[Effects of biological regulated measures on active organic carbon and erosion-resistance in the Three Gorges Reservoir region soil].

Huan Jing Ke Xue

Key Laboratory of Eco-environments in Three Gorges Reservoir Region (Ministry of Education), College of Resources and Environment, Chongqing 400715, China.

Published: July 2013

AI Article Synopsis

  • The study explores soil characteristics and erosion control in the Three Gorges Reservoir Area, analyzing soil organic carbon (SOC) and organic carbon fractions under seven biological management practices.
  • Results indicated that SOC and active organic carbon decreased with soil depth, with higher concentrations in the top layer (0-10 cm) compared to deeper layers, revealing a significant impact of biological measures on soil stability.
  • The research highlights that specific biological measures, especially Koelreuteria bipinnata + Cassia suffruticasa, improve soil structure and erosion resistance, while also showing that active organic carbon is negatively correlated with soil erodibility.

Article Abstract

To gain a better knowledge of characteristics of soils and provide a scientific basis for soil erosion control in the Three Gorges Reservoir Area, contents of aggregates and total soil organic carbon (SOC), as well as soil active organic carbon fractions including particulate organic carbon (POC), readily oxidized organic carbon (ROC), dissolved organic carbon (DOC), microbial biomass carbon (MBC) in the 0-30 cm soil layer under seven different biological regulated measures were studied by the field investigation combined with the laboratory analysis. Results showed that the content of the SOC and active organic carbon fractions decreased with the increasing soil depth; the content of the SOC and active organic carbon fractions in 0-10 cm was significantly higher than that in 20-30 cm. The stability of soil aggregates were also significantly influenced by biological regulated measures, the content of > 0.25 mm water-stable aggregates in seven types of biological regulated measures was in the order of Koelreuteria bipinnata + Cassia suffruticasa > hedgerows > closed forest > natural restoration > economic forest > traditional planting > control plot, moreover, the content of 0.25 mm water-stable aggregates correlated positively with the content of SOC. Soils under different biological regulated measures all demonstrated fractal features, and soil under the measure of Koelreuteria bipinnata + Cassia suffruticasa was found to have the lowest value of fractal dimension and soil erodiable K, indicating a relatively strong structure stability and erosion-resistant capacity. Negative correlation was observed when compared the content of active organic carbon fractions with the soil erodiable K. It can be concluded that properties of soil can be managed through biological regulated measures; thence had an influence on the soil erosion-resistant capacity.

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