Differences in Riverine and Pond Water Dissolved Organic Matter Composition and Sources in Canadian High Arctic Watersheds Affected by Active Layer Detachments

永久冻土 溶解有机碳 热岩溶 生物地球化学 北极的 支流 环境科学 环境化学 水文学(农业) 总有机碳 生态系统 有色溶解有机物 水生生态系统 海洋学 生态学 浮游植物 地质学 化学 营养物 地理 生物 岩土工程 地图学
作者
Junjian Wang,Melissa J. Lafrenière,Scott F. Lamoureux,André J. Simpson,Yves Gélinas,Myrna J. Simpson
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:52 (3): 1062-1071 被引量:37
标识
DOI:10.1021/acs.est.7b05506
摘要

Regional warming has caused permafrost thermokarst and disturbances, such as active layer detachments (ALDs), which may alter carbon feedback in Arctic ecosystems. However, it is currently unclear how these disturbances alter DOM biogeochemistry in rivers and ponds in Arctic ecosystems. Water samples from the main river channel, ALD-disturbed/undisturbed tributaries, and disturbed/undisturbed ponds within a catchment in the Canadian High Arctic were collected and analyzed using carbon isotopes and spectroscopic methods. Both river and pond samples had large variations in dissolved organic carbon (DOC) concentrations. Ponds, particularly ALD-disturbed ponds, had much older 14C DOC ages than rivers. Results from δ13C and absorption and fluorescence analyses indicate higher autochthonous contributions in ponds than rivers and increasing autochthonous contributions from upper to lower reaches of the main channel. The disturbed samples had less carbohydrates but more carboxyl-rich alicyclic molecules in 1H nuclear magnetic resonance spectra than undisturbed samples. These ALD-impacted samples also contained less terrestrial-humic-like but more oxidized-quinone-like components in the fluorescence spectra. Interestingly, the disturbed pond DOM displayed the greatest DOM oxidation with ALDs compared to undisturbed areas. Compared to Arctic rivers, small Arctic ponds have DOM predominantly from permafrost and microbial sources and may have a disproportionally stronger positive feedback on climate warming.

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