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气候变化对农田生态系统碳氮过程的影响及其对生产的启示
引用本文:熊正琴,邹建文,潘根兴.气候变化对农田生态系统碳氮过程的影响及其对生产的启示[J].农业环境保护,2011(9):1720-1725.
作者姓名:熊正琴  邹建文  潘根兴
作者单位:[1]南京农业大学农业与气候变化研究中心,南京210095 [2]南京农业大学江苏省低碳农业与温室气体减排重点实验室,南京210095
基金项目:公益性行业农业科研专项(200903003);教育部新世纪人才支持计划(NCET-10-0475);国家自然科学基金项目(40971139)
摘    要:从农田生态系统过程角度综合分析了气候变化(CO2]增加、温度升高)对土壤碳库、氮供给生物化学过程的综合影响和长期效应。总结指出,CO2]增加、温度升高对农田生态系统过程的影响具有明显的时间效应,短时间尺度上加快农田土壤养分周转,改变碳氮组分,长时间尺度上导致土壤养分有效性降低;CO2]增加、温度升高和养分管理对农田生态系统过程的影响具有显著的交互作用,土壤养分有效性制约着气候变化对农田生态系统生产力和碳汇功能的影响。因此,气候变化(CO2]增加、温度升高)情景下对农业生产管理包括施肥运筹及秸秆还田策略等的启示在于:根据气候变化背景下土壤养分的周转规律有效管理农田土壤养分、保持农田土壤肥力,从而保障农业高产的可持续性以及农田碳汇的生态服务功能。

关 键 词:氮素限制性  土壤呼吸  FACE  碳汇  时间效应

Adaptation of Cropland Ecosystem Carbon and Nitrogen Process to Climate Change and Indication for Agricultural Managements
XIONG Zheng-qin,ZOU Jian-wen,PAN Gen-xing.Adaptation of Cropland Ecosystem Carbon and Nitrogen Process to Climate Change and Indication for Agricultural Managements[J].Agro-Environmental Protection,2011(9):1720-1725.
Authors:XIONG Zheng-qin  ZOU Jian-wen  PAN Gen-xing
Institution:1.Research Center for Agriculture & Climate Change, Nanjing Agrieuhural University, Nanjing 210095, China; 2.Jiangsu Key Laboratory of Low Carbon Agriculture and GHGs Mitigation, Nanjing Agrieuhural University, Nanjing 210095, China)
Abstract:Impacts of climate change on cropland ecosystem carbon and nitrogen process have been comprehensively assessed and reviewed. However, climate change effects with regard to elevated CO2 and increased temperature and their interactions on long-term scale basis are poorly understood. Results of this research showed clear time scale effects of climate change. On a short time horizon, elevated CO2 and increased temperature speeded up the turn over of nutrients, changed the composition and ratio of soil carbon and nitrogen. However, on long term scale, elevated CO2 and increased temperature decreased the nutrients availability, leading to progressive nitrogen limitation. Results also showed substantial interactive effect of elevated CO2 and increased temperature and nutrient managements on ecosystem carbon and nitrogen cyclings. Significant interactions existed between elevated CO2 and increased temperature on soil carbon sequestration, leading to insignificant change of soil carbon sequestration. Moreover, the effects of nutrients management on crop ecosystem were depended on elevated CO2 and increased temperature and their interaction. The availability of soil nutrients limited the productivities of agricultural ecosystem, and consequently soil carbon sequestration. Principally, relatively higher rate of fertilizer, particularly N fertilizer, than usual recommended dose under the current scenario was required for sustainable high crop yield. Additional N could be compensated with straw return under climate change scenario for the purpose of ecosystem functioning of soil carbon sequestration. Therefore, fertilizer management and straw amendment practices should be improved based on the soil nutrients dynamics under elevated CO2 and increased temperature.
Keywords:progressive nitrogen limitation  soil respiration  FACE  carbon sequestration  time scale
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