夏季渭河西安段溶解性有机质(DOM)的特征、分布及来源分析
Characteristics, distribution and source analysis of dissolved organic matter in Xi'an section of Weihe River in summer
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摘要: 通过紫外吸收光谱,三维荧光光谱结合平行因子分析(EEMs-PARAFAC)方法及主成分分析(PCA),研究了夏季渭河西安段水体中的溶解性有机质(DOM)的组成、来源,及其与水质指标的相关性.在研究区域共检出2种类别5个不同的DOM组分,分别为类腐殖质荧光组分C1、C2、C3、C5和1个类蛋白类荧光组分C4,5个组分具有同源性.对比分析光谱斜率S、SUVA254、α355和DOC浓度,上游(S1—S5)和下游(S13—S17)各组分分子量和腐殖化程度接近但来源有所差异,中游(S6—S12、S18—S19)分子量和腐殖化程度最低;研究区域DOM和CDOM浓度值变化基本保持一致.通过三维光谱参数和主成分分析进行DOM源解析,内源贡献率为72.36%,外源贡献率为12.45%,累计方差贡献率为84.81%;污废水排放是组分C1、C4的主要来源,C2、C3、C5则来源于城市景观水体和湿地公园中微生物和浮游动植物的活动产生,TN与外源具有较好的相关性而TP与内源相关性较高.水质指标DO、DOC、COD、TN、TP与DOM组分有较强的相关性.在此基础上建立了多元线性回归方程,一定程度上能够利用荧光组分组成和特征反映渭河夏季的水质状况.Abstract: By using ultraviolet spectrophotometry, three-dimensional fluorescence spectrum combined with parallel factor analysis (EEMs-PARAFAC) and principal component analysis (PCA), the composition, source of dissolved organic matter (DOM) and its correlation with other water quality indexes of Xi'an section of Weihe River in summer were studied. The results showed that five different components in two categories were detected, including four humus-like fluorescence components C1, C2, C3, C5 and one protein-like fluorescence component C4. And there were a high homology for the five components. By analyzing the spectral slope S, SUVA254, α355 and DOC concentration, it showed that the molecular weight and humification degree of DOM components in the upper and lower reaches were similar, but the sources were different. While the molecular weight and humification degree in the middle reaches were the lowest. The DOM and CDOM concentration in the study region were basically consistent. The source apportionment through three-dimensional spectral parameters and principal component analysis indicated that the endogenous contribution of DOM was 72.36%, while the exogenous contribution was 12.45% and the cumulative variance contribution was 84.81%. The sewage discharge contributed to the source of components C1 and C4 mainly, while source of components C2, C3 and C5 were attributed to the activities of microorganisms, planktons and plants in urban landscape water bodies and wetland parks. The total nitrogen had a good correlation with exogenous sources while TP correlated with endogenous sources highly. The linear multiple regression equations founded can reflect the water quality of Weihe River in summer to a certain extent.
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[1] HOPKINSON CHARLES S,VALLINO JOSEPH J. Efficient export of carbon to the deep ocean through dissolved organic matter[J].Nature,2005,433(7022):142-145. [2] TER LAAK THOMAS L,VAN EIJKEREN JAN C H,BUSSER FRANS J M,et al. Facilitated transport of polychlorinated biphenyls and polybrominated diphenyl ethers by dissolved organic matter[J]. Environmental Science & Technology,2009,43(5):1379-1385. [3] VERA I,SLAVEYKOVA.Predicting Pb bioavailability to freshwater microalgae in the presence of fulvic acid:Algal cell density as a variable[J]. Chemosphere,2007,69(9):1438-1445. [4] XU H C, YU G H, YANG L Y, et al. Combination of two-dimensional correlation spectroscopy and parallel factor analysis to characterize the binding of heavy metals with DOM in lake sediments[J]. Journal of Hazardous Materials, 2013, 263:412-421. [5] 祝鹏,华祖林,张润宇,等.太湖溶解有机质光谱和氮磷污染的区域分布差异特征[J].环境科学研究,2012,23(2):129-136. ZHU P,HUA Z L,ZHANG R Y,et al.Characteristics of spatial distribution differences of spectrum of dissolved organic matter and nitrogen/phosphorus pollution in Taihu Lake[J].Research of Environmental Sciences,2012,23(2):129-136(in Chinese).
[6] 钱锋,吴婕赟,于会彬,等.多元数理统计法研究太子河本溪城市段水体DOM紫外光谱特征[J].环境科学,2016,37(10):3806-3812. QIAN F,WU J,YU H B,et al.UV-visible spectra properties of DOM from Taizi River in Benxi City section by multivariable analysis[J]. Environmental Science,2016,37(10):3806-3812(in Chinese).
