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Spatiotemporal variations in the abundance and composition of bulk and chromophoric dissolved organic matter in seasonally hypoxia-influenced Green Bay, Lake Michigan, USA

机译:受季节低氧影响的绿湾(美国密歇根州湖),大量和发色团溶解的有机物的丰度和组成的时空变化

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摘要

Green Bay, Lake Michigan, USA, is the largest freshwater estuary in the Laurentian Great Lakes and receives dis-proportional terrestrial inputs as a result of a high watershed to bay surface area ratio. While seasonal hypoxia and the formation of "dead zones" in Green Bay have received increasing attention, there are no systematic studies on the dynamics of dissolved organic matter (DOM) and its linkage to the development of hypoxia. During summer 2014, bulk dissolved organic carbon (DOC) analysis, UV-vis spectroscopy, and fluorescence excitation-emission matrices (EEMs) coupled with PARAFAC analysis were used to quantify the abundance, composition and source of DOM and their spatiotemporal variations in Green Bay, Lake Michigan. Concentrations of DOC ranged from 202 to 571 μM-C (average = 361 ± 73 μM-C) in June and from 279 to 610 μM-C (average = 349 ± 64 μM-C) in August In both months, absorption coefficient at 254 nm (a_(254)) was strongly correlated to bulk DOC and was most abundant in the Fox River, attesting a dominant terrestrial input Non-chromophoric DOC comprised, on average. ~32% of bulk DOC in June with higher terrestrial DOM and ~47% in August with higher aquagenic DOM, indicating that autochthonous and more degraded DOM is of lower optical activity. PARAFAC modeling on EEM data resulted in four major fluorescent DOM components, including two terrestrial humic-like, one aquagenic humic-like, and one protein-like component Variations in the abundance of DOM components further supported changes in DOM sources. Mixing behavior of DOM components also indicated that while bulk DOM behaved quasi-conservatively, significant compositional changes occurred during transport from the Fox River to the open bay.
机译:美国密歇根湖绿湾是劳伦大湖中最大的淡水河口,由于流域与海湾表面积之比高,因此收到了不成比例的陆地投入。尽管季节性缺氧和绿湾中“死区”的形成受到越来越多的关注,但尚无关于溶解性有机物(DOM)的动力学及其与缺氧发展关系的系统研究。 2014年夏季,使用散装溶解有机碳(DOC)分析,紫外可见光谱和荧光激发发射矩阵(EEM)结合PARAFAC分析来量化绿湾中DOM的含量,组成和来源及其时空变化, 密歇根湖。 6月的DOC浓度范围为202至571μM-C(平均值= 361±73μM-C),8月的DOC浓度范围为279至610μM-C(平均值= 349±64μM-C)在两个月中,吸收系数均为254 nm(a_(254))与散装DOC密切相关,并且在福克斯河中含量最高,证明了平均而言占主导地位的陆地输入非发色DOC。 6月份约有32%的散装DOC具有较高的陆地DOM,而8月份有约47%的散装DOC具有较高的水生DOM,这表明自体和降解程度更高的DOM具有较低的光学活性。对EEM数据进行的PARAFAC建模产生了四个主要的荧光DOM成分,包括两个陆地腐殖质样,一个水生腐殖质样和一个蛋白质样组分。DOM组分丰度的变化进一步支持了DOM来源的变化。 DOM成分的混合行为还表明,虽然散装DOM表现为准保守,但从福克斯河到开阔海湾的运输过程中发生了明显的成分变化。

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  • 来源
    《The Science of the Total Environment》 |2016年第15期|742-757|共16页
  • 作者单位

    School of Freshwater Sciences, University of Wisconsin-Milwaukee, 600 E Greenfield Ave., Milwaukee, WI 53204, USA;

    School of Freshwater Sciences, University of Wisconsin-Milwaukee, 600 E Greenfield Ave., Milwaukee, WI 53204, USA;

    School of Freshwater Sciences, University of Wisconsin-Milwaukee, 600 E Greenfield Ave., Milwaukee, WI 53204, USA;

    School of Freshwater Sciences, University of Wisconsin-Milwaukee, 600 E Greenfield Ave., Milwaukee, WI 53204, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dissolved organic matter; CDOM; Hypoxia; Green Bay; Lake Michigan;

    机译:溶解的有机物;CDOM;缺氧;绿湾;密歇根湖;

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