水生植物
Nexus(标准)
甲烷
营养物
环境科学
温室气体
温室效应
环境工程
环境保护
生态学
工程类
生物
气候变化
全球变暖
嵌入式系统
作者
Jichun Mu,Zhenhan Li,Lu Qi,Hongwei Yu,Chengzhi Hu,Yujing Mu,Jiuhui Qu
标识
DOI:10.1016/j.watres.2024.122316
摘要
Submerged macrophytes remediation is a commonly used technique for improving water quality and restoring habitat in aquatic ecosystems. However, the drivers of success in the submerged macrophytes assembly process and their specific impacts on methane emissions are poorly understood. Thus, we conducted a mesocosm experiment to test the growth plasticity and carbon fixation of widespread submerged macrophytes (Vallisneria natans) under different nutrient conditions. A refined dynamic chamber method was utilized to concurrently collect and quantify methane emission fluxes arising from ebullition and diffusion processes. Significant correlations were found between methane flux and variations in the physiological activities of V. nantas by the fluorescence imaging system. Our results show that exceeding tolerance thresholds of ammonia in the water significantly interfered with the photosynthetic systems in submerged leaves and the radial oxygen loss in adventitious roots. The recovery process of V. natans accelerated the consumption of dissolved oxygen, leading to increase in the populations of methanogen (153.3 % increase of mcrA genes) and subsequently elevating CH
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