[7] HOSEN J D, MCDONOUGH O T, FEBRIA C M, et al. Dissolved organic matter quality and bioavailability changes across an urbanization gradient in headwater streams[J]. Environmental Science & Technology,2014,48(14):7817-7824. [8] 陈昭宇,李思悦.三峡库区城镇化背景下河流DOM的吸收及荧光光谱特征[J].环境科学,2019(12):5309-5317. CHEN Z Y,LI S Y.Absorption and fluorescence spectra of dissolved organic matter in rivers of the Three Gorges Reservoir area under the background of urbanization[J].Environmental Science,2019 (12):5309-5317(in Chinese).
[9] HUANG W, CHEN R F.Sources and transformations of chromophoric dissolved organic matter in the Neponset River Watershed[J].Journal of Geophysical Research, 2009,114:5. [10] 高凤,邵美玲,唐剑锋,等.城镇流域水体-沉积物中溶解性有机质的荧光特性及影响因素:以宁波市小浃江为例[J].环境科学,2019,40(9):4009-4017. GAO F,SHAO M L,TANG J F,et al. Fluorescence characteristics and influencing factors of dissolved organic matter (DOM) in water and sediment of urban watershed:A case study of Xiaojia River in Ningbo City[J].Environmental Science,2019,40(9):4009-4017(in Chinese).
[11] 杜士林,李强,丁婷婷,等.沙颍河流域水体中溶解性有机质(DOM)的荧光光谱解析[J].环境化学,2019,38(9):2027-2037. DU S L,LI Q,DING T T,et al.Fluorescence spectra analysis of DOM in water of Shaying River basin[J].Environment Chemistry,2019,38(9):2027-2037(in Chinese).
[12] 赵夏婷,李珊,王兆炜,等.黄河兰州段水体中有色溶解性有机质组成、空间分布特征及来源分析[J].环境科学,2018,39(9):4105-4113. ZHAO X T,LI S,WANG Z W,et al.Composition,spatial distribution characteristics and source analysis of chromophoric dissolved organic matter in the Lanzhou Reach of the Yellow River[J].Environmental Science,2018,39(9):4105-4113(in Chinese).
[13] HONG H S,WU J Y,SHANG S L,et al.Absorption and fluorescence of chromophoric dissolved organic matter in the Pearl River Estuary,South China[J].Marine Chemistry,2005,97(1/2):78-89. [14] 余果,付东洋,刘大召,等.富营养化湛江港湾有色溶解有机物光学特性的时空变化分析[J].水资源与水工程学报,2018,29(6):643-649. YU G,FU D Y,LIU D Z,et al.Spatial and temporal variation of optical properties of colored dissolved organic matter in eutrophic Zhanjiang Harbor[J].Journal of Water Resources & Water Engineering,2018,29(6):643-649(in Chinese).
[15] HUANG W X,XIE Z Y,YAN W,et al.Occurrence and distribution of synthetic mucks and organic UV filters from riverine and coastal sediments in the Pearl River estuary of China.[J].Marine pollution Bulletin,2016,111(1/2):153-159. [16] HELMS J R,STUBBINS A,RITCHIE J D,et al.Absorption spectral slopes and slope rations as indicators of molecular weight,source and photobleaching of chromophoric dissolved organic matter[J].Limnology and Oceanography,2008,53(3):955-969. [17] XIAO Y H,SARA-AHO T,HARTIKANINEN H,et al. Contribution of ferric iron to light absorption by chromophoric dissolved organic matter[J]. Limnology and Oceanography,2013,58(2):653-662. [18] ZHOU Y,ZHANG Y,SHI K,et al.Dynamics of chromophoric dissolved organic matter influenced by hydrological conditions in a large, shallow, and eutrophic lake in China[J].Environmental Science and Pollution Research,2015,22(17):12992-13003. [19] 刘堰杨,秦纪洪,孙辉.川西高海拔河流中溶解性有机质(DOM)紫外-可见光吸收光谱特征[J].环境科学学报,2018,38(9):3662-3671. LIU Y Y,QIN J H,SUN H.UV-VIS spectral characteristics of dissolved organic matter (DOM) of the natrual alpine rivers in the western Sichuan Province[J].Acta Scientiae Circumstantiae,2018,38(9):3662-3671(in Chinese).
