首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Interplay between biology and sedimentology in a mudflat (Biezelingse Ham, Westerschelde, The Netherlands)
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Interplay between biology and sedimentology in a mudflat (Biezelingse Ham, Westerschelde, The Netherlands)

机译:泥滩中生物学与沉积学之间的相互作用(荷兰韦斯特切尔德的比泽林斯·汉姆)

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摘要

The aim of this research was to investigate the importance of biological processes on the sediment characteristics and the morphology of a mudflat in the Westerschelde (The Netherlands). For this purpose, a transect in the Biezelingse Ham mudflat was sampled on a monthly basis. In spring, the muddy part of the mudflat was dominated by a biofilm of microphytobenthos that altered the morphology of the mudflat and resulted in a two-fold increase in sediment stability. The biofilm also bound fine-grained sediment that was deposited. From June onwards, wind generated waves dominated the conditions at the mudflat which resulted in the disappearance of diatom biofilms, and caused a gradual erosion of the mudflat. During this period, meio- and macrofauna densities increased from which it was concluded that the hydrodynamic forces did not have a big impact on these communities. Spatial variations in sediment characteristics, morphology and biology were observed between stations 1 and 2 on the one hand and station 3 on the other. This resulted in different responses to the changing conditions on the mudflat. In general, the results from this field study indicate that sedimentology and biology, interact in a complex manner with the hydrodynamic regime both on a temporal as well as on a spatial scale. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 35]
机译:这项研究的目的是调查生物过程对Westerschelde(荷兰)泥沙特征和滩涂形态的重要性。为此,每月对Biezelingse火腿泥滩中的样面进行采样。在春季,泥滩的泥泞部分被微藻底生物膜所占据,该生物膜改变了泥滩的形态,并使沉积物的稳定性增加了两倍。生物膜还结合了沉积的细颗粒沉积物。从六月开始,风产生的波浪主导了滩涂的条件,从而导致硅藻生物膜的消失,并导致了滩涂的逐渐侵蚀。在此期间,中小型动物和大型动物的密度增加,由此得出的结论是,水动力对这些群落的影响不大。一方面在站1和2之间,另一方面在站3之间观察到沉积物特征,形态和生物学的空间变化。这导致了对滩涂条件变化的不同反应。总的来说,这项实地研究的结果表明,沉积学和生物学在时间和空间尺度上都以复杂的方式与水动力机制相互作用。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:35]

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