Dynamics and source characterization of chromophoric dissolved organic matter (CDOM) in a tropical monsoon driven lagoon

IF 3 3区 地球科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Sambit Singh , Susmita Raulo , Tamoghna Acharyya , Deepak R. Mishra , Abhishek Kumar , Anu Gopinath , Pradipta R. Muduli , Gurdeep Rastogi
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Abstract

While there is a significant body of research on the dynamics of chromophoric dissolved organic matter (CDOM) in coastal and offshore waters, our understanding of CDOM dynamics in tropical inland water bodies remains limited. To bridge this knowledge gap, a monthly in-situ investigation was carried out at 33 stations along a monsoon driven lagoon, Chilika, on the southeast coast of India for one year i.e., from July 2018 to June 2019. CDOM absorption at 440 nm [aCDOM(440)] data were analyzed as a proxy for CDOM concentration which varied between a range of 0.04–65.14 m−1 with an average value of 2.77 ± 5.23 m−1. A gradient in aCDOM(440) was observed from the river discharge dominated shallower northern sector (4.91 ± 8.32) m−1 to the more isolated and less fresh water influenced deeper southern sector (1.21 ± 1.55) m−1. Spectral slope (S), spectral slope ratio (SR), and molecular weight proxy (M) were computed to understand the possible source and fate of CDOM in the lagoon. The average spectral slope of S280–500 and S350–500 vary between 0.002 and 0.096 nm−1 and 0.001–0.095 nm−1, respectively. The (SR) and (M) values ranged between of 0.01–6.81 and 0.31–52.28. It was observed that large-sized, high molecular weight CDOM from terrestrial origin was prevalent during monsoon with lower (S280–500), (SR), and (M)values. In contrast, lower molecular weight CDOM fractions were prevalent during pre- and post-monsoon which were mainly of autochthonous origin with higher (S350–500), (SR), and (M) values. Our findings indicate significant spatio-temporal variations of CDOM in Chilika Lagoon, influenced by the monsoon-driven influx of freshwater and the mixing of fresh and marine water. In-situ changes in CDOM are likely shaped by microbial breakdown and photodegradation.

Abstract Image

热带季风驱动环礁湖中色度溶解有机物(CDOM)的动态和来源特征
尽管对沿海和近海水域的色度溶解有机物(CDOM)动态有大量研究,但我们对热带内陆水体中 CDOM 动态的了解仍然有限。为了弥补这一知识空白,我们在印度东南沿海季风驱动的奇利卡泻湖沿岸的 33 个站点开展了为期一年(即从 2018 年 7 月至 2019 年 6 月)的月度原位调查。分析了 CDOM 在 440 纳米波长的吸收率[aCDOM(440)]数据,作为 CDOM 浓度的替代值,其变化范围为 0.04-65.14 m-1,平均值为 2.77 ± 5.23 m-1。aCDOM(440)呈梯度变化,从以河水排放为主的较浅北区(4.91 ± 8.32)m-1 到较为孤立且受淡水影响较小的较深南区(1.21 ± 1.55)m-1。计算了光谱斜率(S)、光谱斜率比(SR)和分子量代用值(M),以了解泻湖中CDOM的可能来源和去向。S280-500 和 S350-500 的平均光谱斜率分别为 0.002-0.096 nm-1 和 0.001-0.095 nm-1。(SR) 和 (M) 值介于 0.01-6.81 和 0.31-52.28 之间。据观察,季风期间,来自陆地的大粒径、高分子量 CDOM 普遍具有较低的(S280-500)、(SR)和(M)值。与此相反,在季风前后,低分子量的CDOM馏分很普遍,这些馏分主要来自自生生物,具有较高的(S350-500)、(SR)和(M)值。我们的研究结果表明,受季风驱动的淡水流入以及淡水和海水混合的影响,奇利卡泻湖中的CDOM发生了明显的时空变化。CDOM的原位变化可能受微生物分解和光降解的影响。
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来源期刊
Marine Chemistry
Marine Chemistry 化学-海洋学
CiteScore
6.00
自引率
3.30%
发文量
70
审稿时长
4.5 months
期刊介绍: Marine Chemistry is an international medium for the publication of original studies and occasional reviews in the field of chemistry in the marine environment, with emphasis on the dynamic approach. The journal endeavours to cover all aspects, from chemical processes to theoretical and experimental work, and, by providing a central channel of communication, to speed the flow of information in this relatively new and rapidly expanding discipline.
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