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耕作措施对双季稻田CH4与N2O排放的影响
引用本文:白小琳,张海林,陈 阜,孙国峰,胡 清,李 永.耕作措施对双季稻田CH4与N2O排放的影响[J].农业工程学报,2010,26(1):282-289.
作者姓名:白小琳  张海林  陈 阜  孙国峰  胡 清  李 永
作者单位:1. 中国农业大学农学与生物技术学院农业部农作制度重点开放实验室,北京,100193
2. 湖南省长沙市宁乡县农业局,长沙,410600
基金项目:国家“十一五”科技支撑计划(2006BAD15B01);2008年公益性行业(农业)科研专项(200803028)
摘    要:随着全球气温的不断升高,温室气体减排成为研究的热点。该文旨在研究不同耕作措施下双季稻田CH4及N2O排放特征及其消长关系,为稻田温室气体减排及土壤固碳潜力评价提供依据。试验在湖南省宁乡县进行,通过静态箱法测定翻耕秸秆还田(CT)、旋耕秸秆还田(RT)、免耕秸秆还田(NT)的稻田CH4及N2O排放。结果表明:CH4排放主要来自于晚稻田,翻耕、旋耕和免耕晚稻田CH4排放分别占研究时段CH4排放的69%,67%,73%;各处理冬闲季CH4排放均不到研究时段排放量1%,冬闲CH4排放量为RT>CT>NT,差异显著;N2O排放时间变异性较大,早稻稻田N2O排放量为RT>NT>CT,晚稻稻田N2O排放量为NT>RT>CT,冬闲期各处理稻田N2O均为负排放;从研究时段排放量分析,翻耕秸秆还田有利于减少N2O排放,免耕秸秆还田有利于减少CH4排放;CH4与N2O排放呈显著负相关,冬闲季稻田CH4与N2O排放相关性不显著。总之,NT减少了CH4排放,虽N2O排放略有增加,但CH4与N2O引发的综合温室效应有所减弱。

关 键 词:温室气体,空气污染,CH4,N2O,耕作,稻田,消长
收稿时间:4/9/2009 12:00:00 AM
修稿时间:2009/9/25 0:00:00

Tillage effects on CH4 and N2O emission from double cropping paddy field
Bai Xiaolin,Zhang Hailin,Chen Fu,Sun Guofeng,Hu Qing,Li Yong.Tillage effects on CH4 and N2O emission from double cropping paddy field[J].Transactions of the Chinese Society of Agricultural Engineering,2010,26(1):282-289.
Authors:Bai Xiaolin  Zhang Hailin  Chen Fu  Sun Guofeng  Hu Qing  Li Yong
Institution:1.Key Laboratory of Farming System/a>;Ministry of Agriculture of the People's Republic of China/a>;College of Agronomy and Biotechnology/a>;China Agricultural University/a>;Beijing 100193/a>;China/a>;2.Ningxiang Agricultural Bureau/a>;Changsha/a>;Hunan Province/a>;Changsha 410600/a>;China
Abstract:Greenhouse gas emission is becoming a very important issue with the continuous increasing in the global temperature.In order to evaluate carbon sequestration potential of paddy and reducing emission of greenhouse gas, tillage effects on CH4 and N2O emissions from paddy soil and the trade-off relationship between CH4 and N2O were explored.The closed chamber method was used to measure the CH4 and N2O emission from the paddy field with the treatments of conventional tillage(CT),rotary tillage(RT),no-tillage(NT...
Keywords:greenhouse gases  air pollution  methane  N2O  tillage  rice paddy field  trade-off
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