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Spectral Characteristics in the Degradation Process of Colored Dissolved Organic Matter from Large Filamentous Algae Sources in Saltwater Lake

机译:盐水湖大丝状藻类源溶解有机物降解过程中的光谱特性

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The indoor experimental study was on a large common species of filamentous green algae in the North Lake beach of Chongming Island - bristles algae liquid produced by algae growth during the photodegradation of colored dissolved organic matter (CDOM) spectral characteristics change. Absorption coefficient a (355) in the degradation experiment was reduced 27.44%, however , in the control experiment, a (355) was only 1.61% lower. In the photodegradation process of degradation experiments and control experiments, the values of M and S were increased to the different extent and the increased value of the former was higher than the latter. By using three-dimensional fluorescence spectroscopy (EEMS), the detected peak value of protein-and humic fluorescence in control experiments was little changed, while significantly increased in the degradation experiments. By the analysis of parallel factor model (PARAFAC) combined with three-dimensional fluorescence excitation - emission matrix data (EEMS), the three-component CDOM: CI, C2, C3, respectively were relative to humic fluorescence peaks A, C, and protein-like fluorescence B. In the degradation experiments, small changes were in the components of CI, however the components of C2, C3 compared with those in the control group were increased by nearly 2 times. All results showed that the photodegradation process of bristles algae liquid can cause changes of the CDOM in the structure and content, easier to produce small molecules and weak aromatic CDOM.
机译:室内实验研究是崇明岛北湖海滩的大型丝状绿藻种类,在藻类生长期间在彩色溶解有机物质(CDom)光谱特性变化期间通过藻类生长产生的藻类藻类液体。降解实验中的吸收系数A(355)降低了27.44%,但在对照实验中,A(355)仅降低1.61%。在降解实验和对照实验的光降解过程中,M和S的值增加到不同程度,并且前者的增加值高于后者。通过使用三维荧光光谱(EEMS),对照实验中检测到的蛋白质和腐殖荧光的峰值几乎没有变化,但在降解实验中显着增加。通过分析并行因子模型(PARAFAC)与三维荧光激发 - 发射矩阵数据(EEM)结合,三组分CDOM:CI,C2,C3分别是相对于腐殖荧光峰A,C和蛋白质在降解实验中,荧光B.在降解实验中,在CI的组分中,较小的变化,然而,与对照组的组分,与对照组的组分增加了近2次。所有结果表明,刷毛藻类液体的光降解过程会导致CDOM在结构和内容中的变化,更容易产生小分子和弱芳族CDOM。

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