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Seasonal and tidal influence for water quality changes in coastal Bolgoda Lake system, Sri Lanka

机译:沿海Bolgoda Lake System,Sri Lanka水质变化的季节性和潮汐影响

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The variation in physicochemical properties is a notable feature to identify hydrodynamic and biogeochemical processes in coastal aquatic systems. In this study, the spatial and temporal changes of water quality parameters were measured with respect to spring and neap tides, covering both single and different monsoon periods. Bulk organic geochemical proxies such as total organic carbon to total nitrogen (C/N ratio) and total organic carbon to total sulfur (C/S ratio) were also considered to evaluate organic sources and depositional environments, respectively. The conductivity was decreased with distance from the sea-mouth to stream during the neap tide under the influence of weak precipitation. No significant variation in conductivity can be observed during the spring tide under the influence of strong precipitation. In addition, the conductivity values in North Bolgoda Lake show homogeneous distribution during spring and neap tides within single monsoon period. Therefore, the reduction of freshwater supply (precipitation) had played a significant role in developing salinity stratification along this coastal water body. The seasonal stratification can control organic matter preservation, as oxygen dissolution is decreased with increasing salinity. In contrast, tidal variation and precipitation had no direct connection to change salinity in surrounding groundwater aquifers. Organic geochemical proxies indicate possible oligotrophic to mesotrophic levels of productivity in Bolgoda Lake system. The prominent fluvial process during rainy periods and seawater invasion during dry periods can diminish the accumulation of nutrients and anthropogenic deteriorations in Bolgoda Lake system under sea-mouth open nature.
机译:物理化学特性的变化是鉴定沿海水生系统中的流体动力学和生物地球化学过程的显着特征。在该研究中,测量了水质参数的空间和时间变化是针对弹簧和NeAP潮汐测量的,涵盖单一和不同的季风时期。还认为分别对总氮气(C / N比)和总有机碳总有机碳(C / N比)和总有机碳(C / S比)的批量有机地球化学阶段分别考虑分别评估有机源和沉积环境。在NeAP潮汐疲软沉淀的影响下,电导率随着距离海口的距离而降低。在春潮期间,在强沉淀的影响下,春潮中没有明显的导电变化。此外,北博尔加达湖中的电导率值在单季度季风期内春季和NeAP潮汐期间显示均匀分布。因此,淡水供应量(降水)降低在沿着该沿海水体开发盐度分层方面发挥了重要作用。季节性分层可以控制有机物保存,因为随着盐度的增加而降低氧溶解。相比之下,潮汐变化和沉淀没有直接连接以改变周围地下水含水层的盐度。有机地球化学代理表明Bolgoda Lake System中可能的缺乏营养水平的植物营养水平。在干燥时期下雨时期和海水侵袭过程中突出的河流过程可以在海口开放性下削弱博尔加达湖系统中养分和人为劣化的积累。

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