4.1 Article

SOIL CO2 EMISSION AS RELATED TO INCORPORATION OF SUGARCANE CROP RESIDUES AND AGGREGATE BREAKING AFTER ROTARY TILLER

Journal

ENGENHARIA AGRICOLA
Volume 31, Issue 6, Pages 1075-1084

Publisher

SOC BRASIL ENGENHARIA AGRICOLA
DOI: 10.1590/S0100-69162011000600005

Keywords

soil respiration; soil tillage; carbon dioxide; temporal variability of soil CO2 emission

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Soil tillage is a process that accelerates soil organic matter decomposition transferring carbon to atmosphere, mainly in the CO2 form. In this study, the effect of rotary tillage on soil CO2 emission was investigated, including the presence of crop residues on the surface. Emissions were evaluated during 15 days after tillage in 3 plots: 1) non-tilled and without crop residues on soil surface (NTwo), 2) rotary tiller without the presence of crop residues on soil surface (RTwo), and 3) rotary tiller with the presence of crop residues in soil surface (RTw). Emissions from the RTw plot were higher than the other plots, (0.777 g CO2 m(-2) h(-1)), with the lowest emissions recorded in the NTwo plot (0.414 g CO2 m(-2) h(-1)). Total emission indicates that the difference of C-CO2 emitted to atmosphere corresponds to 3% of the total additional carbon in the crop residues in the RTw plot compared to RTwo. The increase in the RTwo emission in comparison to NTwo was followed by changes in the aggregate size distribution, especially those with average diameter lower than 2 mm. The increase in emission from the RTw plot in relation to RTwo was related to a decrease in crop residue mass on the surface, and its higher fragmentation and incorporation in soil. When the linear correlation between soil CO2 emission, and soil temperature and soil moisture is considered, only the RTw treatment showed significant correlation (p<0.05) with soil moisture.

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