首页> 外文期刊>International journal of environmental analytical chemistry >High-performance liquid chromatography (HPLC)-size exclusion chromatography (SEC) for qualitative detection of humic substances and dissolved organic matter in mineral soils and peats in Lithuania
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High-performance liquid chromatography (HPLC)-size exclusion chromatography (SEC) for qualitative detection of humic substances and dissolved organic matter in mineral soils and peats in Lithuania

机译:高效液相色谱(HPLC)-尺寸排阻色谱(SEC)用于定性检测立陶宛矿质土壤和泥炭中的腐殖质和溶解有机物

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摘要

High-performance liquid chromatography (HPLC) with size exclusion (SEC) separation function was used to isolate and examine the molecular mass (MM) distributions and polydispersity of humic substances (HSs) and dissolved organic matter (DOM) from mineral soils and peats. The aim was to improve their detailed characterisation and to inform of their soil carbon (C) sequestration and environmental quality. This is the first study conducted in Lithuania in which HSs and DOM, separated from two soil types, have been used to characterise soil at the molecular level. The HPLC-SEC, as a separation method, was coupled with diode-array detection (DAD), thus enabling the separation of molecular fractions. Results showed that HPLC-SEC can be used to determine the MM of HSs in soil, provided that the relation between retention time and MM is known and a suitable method for fitting the HS peak is available. The UV-spectra analysis showed that DOM has a larger MM (M-w=2439-3436Da), which contains more aliphatic C. The HS fraction has a smaller MM (M-w=2776Da), with aromatic structures that reflect a higher aromaticity. Separated fractions had characteristic MMs of humic acid (HA) and fulvic acid (FA) and DOM. The HSs separated from peat samples were characterised by higher aromaticity, humification and stability. The HSs extracted from mineral soil samples showed a higher degradability level. The results also show the MM distribution and polydispersity of HS and DOM fractions (M-w/M-n=1.009-1.252) are relatively homogenous in both soil types. Findings confirm that chromatographic and spectrometric parameters can be used for characterisation of both HSs and DOM, and for detecting changes in organic matter quality. Moreover, they can also be used for a further understanding the C-cycle and could be applied for enhancing soil C-sequestration and informing environmental quality management.
机译:使用具有尺寸排阻(SEC)分离功能的高效液相色谱(HPLC)来分离和检查矿物土壤和泥炭中腐殖质(HSs)和溶解性有机物(DOM)的分子量(MM)分布和多分散性。目的是改善其详细的特性,并告知其土壤碳(C)的固存和环境质量。这是在立陶宛进行的第一项研究,其中将HSs和DOM从两种土壤类型中分离出来,用于在分子水平上表征土壤。 HPLC-SEC作为一种分离方法,与二极管阵列检测(DAD)结合使用,从而可以分离分子级分。结果表明,只要已知保留时间和MM之间的关系,并且可以找到适合HS峰的合适方法,则HPLC-SEC可用于测定土壤中HS的MM。紫外光谱分析表明,DOM具有较大的MM(M-w = 2439-3436Da),其中包含更多的脂肪族C。HS馏分具有较小的MM(M-w = 2776Da),具有反映较高芳香性的芳族结构。分离的馏分具有腐殖酸(HA)和富里酸(FA)和DOM的特征MM。从泥炭样品中分离出的HS具有较高的芳香性,增湿性和稳定性。从矿质土壤样品中提取的HS表现出较高的降解度。结果还表明,在两种土壤类型中,HS和DOM组分(M-w / M-n = 1.009-1.252)的MM分布和多分散性相对均一。研究结果证实,色谱和光谱参数可用于表征HS和DOM,以及检测有机物质量的变化。此外,它们还可以用于进一步理解碳循环,并可以用于增强土壤碳固存和告知环境质量管理。

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