Arid
张掖湿地甲烷通量动态特征及其影响因子
其他题名CH_4 flux variations and main factors from a reed wetland oasis-desert area in Zhangye, China
张强1; 蒋国庆1; 孙睿1; 徐自为2; 刘绍民2
来源期刊生态学报
ISSN1000-0933
出版年2017
卷号37期号:17页码:5681-5690
中文摘要于2012年7月2014年6月对地处干旱区的张掖湿地甲烷(CH_4)通量进行观测,分析其CH_4通量的变化特征及其影响因子。结果表明:CH_4通量的日变化趋势总体表现为白天大于夜间;不同季节Ch_4通量排放特征差异明显,夏季最大,春秋次之,冬季最小;CH_4通量日总量与空气温度、土壤温度之间指数相关关系显著,其中4 cm处土壤温度与之相关性最强;16月摩擦风速(U~*)与CH_4通量显著正相关;结合CO_2通量观测数据,研究时段张掖湿地净碳吸收量为495.92 gC m~(-2) a~(-1),为明显碳汇。
英文摘要Analyzing the characteristics and variations of CH_4 flux in wetland would be very helpful in order to understand the importance of the carbon cycle in the terrestrial ecosystem. In the arid area, the Zhangye wetland features complex meteorological conditions, which have introduced obvious uncertainties into the carbon fluxes. However, there are few research studies on the carbon flux of wetland in the arid areas. It is helpful to strengthen the study of wetland ecological system in the arid areas. In order to study the dynamics of carbon flux in a wetland ecosystem, CO_2 flux and CH_4 flux were measured using an eddy covariance technique over a phragmites-dominated wetland in Zhangye,Gansu Province (from June in 2012 to August in 2014). In the present study, the CH_4 flux variations and its main driving factors were analyzed based on the eddy covariance observations. The raw 10 Hz data were processed into 30 min mean values based on data quality control (spike detection, coordinate rotation, frequency response correction, etc.) and gap-filling (linear interpolation and Look-up Table method). The result showed the CH_4 flux reaching its maximum in summer (0.34 g CH_4 m~(-2) d~(-1)) , then spring and autumn,while getting the minimum values in winter (0.02 g CH_4 m~(-2) d~(-1) ). Diurnal variation of CH_4 flux indicated that the daytime values were higher than that of nighttime. There was an exponential relationship between CH_4 flux and air temperature and soil temperature,and it was mostly correlated with the soil temperature in 4-cm depth,where the relationship was y = 0.07614e~(0.03402x) and R~2 is 0.3560. CH_4 fluxes also exhibited a strong relationship with friction velocity (R~2 = 0.91 and 0.94, respectively, from January to March and from April to June). The enhanced turbulence could increase the ventilation and exchange of CH_4 flux. CH_4 flux significantly influenced the total carbon budget. By considering the absorption and emission of CO_2 and CH_4 fluxes, the net carbon uptake was 495.92 g C m~(-2)a~(-1). The carbon sink in Zhangye wetland was apparent during the study period.
中文关键词湿地 ; 涡动相关 ; CH_4通量 ; 温度 ; 摩擦风速
英文关键词wetland eddy covariance CH_4 flux temperature friction velocity
语种中文
国家中国
收录类别CSCD
WOS类目BIOLOGY
WOS研究方向Life Sciences & Biomedicine - Other Topics
CSCD记录号CSCD:6061793
来源机构北京师范大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/236505
作者单位1.北京师范大学,中国科学院遥感应用研究所, 遥感科学国家重点实验室;;环境遥感与数字城市北京市重点实验室, 北京 100875, 中国;
2.北京师范大学,中国科学院遥感应用研究所, 遥感科学国家重点实验室, 北京 100875, 中国
推荐引用方式
GB/T 7714
张强,蒋国庆,孙睿,等. 张掖湿地甲烷通量动态特征及其影响因子[J]. 北京师范大学,2017,37(17):5681-5690.
APA 张强,蒋国庆,孙睿,徐自为,&刘绍民.(2017).张掖湿地甲烷通量动态特征及其影响因子.生态学报,37(17),5681-5690.
MLA 张强,et al."张掖湿地甲烷通量动态特征及其影响因子".生态学报 37.17(2017):5681-5690.
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