湿地
环境科学
温室气体
盐度
污染
水文学(农业)
环境工程
水污染
水体
水资源管理
环境保护
海洋学
生态学
地质学
生物
岩土工程
作者
Long Ho,Matti Barthel,Kim Pham,Samuel Bodé,Carl Van Colen,Tom Moens,Johan Six,Pascal Boeckx,Peter Goethals
标识
DOI:10.1016/j.jenvman.2024.121427
摘要
Tidal wetlands play a critical role in emitting greenhouse gases (GHGs) into the atmosphere; our understanding of the intricate interplay between natural processes and human activities shaping their biogeochemistry and GHG emissions remains lacking. In this study, we delve into the spatiotemporal dynamics and key drivers of the GHG emissions from five tidal wetlands in the Scheldt Estuary by focusing on the interactive impacts of salinity and water pollution, two factors exhibiting contrasting gradients in this estuarine system: pollution escalates as salinity declines. Our findings reveal a marked escalation in GHG emissions when moving upstream, primarily attributed to increased concentrations of organic matter and nutrients, coupled with reduced levels of dissolved oxygen and pH. These low water quality conditions not only promote methanogenesis and denitrification to produce CH
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