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Spatiotemporal Characterization of Chromophoric Dissolved Organic Matter (CDOM) and CDOM-DOC Relationships for Highly Polluted Rivers

机译:高污染河流发色性有机质(CDOM)和CDOM-DOC关系的时空特征

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Spectral characteristics of CDOM (Chromophoric dissolved organic matter) in water columns are a key parameter for bio-optical modeling. Knowledge of CDOM optical properties and spatial discrepancy based on the relationship between water quality and spectral parameters in the Yinma River watershed with in situ data collected from highly polluted waters are exhibited in this study. Based on the comprehensive index method, the riverine waters showed serious contamination; especially the chemical oxygen demand (COD), iron (Fe), manganese (Mn), mercury (Hg) and dissolved oxygen (DO) were out of range of the contamination warning. Dissolved organic carbon (DOC) and total suspended matter (TSM) with prominent non-homogenizing were significantly high in the riverine waters, but chlorophyll-a (Chl-a) was the opposite. The ternary phase diagram showed that non-algal particle absorption played an important role in total non-water light absorption (>50%) in most sampling locations, and mean contributions of CDOM were 13% and 22% in the summer and autumn, respectively. The analysis of the ratio of absorption at 250–365 nm ( E 250:365 ) and the spectral slope ( S 275–295 ) indicated that CDOM had higher aromaticity and molecular weight in autumn than in summer, which is consistent with the results of water quality and the CDOM relative contribution rate. Redundancy analysis (RDA) indicated that the environmental variables OSM (Organic suspended matter) had a strong correlation with CDOM absorption, followed by heavy metals, e.g., Mn, Hg and Cr 6+ . However, for the specific UV absorbance (SUVA 254 ), the seasonal values showed opposite results compared with the reported literature. The potential reasons were that more UDOM (uncolored dissolved organic matter) from human sources (wastewater effluent) existed in the waters. Terrigenous inputs simultaneously are in relation to the a CDOM (440)-DOC relationship with the correlation coefficient of 0.90 in the summer (two-tailed, p < 0.01), and 0.58 in the autumn (two-tailed, p < 0.05). Spatial distribution of the CDOM parameters exhibited that the downstream regions focused on dry land have high CDOM molecular weight and aromatic hydrocarbon. Partial sampling locations around the cities or countries generally showed abnormal values due to terrigenous inputs. As a bio-optical model parameter, the spectral characteristic of CDOM is helpful in adjusting the derived algorithms in highly polluted environments. The study on organic carbon and pollutants in highly polluted waters had an important contribution to global carbon balance estimation and water environment protection.
机译:水柱中CDOM(发色溶解的有机物)的光谱特性是生物光学建模的关键参数。这项研究展示了基于银马河流域水质与光谱参数之间关系的CDOM光学特性和空间差异的知识,以及从高污染水域收集的原位数据。根据综合指标法,江河水域污染严重。特别是化学需氧量(COD),铁(Fe),锰(Mn),汞(Hg)和溶解氧(DO)不在污染警告范围内。在河水中溶解有机碳(DOC)和总悬浮物(TSM)具有明显的非均质性,但叶绿素-a(Chl-a)却相反。三元相图显示,在大多数采样位置中,非藻类颗粒的吸收在总非水光吸收中(> 50%)起着重要作用,CDOM在夏季和秋季的平均贡献分别为13%和22%。 。对250-365 nm处的吸收比(E 250:365)和光谱斜率(S 275-295)的分析表明,CDOM在秋季比夏季具有更高的芳香性和分子量,这与CDOM的结果一致。水质和CDOM相对贡献率。冗余分析(RDA)表明,环境变量OSM(有机悬浮物)与CDOM吸收密切相关,其次是Mn,Hg和Cr 6+等重金属。然而,对于特定的紫外线吸收率(SUVA 254),季节值与报道的文献相比显示相反的结果。潜在的原因是在水域中存在着更多的人为来源的UDOM(无色溶解有机物)(废水)。陆源输入同时与CDOM(440)-DOC关系有关,相关系数在夏季(两尾,p <0.01)为0.90,在秋季(两尾,p <0.05)为0.58。 CDOM参数的空间分布表明,集中在旱地的下游区域具有较高的CDOM分子量和芳烃。由于源性输入,城市或国家/地区的部分采样位置通常显示异常值。作为生物光学模型参数,CDOM的光谱特性有助于在高污染环境中调整派生算法。高污染水中有机碳和污染物的研究对全球碳平衡估算和水环境保护具有重要意义。

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