硝酸盐
厌氧氨氧化菌
沉积物
反硝化
环境化学
海湾
有机质
铵
环境科学
化学
氮气
海洋学
地质学
反硝化细菌
地貌学
有机化学
作者
Lijun Hou,Min Liu,Stephen A. Carini,Wayne S. Gardner
标识
DOI:10.1016/j.csr.2012.01.004
摘要
This study investigated potential transformation processes and fates of nitrate at the sediment–water interface of Copano Bay during a period of drought by conducting continuous-flow and slurry experiments combined with a 15NO3− addition technique. Rates of 15NO3−-based denitrification, anaerobic ammonium oxidation (ANAMMOX) and potential dissimilatory nitrate reduction to ammonium (DNRA) were in the range of 27.7–40.1, 0.26–1.6 and 1.4–3.8 μmol 15N m–2 h–1, respectively. Compared with the total 15NO3−fluxes into sediments, dissimilatory processes contributed 29–49% to loss of the spiked 15NO3−. Based on the mass balance of 15NO3−, microbial assimilation was estimated to consume about 50–70% of the added 15NO3−, indicating that most of nitrate was incorporated by microorganisms in this N-limiting system. In addition, significant correlations of nitrate transformation rates with sediment characteristics reflect that the depth related behaviors of nitrate transformations in core sediments were coupled strongly to organic matter, iron (Fe) and sulfur (S) cycles.
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