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不同年代的埃特纳火山土壤上用甘油萃取有机质的特性
作者姓名:A. BAGLIERI  A. IOPPOLO  M. N&#;GRE  C. ABBATE  M. GENNARI
作者单位:[1]Dipartimento di scienze Agronomiche, Agrochimiche e deUe Produzioni Animali, Sezione di Scienze Agrochimiche, Universita di Catania (Italy) [2]Dipartimento di Valorizzazione e protezione delle Risorse Agroforestali, Settore Chimica Agraria, Universita di Torino, Grugliasco- Turin (Italy)
基金项目:Project supported by the Research Foundation of University of Catania, Italy (No. ORCT067410/2006)
摘    要:We characterized humic acids (HAs) and glycerol-extractable organic fractions (GEOFs) extracted from four Andisols, taken from comparable soil-climate conditions on the east side of Mount Etna. The soils were formed on old lava (about 9 000 years ago), old tephra (about 8 700 years ago), recent lava (about 2 600 years ago) and recent tephra (about 3 600 years ago). A part of the organic matter of the soils, deprived of HAs and fulvic acids (FAs), was isolated by glycerol extraction. The GEOF can not be extracted with alkaline solutions, probably because it is closely bound to the mineral component of the soil. The characterization of the extracted organic fraction was carried out using elementary and functional group analysis and Fourier transform infrared (FT-IR) spectroscopy. About 20 extractions were necessary to extract the HA and FA from the older soils and about 10 extractions to extract them from the younger soils. Data showed that the GEOFs had a greater ash content and a smaller N content, as well as a greater presence of aliphatic compounds and carboxylic groups as compared to the HA extracted from the same soil. The GEOFs extracted from younger soils also had a lower yield, ash and COOH-group content, and were more aliphatic than the GEOF extracted from older soils. Finally, the GEOFs were more closely bound to the amorphous component of the soil (‘short-range’ minerals) and consequently less subject to biodegradation.

关 键 词:土壤形成  埃特纳火山  有机物质  甘油  脂肪族化合物  分离提取  年龄  萃取
收稿时间:26 March 2009

Characterization of glycerol-extractable organic matter from Etna soils of different ages
A. BAGLIERI,A. IOPPOLO,M. N&#;GRE,C. ABBATE,M. GENNARI.Characterization of glycerol-extractable organic matter from Etna soils of different ages[J].Pedosphere,2010,20(1):120-128.
Authors:A BAGLIERI  A IOPPOLO  M N&#;GRE  C ABBATE and M GENNARI
Institution:Dipartimento di scienze Agronomiche, Agrochimiche e delle Produzioni Animali, Sezione di Scienze Agrochimiche, Università di Catania (Italy),Dipartimento di scienze Agronomiche, Agrochimiche e delle Produzioni Animali, Sezione di Scienze Agrochimiche, Università di Catania (Italy),Dipartimento di Valorizzazione e protezione delle Risorse Agroforestali, Settore Chimica Agraria, Università di Torino, Grugliasco-Turin (Italy),Dipartimento di scienze Agronomiche, Agrochimiche e delle Produzioni Animali, Sezione di Scienze Agrochimiche, Università di Catania (Italy) and Dipartimento di scienze Agronomiche, Agrochimiche e delle Produzioni Animali, Sezione di Scienze Agrochimiche, Università di Catania (Italy)
Abstract:We characterized humic acids (HAs) and glycerol-extractable organic fractions (GEOFs) extracted from four Andisols, taken from comparable soil-climate conditions on the east side of Mount Etna. The soils were formed on old lava (about 9 000 years ago), old tephra (about 8 700 years ago), recent lava (about 2 600 years ago) and recent tephra (about 3 600 years ago). A part of the organic matter of the soils, deprived of HAs and fulvic acids (FAs), was isolated by glycerol extraction. The GEOF can not be extracted with alkaline solutions, probably because it is closely bound to the mineral component of the soil. The characterization of the extracted organic fraction was carried out using elementary and functional group analysis and Fourier transform infrared (FT-IR) spectroscopy. About 20 extractions were necessary to extract the HA and FA from the older soils and about 10 extractions to extract them from the younger soils. Data showed that the GEOFs had a greater ash content and a smaller N content, as well as a greater presence of aliphatic compounds and carboxylic groups as compared to the HA extracted from the same soil. The GEOFs extracted from younger soils also had a lower yield, ash and COOH-group content, and was more aliphatic than the GEOF extracted from older soils. Finally, the GEOFs were more closely bound to the amorphous component of the soil (short-range minerals) and consequently less subject to biodegradation.
Keywords:Andisol  Fourier transform infrared spectra  humic substances
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