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Temporal variation and interaction of full size spectrum Alcian blue stainable materials and water quality parameters in a reservoir

机译:全尺寸光谱阿尔辛蓝可染物质与水库水质参数的时间变化和相互作用

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This paper reports on the fate of different fractions of Alcian blue, (AB) stainable material in Pao-Shan reservoir, Taiwan, in a one-year study (2013-2014) and an intensive study during phytoplankton bloom (2014). The interactions between the fractions, including AB stained particles, particle and colloidal transparent exopolymer particles (pTEP and cTEP), dissolved acid polysaccharide (dAPS), and their relationship to other water quality parameters were analyzed. The Flow Cytometer and Microscope (FlowCAM) was for first time used to characterize AB stained particles. The results of the one-year study likely showed relationships of pTEP concentration to phytoplankton count and chlorophyll a, while in the intensive study, AB stained particles abundance and pTEP concentration were correlated neither phytoplankton count nor chlorophyll a, but strongly positively correlated with some phytoplankton species' abundance. The difference indicates that sampling frequency and phytoplankton composition should be addressed for studying the links between AB stained fractions and phytoplankton. The interaction between different AB stained fractions further suggests that the majority of AB stained particles and pTEP would be directly generated by some phytoplankton species, whereas their abiotic generation by cTEP or dAPS may only have contributed partly to their formation. This differs from previous studies which generally posited that pTEP are mainly formed abiotically from dissolved precursors. Successful application of FlowCAM for visualization of AB stained particles recommends this technique by which particle morphologies can be conserved and morphological features of particle can be simultaneously elucidated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过一项为期一年的研究(2013-2014年)和一项浮游植物开花期(2014年)的深入研究,报告了台湾宝山水库中不同含量的阿尔辛蓝(AB)可染材料的结局。分析了各组分之间的相互作用,包括AB染色颗粒,透明胶体颗粒和胶体透明颗粒(pTEP和cTEP),溶解性酸性多糖(dAPS),以及它们与其他水质参数的关系。流式细胞仪和显微镜(FlowCAM)首次用于表征AB染色的颗粒。这项为期一年的研究结果可能显示pTEP浓度与浮游植物计数和叶绿素a的关系,而在深入研究中,AB染色颗粒的丰度和pTEP浓度与浮游植物计数和叶绿素a均无关,但与某些浮游植物强烈相关。物种的丰富度。差异表明,应研究采样频率和浮游植物组成,以研究AB染色级分与浮游植物之间的联系。不同AB染色级分之间的相互作用进一步表明,大多数AB染色颗粒和pTEP将直接由某些浮游植物物种产生,而cTEP或dAPS产生的非生物性可能仅部分有助于它们的形成。这不同于以前的研究,后者通常认为pTEP主要是由溶解的前体非生物形成的。 FlowCAM在AB染色颗粒可视化方面的成功应用推荐了该技术,通过该技术可以保留颗粒形态并可以同时阐明颗粒的形态特征。 (C)2015 Elsevier Ltd.保留所有权利。

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