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Chemical characteristics of dissolved organic nitrogen in an oligotrophic subtropical coastal ecosystem

成岩作用 环境化学 生物利用度 有机质 生态系统 河口 魔角纺纱 水生生态系统 有色溶解有机物 δ15N 化学 氮气 藻类 溶解有机碳 海洋学 地质学 稳定同位素比值 矿物学 δ13C 生态学 浮游植物 营养物 核磁共振波谱 生物 有机化学 生物信息学 物理 量子力学
作者
Nagamitsu Maie,Kathleen Parish,Akira Watanabe,Heike Knicker,Ronald Benner,Tomonori Abe,Karl Kaiser,Rudolf Jaffé
出处
期刊:Geochimica et Cosmochimica Acta [Elsevier BV]
卷期号:70 (17): 4491-4506 被引量:134
标识
DOI:10.1016/j.gca.2006.06.1554
摘要

Water samples were collected from rivers and estuarine environments within the Florida Coastal Everglades (FCE) ecosystem, USA, and ultrafiltered dissolved organic matter (UDOM; <0.7 μm, >1 kDa) was isolated for characterization of its source, bioavailability and diagenetic state. A combination of techniques, including 15N cross-polarization magic angle spinning nuclear magnetic resonance (15N CPMAS NMR) and X-ray photoelectron spectroscopy (XPS), were used to analyze the N components of UDOM. The concentrations and compositions of total hydrolysable amino acids (HAAs) were analyzed to estimate UDOM bioavailability and diagenetic state. Optical properties (UV–visible and fluorescence) and the stable isotope ratios of C and N were measured to assess the source and dynamics of UDOM. Spectroscopic analyses consistently showed that the major N species of UDOM are in amide form, but significant contributions of aromatic-N were also observed. XPS showed a very high pyridinic-N concentration in the FCE–UDOM (21.7 ± 2.7%) compared with those in other environments. The sources of this aromatic-N are unclear, but could include soot and charred materials from wild fires. Relatively high total HAA concentrations (4 ± 2% UDOC or 27 ± 4% UDON) are indicative of bioavailable components, and HAA compositions suggest FCE–UDOM has not undergone extensive diagenetic processing. These observations can be attributed to the low microbial activity and a continuous supply of fresh UDOM in this oligotrophic ecosystem. Marsh plants appear to be the dominant source of UDOM in freshwater regions of the FCE, whereas seagrasses and algae are the dominant sources of UDOM in Florida Bay. This study demonstrates the utility of a multi-technique and multi-proxy approach to advance our understanding of DON biogeochemistry.
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