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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >The composition of dissolved organic matter in forest soil solutions: changes induced by seasons and passage through the mineral soil
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The composition of dissolved organic matter in forest soil solutions: changes induced by seasons and passage through the mineral soil

机译:森林土壤溶液中溶解性有机物的组成:由季节和通过矿质土壤引起的变化

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Dissolved organic matter in forest soils is a mixture of specific low-molecular-weight compounds and high-molecular-weight polyelectrolytes. The distribution of molecules of different molecular charge, weight, and size controls the reactivity of dissolved organic matter in the soil and, once exported from the soil, in the aqueous environment. The objective of this study was to track changes in the molecular composition of dissolved organic matter in soil as induced by seasons and the passage through the soil. In a 27-month field experiment, we collected seepage water from the organic forest floor layers and porewater in the mineral subsoil under a Scots pine (Pinus sylvestris L.) and a European beech (Fagus sylvatica L.) stand. In the solutions, we measured the concentrations of organic carbon (C) and the composition of organic matter in combined 3-month samples using liquid-state H-1-NMR spectroscopy. Parallel to seasonal variations in the concentration of dissolved organic C, the H-1-NMR spectra of dissolved organic matter in forest floor leachates showed remarkable changes. At the pine site, dissolved organic matter released during winter and spring contained larger proportions of H associated with O-containing structures and Of low-molecular-weight compounds. During summer and autumn, the contribution of O-containing structures and low-molecular-weight compounds declined and broad signals in the aromatic and aliphatic region indicated the release of high-molecular-weight aromatic and aliphatic macromolecules. Forest floor leachates under beech showed a similar trend but a larger number of low-molecular-weight compounds was present in winter and spring samples. In spring, summer, and autumn samples acetate and sometimes succinate were most prominent. During the passage of dissolved organic matter through the upper mineral soil at the pine site, the number and intensity of signals due to low-molecular-weight compounds increased. These substances were thus more mobile than the macromolecules and/or released due to microbial transformation of organic matter. At the beech site subsoil porewater contained less low-molecular-weight compounds than the forest floor solutions but the present ones had increased signal intensities. We suggest that the differences of dissolved organic matter transformations during the passage through the upper mineral soil at the two sites were due to different microbial activity in the soils. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 49]
机译:森林土壤中溶解的有机物是特定的低分子量化合物和高分子量聚电解质的混合物。具有不同分子电荷,重量和大小的分子的分布控制着土壤中溶解的有机物的反应性,一旦从土壤中输出,则在水环境中也是如此。这项研究的目的是跟踪季节和通过土壤引起的土壤中溶解性有机物分子组成的变化。在一个为期27个月的田间实验中,我们从有机森林地表层和渗碳层中收集了苏格兰松树(Pinus sylvestris L.)和欧洲山毛榉(Fagus sylvatica L.)立场下的矿物地下土壤中的孔隙水。在溶液中,我们使用液态H-1-NMR光谱法测量了合并的3个月样品中有机碳(C)的浓度和有机物质的组成。与溶解有机碳浓度的季节性变化平行,林地渗滤液中溶解有机物的H-1-NMR光谱显示出显着变化。在松树地带,冬季和春季释放的溶解有机物含有较大比例的H(与含O结构和低分子量化合物相关)。在夏季和秋季,含O结构和低分子量化合物的贡献下降,芳香族和脂肪族区域中的宽信号表明高分子量芳香族和脂肪族大分子的释放。山毛榉下的林地渗滤液显示出相似的趋势,但冬季和春季样品中存在大量的低分子量化合物。在春季,夏季和秋季,乙酸盐和琥珀酸盐样品最为突出。在溶解的有机物通过松树部位的上部矿质土壤的过程中,由于低分子量化合物而产生的信号的数量和强度增加。因此,这些物质比大分子更具流动性和/或由于有机物的微生物转化而释放。在山毛榉部位,土壤下的孔隙水所含的低分子量化合物比林地溶液少,但目前的溶液具有更高的信号强度。我们认为,在两个位置穿过上部矿质土壤的过程中,溶解有机物转化的差异是由于土壤中微生物活性的不同所致。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:49]

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