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Effects of Reduced Nitrogen Fertilization and Biochar Application on CO_2 and N_2O Emissions from a Summer Maize-Winter Wheat Rotation Field in North China被引量:1
2016年
This experiment was conducted in Xinxiang, Henan from June 2013 to June 2014. Total four treatments were designed including farmers ’ common practice (F, 250 kg/hm^2), 80% F (LF, 200 kg/hm^2), 80% F+biochar (LFC) and no fertilizer (CK) to measure the dynamic emissions of CO2 and N2O from a summer maize-winter wheat field by static chamber-gas chromatography method. The results showed that the soil CO2 emission was 21.8-1 022.7 mg/(m^2·h), and was mainly influenced by soil temperature and moisture content. During the growth of summer maize, the soil CO2 emission was more significantly affected by soil moisture con-tent; and in winter wheat growing season, it was more significantly affected by soil temperature in the top 5 cm. The LF and LFC treatments significantly reduced the soil cumulative CO2 emission, especial y during the growth of winter wheat. Fertiliza-tion and irrigation were the main factors influencing the soil N2O emission. The soil N2O emission during the fertilization period accounted for 73.9%-74.5% and 40.5%-43.6% of the soil cumulative N2O emission during the summer maize-and winter wheat-growing season, respectively. The peak of emission fluxes was determined by fertilization amount, while the occurrence time of emission peak and emission re-duction effect were influenced by irrigation. The LF treatment reduced the soil cu-mulative N2O emission by 15.7%-16.8% and 18.1%-18.5% during the growth period of summer maize and winter wheat, respectively. Reduced nitrogen fertilization is an effective way for reducing N2O emission in intensive high-yielding farmland. Under a suitable nitrogen level (200 kg/hm^2), the application of biochar showed no significant effect on the soil N2O emission in a short term. The N2O emission factors of the L and LF treatments were 0.60% and 0.56%, respectively. ln the intensive high-yield-ing farmland of North China, reducing the nitrogen application amount is an appro-priate measure to mitigate greenhouse gas emissions without crop yield lo
韩雪范靖尉白晋华任寰宇李迎春刁田田郭李萍
关键词:BIOCHAR
不同管理措施对华北平原冬小麦田土壤CO2和N2O排放的影响研究被引量:25
2013年
选文研究了不同农作管理措施--有机肥与化肥配施、秸秆还田、以及不同耕作方式(常规耕作、旋耕、免耕)等对华北平原冬小麦地土壤CO2与N2O排放的影响。研究结果表明:1)冬小麦生育期土壤CO2排放通量主要受土壤温度的影响,CO2排放通量与5cm土壤温度呈指数关系或二次抛物线关系;CO2排放主要发生在返青后,返青后到成熟期的排放量平均占小麦生育期总排放量的64.1%。2)在施用化肥的情况下适当配施有机肥,并未引起土壤CO2排放的显著增加;秸秆还田没有显著增加冬小麦生育期内的土壤CO2排放量;与常规耕作相比,旋耕使冬小麦生育期土壤CO2累积排放量有一定程度降低,免耕使土壤CO2累积排放量显著降低,冬小麦生育期旋耕和免耕处理的土壤CO2累积排放量分别是常规耕作的98.2%与84.6%。3)冬小麦生育期间的N2O排放峰主要发生在施肥后(包括基肥和追肥后),追肥后第10 d开始的近一个月内累积排放的N2O占全生育期总排放量的一半。4)基肥合理配施有机肥降低了返青拔节期单施化肥引起的短期N2O排放通量高峰;秸秆还田没有显著增加冬小麦生育期内的土壤N2O排放量;旋耕与常耕对土壤N2O排的影响差异不显著,免耕处理比常规耕作使土壤N2O排放通量显著降低,免耕处理的土壤N2O累积排放量是常规耕作的77.0%。
张贺郭李萍谢立勇林淼叶丹丹阎宏亮
关键词:N2O排放CO2排放免耕
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