中国农业气象 ›› 2025, Vol. 46 ›› Issue (7): 932-941.doi: 10.3969/j.issn.1000-6362.2025.07.003

• 农业气候资源与气候变化栏目 • 上一篇    下一篇

青海省小麦-油菜轮作体系下农田净生态系统碳通量变化特征

刘承琦,塔林葛娃,李月梅,王鸿霞,王乾冰,宋明丹   

  1. 1.青海大学农林科学院,西宁 810016;2.国家农业环境西宁观测实验站,西宁 810016
  • 收稿日期:2024-08-01 出版日期:2025-07-20 发布日期:2025-07-20
  • 作者简介:刘承琦,E-mail:17356096378@163.com
  • 基金资助:
    青海省重大科技专项项目(2023−NK−A3)

Variation Characteristics of Net Ecosystem Carbon Exchange of Farmland in Eastern Qinghai-Tibet Plateau

LIU Cheng-qi, TALINGEWA, LI Yue-mei, WANG Hong-xia, WANG Qian-bing, SONG Ming-dan   

  1. 1. Academy of Agriculture and Forestry Sciences, Qinghai University, Xining 810016, China; 2. Xining Observation and Experiment Station of National Agricultural Environment, Xining 810016
  • Received:2024-08-01 Online:2025-07-20 Published:2025-07-20

摘要:

依托国家农业环境西宁观测实验站(西宁站),利用涡度协方差技术获取青海省农田生态系统CO2瞬时通量,通过Eddypro、Tovi等软件对数据进行处理,探究农田生态系统不同尺度瞬时碳通量的变化特征及影响因素。结果表明:2022年和2023年青藏高原西宁站作物生长期(41−8月10日)瞬时净生态系统碳通量(NEE)的日平均值分别为−2.78µmol·m−2·s−1、−3.12µmol·m−2·s−1,生育期内累计净生态系统碳通量分别为−1396.07g·m−2、−1564.80g·m−22022碳汇量2023年增加168.73g·m−2。青藏高原西宁站2022−2023年作物生长期内气温(TA),风速(WS),光合有效辐射(PPFD)与净生态系统碳通量(NEE)显著相关,相关系数均达0.4以上,相关系数排序表现为气温(TA>光合有效辐射(PPFD>风速(WS)。其中,光合有效辐射(PPFD)对碳吸收有促进作用;随气温(TA)增加,表现为先促进吸收后抑制;风速(WS)对碳吸收有抑制作用。综上,2022−2023年青海省小麦−油菜轮作体系农田净生态系统表现为碳汇,光合有效辐射、气温和风速是农田净生态系统碳通量的主要影响因子。

关键词: 净生态系统碳通量, 碳源, 碳汇

Abstract:

Based on the National Agricultural Environment Observation and Experiment Station of Xining ( Xining Station), the instantaneous CO2 flux of farmland ecosystem in Qinghai Province was obtained by using eddy covariance technique. The data were processed by Eddypro, Tovi and other software to explore the variation characteristics and influencing factors of instantaneous carbon flux at different scales of farmland ecosystem. The results showed that the daily average values of instantaneous net ecosystem carbon flux NEE during crop growth period (April 1 to August 10) in Xining station of Qinghai-Tibet Plateau in 2022 and 2023 were 2.78µmol·m2·s1 and 3.12µmol·m2·s1, respectively. The cumulative net ecosystem carbon flux during the growth period was 1396.07g·m−2 and 1564.79g·m−2, respectively. The carbon sink in 2022 increased by 150.73g·m−2 compared with that in 2023. The air temperature (TA), wind speed (WS), photosynthetically active radiation (PPFD) and net ecosystem carbon flux (NEE) were significantly correlated during the crop growth period in Xining station of Qinghai-Tibet Plateau from 2022 to 2023, and the correlation coefficients were all above 0.4. The order of correlation coefficients was air temperature (TA)>photosynthetically active radiation (PPFD)>wind speed (WS). Among them, photosynthetically active radiation ( PPFD ) had a promoting effect on carbon absorption; with the increase of temperature ( TA ), the absorption was promoted first and then inhibited. Wind speed (WS) haan inhibitory effect on carbon absorption. In summary, the net ecosystem of farmland in the wheatrape rotation system in Qinghai Province from 2022 to 2023 was a carbon sink. Photosynthetically active radiation, air temperature and wind speed are the main influencing factors of the net ecosystem carbon flux of farmland in the wheatrape rotation system in Qinghai province.

Key words: Net ecosystem carbon exchange, Carbon source, Carbon sink