations in chemical properties.
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Characterization of hydrophobic acid fractions in water-soluble organic matter in Dystric Cambisol and in a stream in a small forested watershed: seasonal and vertical variations in chemical properties.

机译:Dystric坎比索尔和森林小流域中的溪流中水溶性有机物中疏水酸部分的特征:化学性质的季节性和垂直变化。

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Chemical properties of hydrophobic acid (HoA) fractions in water-soluble organic matter in soil and water are concerned with its interactions with mineral soil surfaces and organic pollutants. In 2004 we examined the seasonal and vertical changes in chemical properties of the HoA fraction in a Cambisol profile and compared these properties with those in the HoA fraction of an adjacent stream (aquatic humic substances) in a temperate forested watershed using high performance size exclusion chromatography (HPSEC) and 1H and 13C nuclear magnetic resonance (NMR) spectroscopy. The HoA fractions from Oi, Oe/Oa, A and B horizon soils in summer had lower O-alkyl C proportions than those recorded in samples in other seasons. The proportions of aromatic C in HoA fractions from A and B horizons were highest in summer. These seasonal variations were less significant than variations with soil depth. O-alkyl C proportions in HoA fractions decreased with increasing soil depth from the Oi to the A horizon. The HoA fractions from the B horizon showed a higher alkyl C proportion than samples from other horizons in winter and spring. These changes with soil depth from the Oi to A horizons might result from selective utilization of carbohydrate carbon by microorganisms, whereas those in the B horizon may result from sorption to mineral surfaces. The HoA fractions in the stream were similar in relative molecular weight, distribution of each type of proton and carbon species in HoA fractions from the B horizon, whereas stream HoA fractions collected in summer would be derived from organic horizons. This indicated that vertical changes in the chemical properties of HoA fractions in soil and pathways of water to the stream would largely affect the chemical properties of HoA fractions in the stream.
机译:土壤和水中的水溶性有机物中的疏水酸(HoA)馏分的化学性质与其与矿物土壤表面和有机污染物的相互作用有关。 2004年,我们检查了Cambisol剖面中HoA馏分的化学性质的季节性和垂直变化,并使用高性能尺寸排阻色谱法将这些性质与温带森林流域中相邻流(水生腐殖质)的HoA馏分的化学性质进行了比较。 (HPSEC)和1H和13C核磁共振(NMR)光谱。夏季,Oi,Oe / Oa,A和B地平线土壤中的HoA馏分的O-烷基C含量比其他季节的样品低。夏季,A和B层中HoA馏分中芳香族C的比例最高。这些季节变化没有土壤深度变化显着。从Oi到A层,随着土壤深度的增加,HoA馏分中的O-烷基C比例降低。在冬季和春季,B层的HoA馏分显示出更高的烷基C含量。从Oi到A层土壤深度的这些变化可能是由于微生物对碳水化合物碳的选择性利用所致,而在B层土壤中的变化可能是由于对矿物表面的吸附所致。流中的HoA馏分的相对分子量,每种质子的分布和来自B层的HoA馏分中的碳种类均相似,而夏季收集的流HoA馏分则来自有机层。这表明土壤中HoA馏分的化学性质的垂直变化以及水向水流的路径将在很大程度上影响河流中HoA馏分的化学性质。

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