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Fluctuating water level effects on soil greenhouse gas emissions of returning farmland to wetland

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来源:   |  发布时间:2025-03-16   |  【 大  中  小 】

论文题目: Fluctuating water level effects on soil greenhouse gas emissions of returning farmland to wetland
英文论文题目: Fluctuating water level effects on soil greenhouse gas emissions of returning farmland to wetland
第一作者: Zhang, Tianbao
英文第一作者: Zhang, Tianbao
联系作者: 刘晓辉
英文联系作者: Liu, XH
发表年度: 2020
摘要:

Purpose Future climate change is predicted to have an important impact on regional precipitation patterns. Water level is an important factor influencing soil greenhouse gas emissions. However, the effect of small-scale water level fluctuations on soil greenhouse gas emissions from returning farmland to wetlands has been little studied. Materials and methods We collected soils of three lands from returning farmland to wetland with different restoration years and a natural wetland at the Honghe National Nature Reserve in Sanjiang Plain, China. Through indoor simulation experiments, we explored the characteristics of soil greenhouse gas (CO2, CH4, and N2O) emissions under fluctuating water levels. Results and discussion When the water level fluctuated between - 8 and 8 cm, the CO(2)and N2O emissions decreased as the water level increased, but the CH(4)emissions were highest when water level fluctuated between - 3 and 3 cm. The CH(4)emissions tended to increase as laboratory time extended. Different gases react differently to water level fluctuations. The CO(2)emissions contributed 78.90-96.48% of the total global warming potential of the GHG emissions. Conclusions The results of this study indicate that during the process of returning farmland to wetland, more attention should be paid to the effects of CO(2)emissions. An appropriately raised water level can effectively suppress the global warming potential of greenhouse gas emissions.

英文摘要:

Purpose Future climate change is predicted to have an important impact on regional precipitation patterns. Water level is an important factor influencing soil greenhouse gas emissions. However, the effect of small-scale water level fluctuations on soil greenhouse gas emissions from returning farmland to wetlands has been little studied. Materials and methods We collected soils of three lands from returning farmland to wetland with different restoration years and a natural wetland at the Honghe National Nature Reserve in Sanjiang Plain, China. Through indoor simulation experiments, we explored the characteristics of soil greenhouse gas (CO2, CH4, and N2O) emissions under fluctuating water levels. Results and discussion When the water level fluctuated between - 8 and 8 cm, the CO(2)and N2O emissions decreased as the water level increased, but the CH(4)emissions were highest when water level fluctuated between - 3 and 3 cm. The CH(4)emissions tended to increase as laboratory time extended. Different gases react differently to water level fluctuations. The CO(2)emissions contributed 78.90-96.48% of the total global warming potential of the GHG emissions. Conclusions The results of this study indicate that during the process of returning farmland to wetland, more attention should be paid to the effects of CO(2)emissions. An appropriately raised water level can effectively suppress the global warming potential of greenhouse gas emissions.

刊物名称: JOURNAL OF SOILS AND SEDIMENTS
英文刊物名称: JOURNAL OF SOILS AND SEDIMENTS
参与作者: An, Yu
英文参与作者: An, Yu

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