首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Effects of Tidal Scenarios on the Methane Emission Dynamics in the Subtropical Tidal Marshes of the Min River Estuary in Southeast China
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Effects of Tidal Scenarios on the Methane Emission Dynamics in the Subtropical Tidal Marshes of the Min River Estuary in Southeast China

机译:潮汐情景对闽东南河口亚热带潮汐沼气甲烷排放动力学的影响

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摘要

In order to accurately estimate the effects of tidal scenarios on the CH4 emission from tidal wetlands, we examined the CH4 effluxes, dissolved CH4 concentrations, and environmental factors (including in situ pH, Eh and electrical conductivity, porewater SO42−, NO3, and NH4+) during inundation and air-exposure periods in high- and low-tide seasons in the Min River Estuary in southeast China. By applying static and floating chambers, our results showed that the CH4 effluxes during the inundation periods were relatively constant and generally lower than those during the air-exposed periods in both seasons. When compared, the CH4 effluxes during the air-exposed periods were significantly higher in the high-tide season than those in the low-tide season. In contrast, CH4 effluxes during the inundation periods were significantly lower in the high-tide season than those in the low-tide season. During the inundation periods, dissolved CH4 concentrations were inversely proportional to in situ Eh. Under air-exposed conditions, CH4 effluxes were proportional to in situ pH in both seasons, while the dissolved CH4 concentrations were negatively correlated with the porewater SO42− concentrations in both seasons. Our results highlighted that CH4 effluxes were more dynamic between inundation and air-exposure periods compared to low- and high-tide seasons.
机译:为了准确估算潮汐情景对潮汐湿地CH4排放的影响,我们检查了CH4流量,溶解的CH4浓度和环境因素(包括原地pH,Eh和电导率,孔隙水SO4 2- < / sup>,NO3 -和NH4 + )在闽东南河口高潮和低潮季节的淹没和空气暴露时期。通过使用静态和浮动腔室,我们的结果表明,在两个季节中,淹没期间的CH4排放量相对恒定,并且总体上低于暴露于空气的时期。比较时,高潮季节的空气暴露期间的CH4排放量明显高于低潮季节的甲烷排放量。相反,淹没期间的CH4流出量在高潮季节明显低于低潮季节。在淹没期间,溶解的CH4浓度与原位Eh成反比。在空气暴露的条件下,两个季节的CH4流出量与原位pH成正比,而两个季节的溶解CH4浓度与孔隙水SO4 2 浓度呈负相关。我们的结果强调,与低潮季节和高潮季节相比,CH4的外排在淹没期和空气暴露期之间更为动态。

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