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首页> 外文期刊>Marine ecology progress series >Benthic nutrient recycling on the northeastern shelf of the Gulf of Cadiz (SW Iberian Peninsula)
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Benthic nutrient recycling on the northeastern shelf of the Gulf of Cadiz (SW Iberian Peninsula)

机译:加的斯湾(西南伊比利亚半岛)东北陆架底栖养分循环利用

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摘要

Benthic fluxes of nutrients and dissolved nitrous oxide (N_2O) were determined by benthic chamber incubations in 2 regions on the northeastern near-shore continental shelf of the Gulf of Cadiz (depth range: 8 to 34 m), one off the Guadalquivir River mouth and the other in the Bay of Cadiz and its neighboring shelf. In total, 25 in situ benthic chamber incubations were performed during June 2006, November 2006, and February 2007 to investigate the main factors controlling benthic nutrient recycling and its significance at the study site. Nutrient benthic fluxes (in m~(-2) d~(-1)) varied between -0.9 and 1.0 mmol NO_3~-, -0.3 and 0.3 mmol NO_2~-, -1.2 and 3.5 mmol NH_4~+, -0.04 and 0.22 mmol HPO_4~(2-), and 0.2 and 2.9 mmol Si(OH)_4. Benthic fluxes of N_2O, ranging from -1.2 to 10.4 μmol N-N_2O m~(-2) d~(-1) accounted on average for <1% of total inorganic nitrogen fluxes. The regeneration of NH_4~+ and Si(OH)_4 was mainly influenced by organic carbon oxidation rates and bulk organic carbon in surface sediments; whereas HPO_4~(2-) regeneration was mostly influenced by bottom water oxygen concentration and water depth. Denitrification was estimated to account for between 9 and 13 % of organic matter remineralization and for a loss of between 57 and 67 % of potentially recyclable nitrogen. Overall, benthic remineralization was estimated to degrade about 47 % of overlying primary production, supplying about 15 and 12% of the phytoplankton N and P requirements, respectively. This highlights the importance of benthic organic matter remineralization on the bio-geochemistry of the northeastern continental shelf of the Gulf of Cadiz.
机译:通过在加的斯湾东北近海大陆架(深度范围:8至34 m)的2个区域,瓜达尔基维尔河河口附近的一个区域和底栖动物的底栖室温育来确定营养物和溶解的一氧化二氮(N_2O)的底流通量。另一个位于加的斯湾及其附近的大陆架。在2006年6月,2006年11月和2007年2月,总共进行了25次原位底栖腔室孵化,以研究控制底栖营养物再循环的主要因素及其在研究地点的意义。营养底栖生物通量(m〜(-2)d〜(-1))在-0.9和1.0 mmol NO_3〜-,-0.3和0.3 mmol NO_2〜-,-1.2和3.5 mmol NH_4〜+,-0.04和0.22 mmol HPO_4〜(2-)以及0.2和2.9 mmol Si(OH)_4。 N_2O的底流通量为-1.2至10.4μmolN-N_2O m〜(-2)d〜(-1),平均占无机总氮通量的<1%。 NH_4〜+和Si(OH)_4的再生主要受表层沉积物中有机碳的氧化速率和大量有机碳的影响。而HPO_4〜(2-)的再生主要受底水氧浓度和水深的影响。据估计,反硝化作用占有机物再矿化的9%至13%,潜在的可回收氮损失了57%至67%。总体而言,底栖矿化作用估计占上层初级生产的约47%,分别满足浮游植物N和P需求量的15%和12%。这突出了底栖有机物再矿化对加的斯湾东北大陆架生物地球化学的重要性。

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  • 来源
    《Marine ecology progress series》 |2009年第18期|79-95|共17页
  • 作者单位

    Departamento de Quimica Fisica, Facultad de Ciencias del Mar y Ambientales, Universidad de Cadiz, Campus Rio San Pedro, s,11510 Puerto Real, Cadiz, Spain Department of Oceanography, University of Hawaii, 1000 Pope Road, Honolulu, Hawaii 96822, USA;

    Departamenlo de Oceanografia, Instituto de Investigaciones Marinas, CSIC, c/ Eduardo Cabello 6, 36208 Vigo, Pontevedra, Spain;

    Departamento de Quimica Fisica, Facultad de Ciencias del Mar y Ambientales, Universidad de Cadiz, Campus Rio San Pedro, s,11510 Puerto Real, Cadiz, Spain;

    Departamento de Zooloxia e Antropoloxia Fisica, Facultade de Bioloxia, Universidade de Santiago de Compostela, Campus Sur, 15782 Santiago de Compostela, A Coruna, Spain;

    Departamento de Quimica Fisica, Facultad de Ciencias del Mar y Ambientales, Universidad de Cadiz, Campus Rio San Pedro, s,11510 Puerto Real, Cadiz, Spain;

    Departamenlo de Oceanografia, Instituto de Investigaciones Marinas, CSIC, c/ Eduardo Cabello 6, 36208 Vigo, Pontevedra, Spain;

    Departamento de Quimica Fisica, Facultad de Ciencias del Mar y Ambientales, Universidad de Cadiz, Campus Rio San Pedro, s,11510 Puerto Real, Cadiz, Spain;

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  • 正文语种 eng
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  • 关键词

    benthic fluxes; nutrient regeneration; denitrification; nitrous oxide; macrofauna; coastal sediments; gulf of cadiz;

    机译:底流养分再生;反硝化笑气;大型动物沿海沉积物;卡迪士湾;

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