Soil Organic Carbon Sequestration Mechanisms and the Chemical Nature of Soil Organic Matter-A Review

被引:1
作者
Almendros, Gonzalo [1 ,2 ]
Gonzalez-Perez, Jose A. [3 ]
机构
[1] CSIC, Natl Museum Nat Hist MNCN, Madrid 28006, Spain
[2] Autonomous Univ Madrid, Dept Geol & Geochem, Madrid 28049, Spain
[3] CSIC, Inst Recursos Nat & Agrobiol Sevilla IRNAS, Seville 41012, Spain
关键词
soil organic matter; carbon sequestration; humic substances; SOLID-STATE C-13; HUMIC SUBSTANCES; ANALYTICAL PYROLYSIS; PHENOLIC-COMPOUNDS; GREEN FRACTION; FULVIC-ACIDS; BLACK CARBON; DEGRADATION; STABILIZATION; NITROGEN;
D O I
10.3390/su17156689
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This article presents a review of several non-exclusive pathways for the sequestration of soil organic carbon, which can be classified into two large classical groups: the modification of plant and microbial macromolecules and the abiotic and microbial neoformation of humic substances. Classical studies have established a causal relationship between aromatic structures and the stability of soil humus (traditional hypotheses regarding lignin and aromatic microbial metabolites as primary precursors for soil organic matter). However, further evidence has emerged that underscores the significance of humification mechanisms based solely on aliphatics. The precursors may be carbohydrates, which may be transformed by the effects of fire or catalytic dehydration reactions in soil. Furthermore, humic-type structures may be formed through the condensation of unsaturated fatty acids or the alteration of aliphatic biomacromolecules, such as cutins, suberins, and non-hydrolysable plant polyesters. In addition to the intrinsic value of understanding the potential for carbon sequestration in diverse soil types, biogeochemical models of the carbon cycle necessitate the assessment of the total quantity, nature, provenance, and resilience of the sequestered organic matter. This emphasises the necessity of applying specific techniques to gain insights into their molecular structures. The application of appropriate analytical techniques to soil organic matter, including sequential chemolysis or thermal degradation combined with isotopic analysis and high-resolution mass spectrometry, derivative spectroscopy (visible and infrared), or 13C magnetic resonance after selective degradation, enables the simultaneous assessment of the concurrent biophysicochemical stabilisation mechanisms of C in soils.
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页数:22
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共 190 条
[1]   Distribution of structural units in humic substances as revealed by multi-step selective degradations and 13C-NMR of successive residues [J].
Almendros, G ;
Guadalix, ME ;
Gonzalez-Vila, FJ ;
Martin, F .
SOIL BIOLOGY & BIOCHEMISTRY, 1998, 30 (06) :755-765
[2]   13C NMR assessment of decomposition patterns during composting of forest and shrub biomass [J].
Almendros, G ;
Dorado, J ;
González-Vila, FJ ;
Blanco, MJ ;
Lankes, U .
SOIL BIOLOGY & BIOCHEMISTRY, 2000, 32 (06) :793-804
[3]   CHARACTERIZATION OF SYNTHETIC CARBOHYDRATE-DERIVED HUMIC-LIKE POLYMERS [J].
ALMENDROS, G ;
SANZ, J ;
SOBRADOS, I .
SCIENCE OF THE TOTAL ENVIRONMENT, 1989, 81-2 :91-98
[4]   EVIDENCE FOR A POLYALKYL NATURE OF SOIL HUMIN [J].
ALMENDROS, G ;
SANZ, J ;
GONZALEZVILA, FJ ;
MARTIN, F .
NATURWISSENSCHAFTEN, 1991, 78 (08) :359-362
[5]   DEGRADATIVE STUDIES ON A SOIL HUMIN FRACTION - SEQUENTIAL DEGRADATION OF INHERITED HUMIN [J].
ALMENDROS, G ;
GONZALEZVILA, FJ .
SOIL BIOLOGY & BIOCHEMISTRY, 1987, 19 (05) :513-520
[6]   STRUCTURAL STUDY ON THE SOIL HUMIN FRACTION - BORON TRIFLUORIDE-METHANOL TRANSESTERIFICATION OF SOIL HUMIN PREPARATIONS [J].
ALMENDROS, G ;
SANZ, J .
SOIL BIOLOGY & BIOCHEMISTRY, 1991, 23 (12) :1147-1154
[7]   ANALYSIS OF C-13 AND N-15 CPMAS NMR-SPECTRA OF SOIL ORGANIC-MATTER AND COMPOSTS [J].
ALMENDROS, G ;
FRUND, R ;
GONZALEZVILA, FJ ;
HAIDER, KM ;
KNICKER, H ;
LUDEMANN, HD .
FEBS LETTERS, 1991, 282 (01) :119-121
[8]   PRODUCTION OF BROWN AND GREEN HUMIC-LIKE SUBSTANCES BY ULOCLADIUM-ATRUM [J].
ALMENDROS, G ;
MARTINEZ, AT ;
DORADO, E .
SOIL BIOLOGY & BIOCHEMISTRY, 1985, 17 (02) :257-259
[9]   A STRUCTURAL STUDY OF ALKYL POLYMERS IN SOIL AFTER PERBORATE DEGRADATION OF HUMIN [J].
ALMENDROS, G ;
SANZ, J .
GEODERMA, 1992, 53 (1-2) :79-95
[10]   Pyrolysis of carbohydrate-derived macromolecules: Its potential in monitoring the carbohydrate signature of geopolymers [J].
Almendros, G ;
Dorado, J ;
GonzalezVila, FJ ;
Martin, F .
JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 1997, 40-1 :599-610