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Evaluation of ammonium and phosphate release from intertidal and subtidal sediments of a shallow coastal lagoon (Ria Formosa – Portugal): a modelling approach

机译:浅水沿海泻湖(Ria Formosa –葡萄牙)的潮间带和潮间带沉积物释放的铵和磷酸盐的评估:一种建模方法

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摘要

During an annual cycle, overlying water and sediment cores were collected simultaneously at three sites (Tavira, Culatra and Ramalhete) of Ria Formosa’s intertidal muddy and subtidal sandy sediments to determine ammonium, nitrates plus nitrites and phosphate. Organic carbon, nitrogen and phosphorus were also determined in superficial sediments. Ammonium and phosphate dissolved in porewater were positively correlated with temperature (P < 0.01) in muddy and sandy sediments, while the nitrogen-oxidized forms had a negative correlation (P < 0.02) in muddy sediments probably because mineralization and nitrification/denitrification processes vary seasonally. Porewater ammonium profiles evidenced a peak in the top-most muddy sediment (380 μM) suggesting higher mineralization rate when oxygen is more available, while maximum phosphate concentration (113 μM) occurred in the sub-oxic layer probably due to phosphorus desorption under reduced conditions. In organically poor subtidal sandy sediments, nutrient porewater concentrations were always lower than in intertidal muddy sediments, ranging annually from 20 μM to 100 μM for ammonium and from 0.05 μM to 16 μM for phosphate. Nutrient diffusive fluxes predicted by a mathematical model were higher during summer, in both muddy (104 nmol cm−2 d−1––NH 4 + ; 8 nmol cm−2 d−1––HPO 4 −2 ) and sandy sediments (26 nmol cm−2 d−1––NH 4 + ; 1 nmol cm−2 d−1––HPO 4 −2 ), while during lower temperature periods these fluxes were 3–4 times lower. Based on simulated nutrient effluxes, the estimated annual amount of ammonium and phosphate exported from intertidal areas was three times higher than that released from subtidal areas (22 ton year−1––NH 4 + ; 2 ton year−1––HPO 4 −2 ), emphasizing the importance of tidal flats to maintain the high productivity of the lagoon. Global warming scenarios simulated with the model, revealed that an increase in lagoon water temperature only produces significant variations (P < 0.05) for NH 4 + in porewater and consequent diffusive fluxes, what will probably affect the system productivity due to a N/P ratio unbalance.
机译:在每年的周期中,同时在Ria Formosa潮间带和潮间带沙质沉积物的三个位置(Tavira,Culatra和Ramalhete)同时收集上覆的水和沉积物核心,以确定铵,硝酸盐,亚硝酸盐和磷酸盐。在表层沉积物中还测定了有机碳,氮和磷。泥质和沙质沉积物中溶解在孔隙水中的铵和磷酸盐与温度成正相关(P <0.01),而泥质沉积物中氮氧化形式呈负相关(P <0.02),可能是因为矿化和硝化/反硝化过程随季节变化。孔隙水铵剖面显示最顶部泥质沉积物(380μM)出现一个峰值,表明当更多的氧气可利用时,矿化速率更高,而亚含氧层中的最大磷酸盐浓度(113μM)可能是由于磷在还原条件下的解吸所致。在潮差有机质较差的沙质沉积物中,养分孔隙水浓度始终低于潮间带泥质沉积物,铵盐的年均浓度范围为20μM至100μM,磷酸盐的范围为每年0.05μM至16μM。通过数学模型预测的养分扩散通量在夏季都较高,在两个浑浊的土壤中(104 nmol cm-2 d-1 –NH 4 + ; 8 nmol cm −2 d−1 -HPO 4 −2 )和沙质沉积物(26 nmol cm−2 d-1 - NH 4 + ; 1 nmol cm−2 d−1 -HPO 4 -2 ),而在较低温度下,通量降低了3-4倍。根据模拟的养分流向,潮间带地区每年出口的铵和磷酸盐估计量是潮下带(22吨年-1 -NH 4 + ; 2吨年−1 -HPO 4 -2 ),强调了滩涂对维持泻湖高生产力的重要性。用该模型模拟的全球变暖情景表明,泻湖水温的升高只会使孔隙水中的NH 4 + 产生显着变化(P <0.05),并产生扩散通量,这可能会影响系统N / P比不平衡导致生产率下降。

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  • 来源
    《Biogeochemistry》 |2007年第3期|291-304|共14页
  • 作者单位

    Environmental department INIAP/IPIMAR – CRIPSul Instituto Nacional de Investigação Agrária e das Pescas – Centro Regional de Investigação Pesqueira do Sul Avenida 5 de Outubro s 8700-305 Olhão Algarve Portugal;

    Environmental department INIAP/IPIMAR – CRIPSul Instituto Nacional de Investigação Agrária e das Pescas – Centro Regional de Investigação Pesqueira do Sul Avenida 5 de Outubro s 8700-305 Olhão Algarve Portugal;

    CEMAS Centro de Modelação e Análise de Sistemas Ambientais Universidade Fernando Pessoa Praça 9 de Abril 349. 4249-004 Porto Portugal;

    FCMA Faculdade de Ciências e do Mar Universidade do Algarve Campus de Gambelas 8005-139 Faro Portugal;

    INIAP/IPIMAR Instituto Nacional de Investigação Agrária e das Pescas Avenida de Brasília 1449-006 Lisboa Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ammonium; Coastal lagoon; Geochemical processes; Modelling; Phosphate; Ria Formosa;

    机译:铵盐;沿海泻湖;地球化学过程;模拟;磷酸盐;福尔摩沙;

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