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Influence of environmental parameters on bio-optical characteristics of colored dissolved organic matter in a complex tropical coastal and estuarine region

机译:环境参数对复杂热带沿海和河口地区有色溶解有机物生物光学特性的影响

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Dissolved organic matter (DOM) is an important source of carbon in aquatic ecosystems, and colored DOM (CDOM), which is smaller than 0.2 mu m and interacts with ultraviolet (UV) and visible light, affects the spectral quality and quantity of light in water. In this study, the spatial and temporal variations of CDOM with changes in environmental conditions were investigated from March 2014 to May 2017 in the coastal waters and two estuaries (Zuari and Mandovi) of Goa, western India, and the major sources and sinks controlling the optical properties of these waters were identified. The CDOM absorption in the estuaries was two times higher than that of the coastal waters. It was also determined that the CDOM absorption at 412 nm (a(g)412) in the coastal and estuarine waters significantly varied between seasons. The a(g)412 was found to be higher in the coastal waters during the spring inter-monsoon (SIM) and fall inter-monsoon (FIM) than during the northeast monsoon (NEM). The high absorption during the SIM was of autochthonous origin, while terrigenous DOM was the primary contributor mainly during the FIM. The photobleaching of CDOM was highest during the SIM, resulting in the predominance of low-molecular-weight DOM in the coastal waters. This photobleaching of DOM also resulted in deeper UV light penetration, as indicated by the diffuse attenuation coefficient K-d at 350 nm. In the Mandovi and Zuari estuaries, higher levels of CDOM were observed during the southwest monsoon (SWM) and SIM than the FIM and NEM. The terrigenous DOM contribution was higher in the estuaries during the SWM, while phytoplankton contributed to a higher level of CDOM during the SIM. CDOM exhibited non-conservative mixing behavior in the study region, as it decreased in estuaries with lower salinities and increased at salinities between 20 and 31. Considering the importance of CDOM in the carbon cycle, this study highlights the various sources and sinks of CDOM controlling the optical properties and biogeochemical processes of coastal and estuarine waters.
机译:溶解的有机物(DOM)是水生态系统中的碳中的重要来源,并且彩色DOM(CDOM)小于0.2μm,与紫外线(UV)和可见光相互作用,影响光谱质量和光线水。在这项研究中,从2014年3月到2017年5月在2017年到2017年5月,在沿海水域和两个河口(Zuari和Mandovi)的果阿,印度和主要来源和水槽控制的两个河口(Zuari和Mandovi)调查了环境条件变化的空间和时间变化。鉴定了这些水的光学性质。河口中的CDOM吸收比沿海水域高出两倍。还确定沿海和河口水域中412nm(a(g)412)的Cdom吸收显着变化在季节之间。在春季季风(SIM)和季风间(FIM)期间,在沿海水域(SIM)和季风间(FIM)期间,沿海水域(MIM)的沿海水域(NEM)中,发现A(g)412更高。 SIM期间的高吸收是自动加速的起源,而在FIM期间,人民DOM主要是主要贡献者。在SIM期间CDOM的光漂白是最高的,导致沿海水域中的低分子量DOM的优势。该光博的DOM也导致更深的UV光穿透,如350nm的漫反射系数K-D所示。在Mandovi和Zuari河口中,在西南季风(SWM)和SIM之后观察到较高水平的CDOM,而不是FIM和NEM。在SMM期间,河口河口中的河口中的河口贡献较高,而浮游植物在SIM期间有助于较高水平的CDOM。 CDOM在研究区域中表现出非保守的混合行为,因为它在盐度下降的河口中减少,并且在20到31之间的盐度增加。考虑到CDOM在碳循环中的重要性,这项研究突出了CDom控制的各种来源和汇率沿海和河口水域的光学性质和生物地球化学过程。

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