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Natural versus anthropogenic controls on the dissolved organic matter chemistry in lakes across China: Insights from optical and molecular level analyses

溶解有机碳 有色溶解有机物 生物地球化学循环 高原(数学) 环境科学 水生生态系统 环境化学 总有机碳 有机质 碳循环 生态系统 自然地理学 水文学(农业) 生态学 化学 地质学 地理 生物 浮游植物 数学分析 营养物 岩土工程 数学
作者
Yingxin Shang,Zhidan Wen,Kaishan Song,Ge Liu,Fengfa Lai,Lili Lyu,Sijia Li,Hui Tao,Junbin Hou,Chong Fang,Chen He,Quan Shi,Ding He
出处
期刊:Water Research [Elsevier BV]
卷期号:221: 118779-118779 被引量:29
标识
DOI:10.1016/j.watres.2022.118779
摘要

Dissolved organic matter (DOM) plays an essential role in the global carbon biogeochemical cycle for aquatic ecosystems. The complexity of DOM compounds contributes to the accurate monitoring of its sources and compositions from large-scale patterns to microscopic molecular groups. Here, this study demonstrates the diverse sources and compositions for humic-rich lakes and protein-rich lakes for large-scale regions across China with the linkage to optical components and molecular high-resolution mass spectrometry properties. The total fluorescence intensity of colored DOM (CDOM) for humic-rich lake regions (0.176 Raman unit; R.U.) is significantly (p<0.05) higher than that of the protein-rich lake region (0.084 R.U.). The combined percentages of CDOM absorption variance explained by the anthropogenic and climatic variables across the five lake regions of Northeastern lake region (NLR), Yungui Plateau lake region (YGR), Inner Mongolia-Xinjiang lake region (MXR), Eastern lake region (ELR), and Tibetan-Qinghai Plateau lake region (TQR) were 86.25%, 82.57%, 80.23%, 88.55%, and 87.72% respectively. The averaged relative intensity percentages of CHOS and CHONS formulas from humic-rich lakes (90.831‰, 10.561‰) were significantly higher than that from the protein-like lakes (47.484‰, 5.638‰), respectively. The more complex molecular composition with higher aromaticity occurred in the humic-rich lakes than in the protein-rich lakes. The increasing anthropogenic effects would significantly enhance the sources, transformation, and biodegradation of terrestrial DOM and link to the greenhouse gas emission and the carbon cycle in inland waters.
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