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三峡澎溪河水域CO2与CH4年总通量估算

李哲 白镭 蒋滔 郭劲松 刘静

水科学进展2013,Vol.24Issue(4):551-559,9.
水科学进展2013,Vol.24Issue(4):551-559,9.

三峡澎溪河水域CO2与CH4年总通量估算

Estimation on annual water-air CO2 and CH4 fluxes in Pengxi River,Three Gorges Reservoir

李哲 1白镭 2蒋滔 3郭劲松 1刘静1

作者信息

  • 1. 重庆大学城市建设与环境工程学院,重庆400044
  • 2. 四川省建筑设计院,四川成都610017
  • 3. 重庆市农业科学院农业工程研究所,重庆401329
  • 折叠

摘要

Abstract

Estimation on annual greenhouse gas fluxes in reservoirs is crucial for the assessment of reservoir greenhouse gas effects.A 1a research was conducted in Pengxi River backwater area,Three Gorges Reservoir to estimate annual water-air CO2 and CH4 fluxes.Taken the 24h continuous monitoring data in Gaoyang Lake as reference,2 methods,i.e.underwater topographical method and environmental controlling factor method,were carried out to estimate the annual fluxes based on monthly field data.The field sampling results showed that mean value of the CO2 fluxes among the sampling spot was (3.05 ±0.46) mmol/(m2· h),while that of CH4 was (0.050 1 ±0.009 6) mmol/(m2·h).The annual estimation of CO2 and CH4 fluxes in the Pengxi River backwater area based on underwater topographical method was 40 060.5 t and 540.9 t respectively.With the environmental controlling factor method,the annual estimation of CO2 and CH4 fluxes was 39 073.0 t and 467.2 t respectively.Taken the annual estimation result from environmental controlling factor method as reference,the weighted average CO2 fluxes during the study was 43.26 mmol/(m2 ·d),while that of CH4 was 1.42 mmol/(m2 ·d).Generally,both of the CO2 and CH4 weight average fluxes were shown to be in the mid-range in the global data sets,although that of CO2 was showed in slightly higher bound.

关键词

三峡水库/澎溪河/CO2/CH4/年总通量

Key words

Three Gorges Reservoir/ Pengxi River/ CO2/ CH4/ estimation of annual fluxes

分类

建筑与水利

引用本文复制引用

李哲,白镭,蒋滔,郭劲松,刘静..三峡澎溪河水域CO2与CH4年总通量估算[J].水科学进展,2013,24(4):551-559,9.

基金项目

国家自然科学基金资助项目(51009155 ()

51179215) ()

The study is financially supported by the National Natural Science Foundation of China(No.51009155 ()

No.51179215). ()

水科学进展

OA北大核心CSCDCSTPCD

1001-6791

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