Response of greenhouse gas emission to application of carbon and nitrogen in soils different in land use
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    Abstract:

    Illustrating mechanisms of N2O generation in and emissions of CO2 and CH4 from the soil could help us design greenhouse gas mitigation strategies. An experiment was carried out in fields of acid red soil different in land use, i.e. vegetable garden, paddy field, tea garden and forest in Jinjing river region, Changsha, to study effects of application of carbon, nitrogen and nitrification inhibitor on N2O, CO2 and CH4 emissions under constant temperature and soil moisture, using the static incubation-gas chromatograph method. Results show that less N2O emission was observed from the acid red soil, low in pH, after application of N fertilizer; the addition of glucose stimulated N2O emission from the soil applied with urea and from soil denitrification. Heterotrophic nitrification might be the main pathway of N2O generation in acid red soil and nitrification inhibitor Dicyandiamide (DCD) had no significant effect on N2O reduction in the acid red soil. In terms of total N2O emission from the soil applied with N and C, the fields different in land use followed the the order of tea garden > vegetable garden > paddy field > forest land. Extraneous organic carbon could significantly stimulate soil CO2 emission from the four fields, showing an order of tea garden and paddy field > vegetable garden and forest land, but did not have mucheffect on CH4 emission in all the four fields except paddy field.

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Wang Haifei, Jia Xingyong, Gao Bing, Huang Tao, Su Fang, Ju Xiaotang. Response of greenhouse gas emission to application of carbon and nitrogen in soils different in land use[J]. Acta Pedologica Sinica,2013,50(6):1170-1179.

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History
  • Received:April 19,2013
  • Revised:June 14,2013
  • Adopted:August 26,2013
  • Online: August 30,2013
  • Published: