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Characterization of Soil Organic Matter Individual Fractions (Fulvic Acids, Humic Acids, and Humins) by Spectroscopic and Electrochemical Techniques in Agricultural Soils

机译:农业土壤中光谱和电化学技术对土壤有机物质单个级分(Fulvic酸,腐殖酸和腐害)的特征

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摘要

The objective of this paper was to investigate the molecular characterization of soil organic matter fractions (humic substances (HS): fulvic acids-FAs, humic acids-HAs, and humins-HNs), which are the most reactive soil components. A wide spectrum of spectroscopic (UV–VIS and VIS–nearIR), as well as electrochemical (zeta potential, particle size diameter, and polydispersity index), methods were applied to find the relevant differences in the behavior, formation, composition, and sorption properties of HS fractions derived from various soils. Soil material (n = 30) used for the study were sampled from the surface layer (0–30 cm) of agricultural soils. FAs and HAs were isolated by sequential extraction in alkaline and acidic solutions, according to the International Humic Substances Society method, while HNs was determined in the soil residue (after FAs and HAs extraction) by mineral fraction digestion using a 0.1M HCL/0.3M HF mixture and DMSO. Our study showed that significant differences in the molecular structures of FAs, Has, and HNs occurred. Optical analysis confirmed the lower molecular weight of FAs with high amount of lignin-like compounds and the higher weighted aliphatic–aromatic structure of HAs. The HNs were characterized by a very pronounced and strong condensed structure associated with the highest molecular weight. HAs and HNs molecules exhibited an abundance of acidic, phenolic, and amine functional groups at the aromatic ring and aliphatic chains, while FAs mainly showed the presence of methyl, methylene, ethenyl, and carboxyl reactive groups. HS was characterized by high polydispersity related with their structure. FAs were characterized by ellipsoidal shape as being associated to the long aliphatic chains, while HAs and HNs revealed a smaller particle diameter and a more spherical shape caused by the higher intermolecular forcing between the particles. The observed trends directly indicate that individual HS fractions differ in behavior, formation, composition, and sorption properties, which reflects their binding potential to other molecules depending on soil properties resulting from their type. The determined properties of individual HS fractions are presented as averaged characteristics over the examined soils with different physico-chemical properties.
机译:本文的目的是探讨土壤有机质分数的分子表征(腐殖质(HS):Fulvic酸 - Fas,腐殖酸 - 具有疏水酸和肱湿HNS),其是最具活性的土壤成分。应用宽的光谱(UV-Vis和Vis-uthir),以及电化学(Zeta电位,粒度直径和多分散性指数),方法以寻找行为,形成,组成和吸附的相关差异衍生自各种土壤的HS级分的性质。用于该研究的土壤材料(n = 30)从地表层(0-30厘米)的农业土壤中取样。根据国际腐殖质社会方法,通过碱性和酸性溶液中连续提取的Fas和已被隔离,而使用0.1M HCl / 0.3M的矿物馏分消化,在土壤残留物(Fas后并提取)中测定HNS。 HF混合物和DMSO。我们的研究表明,发生了Fas的分子结构的显着差异,并且发生了HNS。光学分析证实了具有大量木质素样化合物的Fas的较低分子量和具有较高的加权脂族芳族结构。通过与最高分子量相关的具有非常明显和强的浓缩结构的表征。具有和HNS分子在芳香环和脂族链处表现出丰富的酸性,酚醛和胺官能团,而FAS主要显示出甲基,亚甲基,乙烯基和羧基反应基团的存在。 HS的特点是与其结构相关的高多分散性。 Fas以椭圆形形状为特征,与长脂族链相关,而具有和HNS露出较小的粒径和由颗粒之间的更高的分子间迫使引起的更球形。观察到的趋势直接表明单个HS级分在行为,形成,组合物和吸附性质中不同,这反映了它们对其他分子的结合潜力,这取决于它们的类型产生的土壤性质。确定的单个HS级分的性质作为在具有不同物理化学性质的检查的土壤上的平均特征。

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