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Movement of Microphytobenthos and Sediment Between Mudflats and Salt Marsh During Spring Tides

机译:春潮期间泥浆和盐沼与泥浆物和泥沙的运动

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The movement of sediment and associated microphytobenthos (MPB) between the upper mudflat and salt marsh in a macrotidal estuary was investigated by comparing the variability of benthic chlorophyll a (Chl. a) and suspended Chl. a during flood and ebb spring tides during the 2015 super moon event. Sampling was carried out for four days in August and September. Flood tide water carried significantly higher amounts of Chl. a from the mudflat transition zone onto the salt marsh compared to the amount of leaving the salt marsh during ebb tides. Suspended solid loads, suspended Chl. a concentrations, and diatom species composition provided evidence that resuspended mudflat sediments containing biofilm material was transferred onto the salt marsh by flood tide. Significant negative correlations between sediment Chl. a concentrations on the upper mudflat transition zone and Chl. a concentrations in flood tide water indicated biostabilisation of sediments by biofilms reducing sediment resuspension. Mean wind speed had a significant positive effect on resuspending Chl. a from the salt marsh sediment surface into the ebb tide (p 0.001). The amount of Chl. a being resuspended in flood and ebb tidal waters was significantly correlated with MPB biomass on the sediment surface on the mudflat and salt marsh, respectively. Resuspended diatoms over the mudflat during high tide shared a total of 54.3 % similar species with diatoms recorded in flood tidal water over the salt marsh. Diatom taxa characteristic of salt marsh assemblages, and some deposited diatom taxa were resuspended and carried off the salt marsh during ebb tide. Resuspension of Chl. a in both flood and ebb waters was significantly controlled by the tidal range (both significant at p 0.001). During spring tides, there was a net movement of characteristic MPB mudflat diatom taxa and sediment from the adjacent mudflat to the salt marsh, contributing to the accumulation of material within vegetated marshes during summer months.
机译:通过比较肉叶叶绿素A(CHL.A)和悬浮的CHL的可变性,研究了麦芽糖河口中泥浆和盐沼与麦芽藻上的泥浆沼泽与盐沼之间的沉积物和相关的微蛋白运动在2015年超级月亮活动期间洪水和退潮春季潮汐。在八月和九月进行了四天的抽样。洪水潮水携带明显较高的CHL。与在退潮期间留下盐沼的量,从泥污染过渡区到盐沼。悬浮的固体载荷,悬浮的CHL。浓度和硅藻种组成提供了据血液将含有生物膜物质的泥花沉积物重新悬浮到盐沼气中的次潮。沉积物CHL之间的显着负相关性。上部泥浆过渡区和CHL上的浓度。洪水潮水中的浓度表明了生物膜降低沉积物重悬的生物膜的沉积物的生物化。平均风速对重新悬浮CHL具有显着的积极作用。 a从盐沼沉积物表面进入潮潮(p <0.001)。 CHL的量。在泥浆和盐沼的沉积物表面上分别与洪水和退潮潮水中重新悬浮在洪水和退潮水域中。在高潮中重新悬浮在Mudflat上,共分配了总共54.3%,盐沼在洪水水中记录了抗硅藻。盐沼组合的硅藻素特征,以及一些沉积的硅藻征在退潮期间重新悬浮并脱掉盐沼。重新悬浮CHL。洪水和冰布中的一个受到潮汐范围的显着控制(P <0.001)的显着控制。在春季潮汐期间,特征MPB Mudflat硅藻毒群和沉积物的净运动与邻近的泥浆到盐沼,为夏季期间造成植被沼泽内的材料积累。

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