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- W2000901818 abstract "Current models of soil organic carbon (SOC) include a passive pool representing refractory soil organic matter (RSOM) with turnover times of hundreds to thousands of years. These models suggest that, as total soil C is depleted, it becomes proportionally enriched in RSOM. The objectives of our study were to quantify clay-associated organic matter resistant to peroxide treatment in soils presumed to have differing proportions of RSOM, hypothesizing that peroxide-resistant C in the clay fraction belongs to RSOM, and that its proportion will increase with total C depletion. Clay fractions (< 2 µm) from three soils from a cultivation sequence, differing in the duration of cultivation, one long-term cultivated soil and one long-term bare fallow soil corresponded to samples increasingly depleted in total organic C. Samples were suspended in 30% hydrogen peroxide and treated until no changes in C concentration were observed. Total C in the clay-peroxide suspensions decreased exponentially and displayed kinetics corresponding to labile, intermediate and peroxide-resistant pools. Carbon isotope analyses showed an enrichment of 13C in samples after peroxide treatment, compared with before, that decreased from 8‰ in forest samples to 0‰ in long-term bare fallow. The proportion of peroxide-resistant C did not differ between soils and represented 12% of initial clay-associated organic C. No proportional increase with soil C depletion was observed and when expressed on a whole-soil basis, the results underestimated proposed values for the RSOM pool, suggesting that peroxide treatment may not be appropriate for the estimation of the RSOM pool. Oxydation à l'eau oxygénée de la matière organique de la fraction argiles des sols d'une chronosequence de mise en culture Les modèles actuels de la dynamique du carbone dans les sols prévoient un compartiment de carbone stable, caractérisé par des temps de renouvellement de l'ordre du siècle au millénaire. Ces modèles suggèrent que si les sols s'appauvrissent en carbone, ils devraient proportionnellement s'enrichir en carbone stable. Nous avons fait l'hypothèse qu'une partie de ce carbone stable était présent dans des matières organiques résistantes à l'eau oxygénée de la fraction argiles des sols (< 2 µm). Ce travail avait donc pour objectif de quantifier ces matières organiques, dans des sols correspondant à une gamme de teneurs en carbone décroissantes: trois sols provenant d'une chronoséquence de mise en culture, différant par la durée de la culture, un sol cultivé depuis de nombreuses années, et un sol provenant d'un essai de longue durée en jachère nue. Les fractions < 2 µm de ces sols ont été agitées en suspension dans des solutions d'eau oxygénée (30%) jusqu'à ce que leur teneur en carbone se stabilise. Les teneurs en carbone des fractions ont diminué suivant une loi exponentielle et nous avons distingué des compartiments labile, moyennement résistants et stables vis à vis de l'oxydation à H2O2. La fraction résistante à l'eau oxygénée était généralement enrichie en 13C de 0‰ (jachère nue) à 8‰ (sol sous forêt). La proportion de C résistant à l'eau oxygénée s'est avérée être constante et égale 12% du carbone des fractions < 2 µm pour les différents sols. Le fait que la proportion de C résistant à l'eau oxygénée dans les fractions argile n'augmente pas avec l'appauvrissement en C des sols, tend à montrer que cette méthode ne permet pas d'isoler le carbone stable des sols." @default.
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- W2000901818 date "2004-07-02" @default.
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- W2000901818 title "Peroxide oxidation of clay-associated organic matter in a cultivation chronosequence" @default.
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- W2000901818 doi "https://doi.org/10.1111/j.1365-2389.2004.00626.x" @default.
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