2023
DOI: 10.3390/agronomy13061588
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Chemical Fertilization Alters Soil Carbon in Paddy Soil through the Interaction of Labile Organic Carbon and Phosphorus Fractions

Suphathida Aumtong,
Chakrit Chotamonsak,
Paweenuch Pongwongkam
et al.

Abstract: The influence of long-term chemical fertilization in paddy soils is based on the interaction between labile carbon and phosphorus fractions and the manner in which this influences soil organic carbon (SOC). Four soil depths (0–30 cm) were analyzed in this study. Easily oxidized organic carbon components, such as permanganate oxidized carbon (POXC) and dissolved organic carbon (DOC), and other physicochemical soil factors were evaluated. The correlation and principal component analyses were used to examine the … Show more

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“…Improved soil health and a more suitable environment for microorganisms were demonstrated by the distribution of POXC content. More suitable ecosystem conditions due to the amount of biomass and moisture regime microorganisms (GRf, UAL, and PA) in the deeper layer were still observed in GRunf [48,49]. Similar results on the influence of land use on POXC have been published in [49].…”
Section: Discussionsupporting
confidence: 77%
“…Improved soil health and a more suitable environment for microorganisms were demonstrated by the distribution of POXC content. More suitable ecosystem conditions due to the amount of biomass and moisture regime microorganisms (GRf, UAL, and PA) in the deeper layer were still observed in GRunf [48,49]. Similar results on the influence of land use on POXC have been published in [49].…”
Section: Discussionsupporting
confidence: 77%