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华东地区稻麦轮作农田生态系统N_2O排放的模拟研究 被引量:24
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作者 勾继 郑循华 +1 位作者 王明星 李长生 《大气科学》 CSCD 北大核心 2000年第6期835-842,共8页
利用 DNDC( DeNitrification and DeComposition)模式,对华东地区典型稻麦轮作农田生态系统的N_2O排放特征进行了模拟研究。结果表明:该模式能模拟出轮作周期中N_2O的主要排放峰值和排放... 利用 DNDC( DeNitrification and DeComposition)模式,对华东地区典型稻麦轮作农田生态系统的N_2O排放特征进行了模拟研究。结果表明:该模式能模拟出轮作周期中N_2O的主要排放峰值和排放趋势,但与实测值相比,模拟结果普遍有些偏小。相对而言,该模式对旱地阶段的模拟结果比较理想,尤其是对春季小麦返青至成熟期的模拟最好。因此,我们就该阶段影响N_2O排放的主要因子进行了敏感性研究。结果指出,对这一阶段N_2O排放影响最大的是化肥的施用,其他比较重要的影响因子还包括犁地方式。有机肥、降水量、降水中的N含量以及温度等。 展开更多
关键词 模式模拟 农业生态系统 二氧化氮排放 稻麦轮作
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Modeling N_2O Emissions from Agricultural Fields in Southeast China 被引量:1
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作者 勾继 郑循华 +1 位作者 王明星 李长生 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 1999年第4期581-587,589-592,共11页
DNDC, a rainfall-driven and process-oriented model of soil carbon and nitrogenbiogeochemistry, is applied t0 simulate the nitrous oxide emissions from agricultural ecosystem inSoutheast China. We simulated the soil N2... DNDC, a rainfall-driven and process-oriented model of soil carbon and nitrogenbiogeochemistry, is applied t0 simulate the nitrous oxide emissions from agricultural ecosystem inSoutheast China. We simulated the soil N2O emission during a whole rice-wheat rotation cycle(from Nov. 1, 1996 to Oct. 31, 1997) under three different conditions, which are A) no fertilizer, B)both chemical fertilizer and manure and, C) chemical fertiliser only. The processes ofN2O emission were discussed in detail by comparing the model outputs with the results from fieldmeasurement. The comparison shows that the model is good at simulating most of theNzO emission pulses and trends. Although the simulated N2O emission fluxes are generally lessthan the measured ones, the model outputs during the dryland period, especially during the wheatreviving and maturing stages in spring, are much better than those during the paddy field period.Some sensitive experiments were made by simulating the N2O emissions in spring, when there is asmallest gap between the simulated fluxes and the measured ones. Meanwhile, the effects of someimportant regulating factors, such as the rainfall N deposition by rainfall, temperature, tillage, nitrogen fertilizer and manure application on N2O emission during this period were analyzed. Fromthe analysis, we draw a conclusion that soil moisture and fertilization are the most important regulating factors while the N2O emission is sensitive to some other factors, such as temperature, manure, tillage and the wet deposition of atmospheric nitrate. 展开更多
关键词 N_2O Emission MODEL Sensitive factor Agricultural ecosystem
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