Literature DB >> 17310698

Studies of the compositions of humic acids from Amazonian Dark Earth soils.

Etelvino H Novotny1, Eduardo R deAzevedo, Tito J Bonagamba, Tony J F Cunha, Beáta E Madari, Vinícius de M Benites, Michael H B Hayes.   

Abstract

The compositions of humic acids (HAs) isolated from cultivated and forested "Terra Preta de Indio" or Amazonian Dark Earth soils (anthropogenic soils) were compared with those from adjacent non-anthropogenic soils (control soils) using elemental and thermogravimetric analyses, and a variety of solid-state nuclear magnetic resonance techniques. The thermogravimetric index, which indicates the molecular thermal resistance, was greater for the anthropogenic soils than for the control soils suggesting polycyclic aromatic components in the former. The cultivated anthropogenic soils were more enriched in C and depleted in H than the anthropogenic soils under forest, as the result of the selective degradation of aliphatic structures and the possible enrichment of H-deficient condensed aromatic structures. The combination of variable amplitude cross-polarization (VACP) and chemical shift anisotropy with total suppression of spinning sidebands experiments with composite pi pulses could be used to quantify the aromaticity of the HAs from the anthropogenic soils. From principal component analysis, using the VACP spectra, it was possible to separate the different constituents of the HAs, such as the carboxylated aromatic structures, from the anthropogenic soils and plant derived compounds. The data show that the HAs from anthropogenic soils have high contents of aryl and ionisable oxygenated functional groups, and the major functionalities from adjacent control soils are oxygenated functional groups from labile structures (carbohydrates, peptides, and with evidence for lignin structures). The anthropogenic soils HAs can be considered to be more recalcitrant, and with more stable reactive functional groups which may, in part, explain their more sustainable fertility due to the organic matter contribution to the soil cation exchange capacity.

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Year:  2007        PMID: 17310698     DOI: 10.1021/es060941x

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  4 in total

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Authors:  Guixue Song; Michael H B Hayes; Etelvino H Novotny; Andre J Simpson
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Journal:  Biotechnol Biofuels       Date:  2011-11-28       Impact factor: 6.040

3.  Correlations and nonlinear partition of nonionic organic compounds by humus-like substances humificated from rice straw.

Authors:  Liufen Ren; Daohui Lin; Kun Yang
Journal:  Sci Rep       Date:  2019-10-22       Impact factor: 4.379

4.  Robust DNA protocols for tropical soils.

Authors:  Andressa Monteiro Venturini; Fernanda Mancini Nakamura; Júlia Brandão Gontijo; Aline Giovana da França; Caio Augusto Yoshiura; Jéssica Adriele Mandro; Siu Mui Tsai
Journal:  Heliyon       Date:  2020-05-13
  4 in total

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