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A century of limnological evolution and interactive threats in the Panama Canal: Long-term assessments from a shallow basin

机译:巴拿马运河中的一个世纪indnological演变和互动威胁:浅盆地的长期评估

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摘要

Large tropical river dam projects are expected to accelerate over the forthcoming decades to satisfy growing demand for energy, irrigation and flood control. When tropical rivers are dammed the immediate impacts are relatively well studied, but the long-term (decades-centuries) consequences of impoundment remain poorly known. We combined historical records of water quality, river flow and climate with a multi-proxy (macrofossils, diatoms, biomarkers and trace elements) palaeoecological approach to reconstruct the limnological evolution of a shallow basin in Gatun Lake (Panama Canal, Panama) and assess the effects of multiple linked factors (river damming, forest flooding, deforestation, invasive species, pollution and hydro-climate) on the study area. Results show that a century after dam construction, species invasion, deforestation and salt intrusions have forced a gradual change in the study basin from a swamp-type environment towards a more saline lake-governed system of benthic-littoral production likely associated with the expansion of macrophyte stands. Hydrology still remains the most important long-term (decades) structural factor stimulating salinity intrusions, primary productivity, deposition of minerals, and reduction of water transparency during wet periods. During dry periods, physical-chemical conditions are in turn linked to clear water and aerobic conditions while nutrients shift to available forms for the aquatic biota in the detrital-rich reductive sediments. Our study suggests that to preserve the natural riverine system functioning of this area of the Panama Canal, management activities must address long-term ecosystem structural drivers such as river flow, runoff patterns and physical-chemical conditions.
机译:预计大型热带河坝项目将加速即将到来的十年,以满足对能源,灌溉和防洪的需求不断增长。当热带河流被毁坏时,立即影响力度相对良好,但长期(数百年)的蓄水后果仍然众所周知。我们将水质,河流和气候的历史记录与多功能(Macrofossils,硅藻,生物标志物和微量元素)综合,古生学方法重建了Gatun湖(巴拿马运河,巴拿马)的浅盆地的in Limnological演变并评估了多种联系因子(河流灾害,森林洪水,森林砍伐,侵袭物种,污染和水力气候)对研究区的影响。结果表明,一个世纪在大坝建设之后,物种入侵,森林砍伐和盐侵入在研究盆地从沼泽型环境中强迫逐渐变化,朝向更具良好的良生型生产系统的良生湖治理,可能与扩张相关宏观物质展示。水文仍然是最重要的长期(几十年)结构因素刺激盐度入侵,初级生产率,矿物质沉积,以及在潮湿时期的降低水透明度。在干燥期间,物理化学条件又与清水和好氧条件相关联,同时营养成转向可欺骗性的减少沉积物中的水生生物群。我们的研究表明,为了保留这一领域的巴拿马运河的天然河流系统,管理活动必须解决河流,径流模式和物理化学条件等长期生态系统结构司机。

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  • 来源
    《The Science of the Total Environment》 |2020年第10期|138444.1-138444.13|共13页
  • 作者单位

    Laboratorio de Palinologia y Paleoecologia Tropical Departamento de Ciencias Biologicas Universidad de Los Andes Carrera 1# 18A-12 Bogota Colombia Smithsonian Tropical Research Institute PO Box 0843-03092 Balboa Panama Facultad de Ingenieria Universidad Catolica de Colombia Bogota Avenida Caracas # 46-72 Colombia;

    University of Regina Department of Geology 3737 Wascana Parkway Regina Saskatchewan S4S 0A2 Canada;

    Laboratorio de Palinologia y Paleoecologia Tropical Departamento de Ciencias Biologicas Universidad de Los Andes Carrera 1# 18A-12 Bogota Colombia;

    Environmental Change Research Centre Department of Geography University College London Gower Street London WC1E 6BT United Kingdom;

    Environmental Change Research Centre Department of Geography University College London Gower Street London WC1E 6BT United Kingdom;

    Departamento de Geociencias Universidad de Los Andes Carrera 1#18A-12 Bogota Colombia;

    Departamento de Geociencias Universidad de Los Andes Carrera 1#18A-12 Bogota Colombia;

    Smithsonian Tropical Research Institute PO Box 0843-03092 Balboa Panama Department of Biological Geological and Environmental Sciences University of Bologna Bologna Italy;

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

    Hydrology; Tropical rivers; Species invasion; Palaeoecology; Panama Canal; River damming;

    机译:水文;热带河流;物种入侵;古生学;巴拿马运河;河流渔场;

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