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亚热带稻田生态系统CO2通量特征分析
引用本文:王尚明,胡继超,吴高学,张崇华,曾凯,张清霞,胡逢喜,冯敏玉.亚热带稻田生态系统CO2通量特征分析[J].环境科学学报,2011,31(1):217-224.
作者姓名:王尚明  胡继超  吴高学  张崇华  曾凯  张清霞  胡逢喜  冯敏玉
作者单位:1. 江西省农业气象试验站,南昌,330200
2. 南京信息工程大学,南京,210044
摘    要:为评价稻田生态系统大气CO2的收支状况,2008-2009年江西省农业气象试验站利用涡度相关技术对稻田生态系统的CO2通量进行了为期一年的连续观测.对观测的数据进行处理和分析表明:在生长季,稻田生态系统CO2通量总体表现为负值,为CO2的汇.稻田生态系统CO2通量具有明显的日变化特征,白天净吸收CO2的量大于夜间呼吸释...

关 键 词:稻田生态系统  CO2通量  特征分析
收稿时间:1/6/2010 3:23:56 PM
修稿时间:6/3/2010 12:00:00 AM

Characteristic analysis of CO2 fluxes from a rice paddy ecosystem in a subtropical region
WANG Shangming,HU Jichao,WU Gaoxue,ZHANG Chonghu,ZENG Kai,ZHANG Qingxi,HU Fengxi and FENG Minyu.Characteristic analysis of CO2 fluxes from a rice paddy ecosystem in a subtropical region[J].Acta Scientiae Circumstantiae,2011,31(1):217-224.
Authors:WANG Shangming  HU Jichao  WU Gaoxue  ZHANG Chonghu  ZENG Kai  ZHANG Qingxi  HU Fengxi and FENG Minyu
Institution:Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200,Nanjing University of Information Science & Technology, Nanjing 210044,Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200,Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200,Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200,Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200,Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200 and Agrometeorological Experiment Station of Jiangxi Province, Nanchang 330200
Abstract:In order to evaluate carbon source or sink strength,CO2 fluxes from a paddy ecosystem were continuously measured using the eddy covariance technique over the course of a year. During a cropping paddy season,the summation of CO2 fluxes from paddy ecosystem was negative and the paddy ecosystem was a carbon dioxide sink. Distinct CO2 fluxes characteristic of diurnal variation were observed. The net absorptive capacity of CO2 in the day was much more than CO2 release in the night. The absorbed efficiency of CO2 from rice elongating stage to milk stage was higher than other stages. The net carbon dioxide fixation from tillering stage to flowering stage was much more than other stages. During a non-cropping paddy season,i.e.,from late October(after the rice harvest) to the following year in April,the paddy ecosystem absorbed a small quantity of CO2 only in March,while in other months it released CO2,becoming a carbon source. The paddy ecosystem absorbed 14.35 t·hm-2of CO2 from the atmosphere over a year,including 8.81t·hm-2 of CO2 absorbed by early season rice and11.71 t·hm-2 by late season rice. Although the paddy ecosystem released 6.17 t·hm-2 of CO2 during a non-cropping paddy season,it was an overall carbon dioxide sink for the atmosphere.
Keywords:paddy ecosystem  CO2 fluxes  characteristic analysis
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