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Does incorporation of cowpea-maize residue mixes influence nitrous oxide emission and mineral nitrogen release in a tropical luvisol?

机译:cow豆玉米残留混合物的掺入是否会影响热带卢维索中的一氧化二氮排放和矿物质氮释放?

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In the face of climate change, quantification of the emission of nitrous oxide from soils in relation to sufficient N availability for crop uptake has assumed much significance. This study used the 15N stable isotope technique, under controlled laboratory conditions, to quantify the interactive effect on and relative contributions of the component species to N2O emission and mineral N dynamics in a tropical luvisol incorporated with different rates of cowpea-maize residue mixtures. The results show that increasing the maize residue proportion in the mixture significantly decreases N2O emission compared to the sole cowpea incorporation but increases mineral N concentration compared to sole maize residue incorporation. It is concluded that mixing low C:N ratio cowpea residue with high C:N ratio maize residue has potential for N management in tropical legume-cereal intercropping systems with the view to minimizing N2O emission while making N available for crop uptake.
机译:面对气候变化,量化土壤中一氧化二氮的排放量与摄取作物所需的充足氮有关具有重要意义。这项研究使用 15 N稳定同位素技术,在受控实验室条件下,量化了各组分对N 2 O排放和矿物N的相互作用和相对影响热带卢维索与不同比例的rates豆-玉米残渣混合物的混合动力学结果表明,与单独掺入cow豆相比,增加混合物中玉米残留量的比例显着降低了N <2> O的排放,但与单独掺入玉米residue相比,增加了矿质氮的含量。结论:在热带豆科谷物间作系统中,将低C:N比cow豆残渣与高C:N比玉米残渣混合具有氮素管理的潜力,以期最大程度地减少N 2 O的排放。 N可用于作物吸收。

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