Dissolved organic carbon in forest floor leachates: simple degradation products or humic substances?

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OriginalspracheEnglisch
Seiten (von - bis)37-47
Seitenumfang11
FachzeitschriftScience of the Total Environment, The
Jahrgang152
Ausgabenummer1
PublikationsstatusVeröffentlicht - 25 Juli 1994
Extern publiziertJa

Abstract

Dissolved organic carbon (DOC) in forest soils exerts a profound influence on soil internal carbon fluxes. We focused our research on whether DOC mobilized in the forest floor can be already classified as humic material. Our approach comprises chemical structural studies of DOC fractions by degradative methods, CPMAS 13C-NMR spectroscopy, and pyrolysis-field ionization mass spectrometry. Hydrophobic acids are mainly composed of plant-derived compounds which become water-soluble by oxidative biodegradation. A part of the carbohydrate moieties in this fraction is probably covalently bound to phenolic structures in lignocellulose-degradation products. As indicated by the higher degree of biooxidation the hydrophilic acids appear to be genetically downstream from the hydrophobic acids. Hydrophobic neutrals are mainly composed of only slightly altered plant-derived material, with less degraded lignin moieties and relatively high contents of non-carbohydrate aliphatics. Hydrophilic neutrals are characterized by the highest concentrations of carbohydrates derived from plant and microbial origin. DOC represents a continuum of organic substances from only slightly modified plant-derived oligosaccharides over highly altered lignin-derived compounds to products of microbial resynthesis. In contrast to the recalcitrant organic matter in humic soil horizons, hydrophobic acids do not show two main characteristics of humification, which can be addressed as enrichment of C-C linked aromatic moieties and as cross-linking of aliphatic compounds. Nevertheless, the hydrophobic acids in particular can be attributed as precursors of humic substances in illuvial soil horizons.

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Dissolved organic carbon in forest floor leachates: simple degradation products or humic substances? / Guggenberger, Georg; Zech, Wolfgang.
in: Science of the Total Environment, The, Jahrgang 152, Nr. 1, 25.07.1994, S. 37-47.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

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title = "Dissolved organic carbon in forest floor leachates: simple degradation products or humic substances?",
abstract = "Dissolved organic carbon (DOC) in forest soils exerts a profound influence on soil internal carbon fluxes. We focused our research on whether DOC mobilized in the forest floor can be already classified as humic material. Our approach comprises chemical structural studies of DOC fractions by degradative methods, CPMAS 13C-NMR spectroscopy, and pyrolysis-field ionization mass spectrometry. Hydrophobic acids are mainly composed of plant-derived compounds which become water-soluble by oxidative biodegradation. A part of the carbohydrate moieties in this fraction is probably covalently bound to phenolic structures in lignocellulose-degradation products. As indicated by the higher degree of biooxidation the hydrophilic acids appear to be genetically downstream from the hydrophobic acids. Hydrophobic neutrals are mainly composed of only slightly altered plant-derived material, with less degraded lignin moieties and relatively high contents of non-carbohydrate aliphatics. Hydrophilic neutrals are characterized by the highest concentrations of carbohydrates derived from plant and microbial origin. DOC represents a continuum of organic substances from only slightly modified plant-derived oligosaccharides over highly altered lignin-derived compounds to products of microbial resynthesis. In contrast to the recalcitrant organic matter in humic soil horizons, hydrophobic acids do not show two main characteristics of humification, which can be addressed as enrichment of C-C linked aromatic moieties and as cross-linking of aliphatic compounds. Nevertheless, the hydrophobic acids in particular can be attributed as precursors of humic substances in illuvial soil horizons.",
keywords = "C-NMR spectroscopy, Degradative characterization, DOC fractionation, DOC mobilization, Pyrolysis-mass spectrometry",
author = "Georg Guggenberger and Wolfgang Zech",
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T1 - Dissolved organic carbon in forest floor leachates: simple degradation products or humic substances?

AU - Guggenberger, Georg

AU - Zech, Wolfgang

N1 - Funding information: This work was supported by the Bayerisches Ministerium fiir Landesentwicklung und Umwelt-fragen. We are indebted to Professor Dr H.-R. Schulten (Fachhochschule Fresenius, Wiesbaden) for recording the pyrolysis-field ionization mass spectra. We also thank Wolfram G6tz and Bruno Glaser for their laboratory assistance.

PY - 1994/7/25

Y1 - 1994/7/25

N2 - Dissolved organic carbon (DOC) in forest soils exerts a profound influence on soil internal carbon fluxes. We focused our research on whether DOC mobilized in the forest floor can be already classified as humic material. Our approach comprises chemical structural studies of DOC fractions by degradative methods, CPMAS 13C-NMR spectroscopy, and pyrolysis-field ionization mass spectrometry. Hydrophobic acids are mainly composed of plant-derived compounds which become water-soluble by oxidative biodegradation. A part of the carbohydrate moieties in this fraction is probably covalently bound to phenolic structures in lignocellulose-degradation products. As indicated by the higher degree of biooxidation the hydrophilic acids appear to be genetically downstream from the hydrophobic acids. Hydrophobic neutrals are mainly composed of only slightly altered plant-derived material, with less degraded lignin moieties and relatively high contents of non-carbohydrate aliphatics. Hydrophilic neutrals are characterized by the highest concentrations of carbohydrates derived from plant and microbial origin. DOC represents a continuum of organic substances from only slightly modified plant-derived oligosaccharides over highly altered lignin-derived compounds to products of microbial resynthesis. In contrast to the recalcitrant organic matter in humic soil horizons, hydrophobic acids do not show two main characteristics of humification, which can be addressed as enrichment of C-C linked aromatic moieties and as cross-linking of aliphatic compounds. Nevertheless, the hydrophobic acids in particular can be attributed as precursors of humic substances in illuvial soil horizons.

AB - Dissolved organic carbon (DOC) in forest soils exerts a profound influence on soil internal carbon fluxes. We focused our research on whether DOC mobilized in the forest floor can be already classified as humic material. Our approach comprises chemical structural studies of DOC fractions by degradative methods, CPMAS 13C-NMR spectroscopy, and pyrolysis-field ionization mass spectrometry. Hydrophobic acids are mainly composed of plant-derived compounds which become water-soluble by oxidative biodegradation. A part of the carbohydrate moieties in this fraction is probably covalently bound to phenolic structures in lignocellulose-degradation products. As indicated by the higher degree of biooxidation the hydrophilic acids appear to be genetically downstream from the hydrophobic acids. Hydrophobic neutrals are mainly composed of only slightly altered plant-derived material, with less degraded lignin moieties and relatively high contents of non-carbohydrate aliphatics. Hydrophilic neutrals are characterized by the highest concentrations of carbohydrates derived from plant and microbial origin. DOC represents a continuum of organic substances from only slightly modified plant-derived oligosaccharides over highly altered lignin-derived compounds to products of microbial resynthesis. In contrast to the recalcitrant organic matter in humic soil horizons, hydrophobic acids do not show two main characteristics of humification, which can be addressed as enrichment of C-C linked aromatic moieties and as cross-linking of aliphatic compounds. Nevertheless, the hydrophobic acids in particular can be attributed as precursors of humic substances in illuvial soil horizons.

KW - C-NMR spectroscopy

KW - Degradative characterization

KW - DOC fractionation

KW - DOC mobilization

KW - Pyrolysis-mass spectrometry

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JO - Science of the Total Environment, The

JF - Science of the Total Environment, The

SN - 0048-9697

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ER -

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