报告开始:暂无开始时间(Asia/Shanghai)
报告时间:暂无持续时间
所在会场:[暂无会议] [暂无会议段]
暂无文件
Intertidal seagrass beds can shift rapidly between photosynthetic carbon uptake and respiratory carbon release during low-tide exposure, yet how light, seagrass biomass, and sediment oxidation-reduction (redox) conditions jointly influence short-term sediment-air greenhouse gas (GHG) exchange remain unclear. We measured CO2 and CH4 fluxes across a natural seagrass biomass gradient using closed dynamic transparent and opaque chambers during morning low tides. We combined full-model hypothesis testing with exploratory model averaging and sensitivity analyses to evaluate how chamber light conditions, seagrass biomass, and sediment biogeochemical context jointly influenced flux variation. CO2 flux differed strongly between chamber types: transparent chambers showed net CO2 uptake, whereas opaque chambers showed net CO2 release, indicating photosynthesis and respiration respectively. However, net CO2 uptake negatively related to seagrass biomass, suggesting that microphytobenthos on the soil surface rather than seagrass biomass drove photosynthesis under no-water condition. Natural variation in photosynthetically active radiation had no detectable main effect on CO2 flux, CH4 emissions increased with seagrass biomass, particularly under lower sediment redox conditions. In contrast, CH4 flux showed little evidence of an overall light-dark effect but increased significantly with seagrass biomass and was further affected by sediment redox condition. Sensitivity analyses showed that the main CO2 light-dark contrast and the overall CH4 biomass effect were robust, and redox-dependent interaction terms should be interpreted more cautiously. These findings indicate that low-tide CO2 and CH4 exchange are shaped by seagrass biomass, light conditions, and sediment redox status, rather than by biomass alone, highlighting the need to account for short-term exposure conditions when interpreting GHG exchange in intertidal blue-carbon ecosystems.
01月12日
2027
01月15日
2027
初稿截稿日期
注册截止日期
2024年12月11日 中国
第七届厦门海洋环境开放科学大会(XMAS 2025)2023年01月09日 中国 Xiamen
第六届厦门海洋环境科学开放大会
发表评论