[20] WEISHAAR J L,AIKEN G R,BERGANMASCHI B A,et al.Evaluation of specific ultraviolet absorbance as an indicator of the chemical composition and reactivity of dissolved organic carbon[J].Environmental Science Technology,2003,37(20):4702-4708. [21] 刘笑菡,张运林,殷燕,等.三维荧光光谱及平行因子分析法在CDOM研究中的应用[J].海洋湖沼通报,2012(3):133-145. LIU X H,ZHANG Y L,YIN Y,et al. Application of three dimensional fluorescence spectrum and parallel factor analysis in the study of CDOM[J].Transactions of Oceanology and Limnology,2012 (3):133-145(in Chinese).
[22] 杜红霞,肖波,张军,等.西安城市河岸带土壤溶解性有机质荧光特性[J].干旱区资源与环境,2019,33(3):137-144. DU H X,XIAO B,ZHANG J,et al.Fluorescence characteristics of dissolved organic matter in the riverbank of Xi'an City[J].Journal of Arid Land Resources and Environment,2019,33(3):137-144(in Chinese).
[23] HUGUET A,VACHER L,RELEXANS S,et al.Properties of fluorescent dissolved organic matter in the Gironde Estuary[J].Organic Geochemistry,2009,40(6):706-719. [24] WICKLAND K P, NEFF J C, AIKEN G R.Dissolved organic carbon in Alaskan Boreal Forest:Sources, chemical characteristics, and biodegradability[J].Ecosystems,2007,10(8):1323-1340. [25] 国家环境保护总局水和废水监测分析方法编委会.水和废水监测分析方法-第4版[M].北京:中国环境科学出版社,2002:211,227,276. Committee of the Editorial Committee of Water and Wastewater Monitoring and Analysis Methods of the State Environmental Protection Administration. Water and waste water monitoring and analysis method[M].4 th.Beijing:China Environmental Science Press, 2002:211,227,276(in Chinese).
[26] 陈明华,谢良国,付志强,等.丙酮法和热乙醇法测定浮游植物叶绿素a的方法比对[J].环境监测管理与技术,2016,28(2):46-48. CHEN M H,XIE L G,FU Z Q,et al.Comparison of two methods for measurement of phytoplanktonic chlorophyll-a[J].The Administration and Technique of Environmental Monitoring,2016,28(2):46-48(in Chinese).
[27] 张运林.湖泊光学研究进展及其展望[J].湖泊科学,2011,23(4):483-497. ZHANG Y L.Progress and prospect in lake optics:A review[J].Journal of Lake Sciences,2011,23(4):483-497(in Chinese).
[28] 王涛,邵田田,梁晓文,等.夏季高原河流CDOM光学特性、组成及来源研究[J].环境科学学报,2019,39(3):668-678. WANG T,SHAO T T,LIANG X W,et al. Optical characteristics,composition and sources of colored dissolved organic matter in plateau rivers in Summer[J].Acta Scientiae Circumstantiae,2019,39(3):668-678(in Chinese).
[29] STEDMON C A,MARKAGER S.Resolving the variability in dissolved organic matter fluorescence in a temperate estuary and its catchment using PARAFAC analysis[J]. Limnology and Oceanography,2005,50(2):686-697. [30] MURPHY K R,RUIZ G M,Dunsmuir,et al.Optimized parameters for fluorescence-based verification of ballast water exchange by ships[J].Environmental Science & Technology,2006,40(7):2357-2362. [31] 程远月,郭卫东.厦门湾有色溶解有机物光漂白的三维荧光光谱研究[J].光谱学与光谱分析,2009,29(4):990-993. CHENG Y Y,GUO W D.Three-dimensional fluorescence spectra of colored dissolved organic matter photobleaching in Xiamen Bay[J].Spectroscopy and Spectral Analysis,2009,29(4):990-993(in Chinese).
[32] MA H Z,HERBERT E A,YIN Y J.Characterization of isolated fractions of dissolved organic matter from natural waters and a wastewater effluent[J].Water Research,2001,35(4):985-996. [33] 张台凡,宋进喜,杨小刚,等.渭河陕西段沉积物中总磷、总氮时空分布特征及其影响因素研究[J].环境科学学报,2015,35(5):1393-1399. ZHANG T F,SONG J X,YANG X G,et al. Study on the temporal-spatial distribution characteristics and influencing factors of TP and TN in river sediments for the Weihe River of Shaanxi Province[J].Acta Scientiae Circumstantiae,2015,35(5):1393-1399(in Chinese).
[34] 杨学福,王蕾,关建玲,等.基于多元统计分析的渭河西咸段水质评价[J].环境工程学报,2016,10(3):1560-1565. YANG X F, WANG L, GUAN J L,et al.Comprehensive assessment of water quality in Xi'an-Xianyang section of Weihe River based on multivariate analysis method[J].Chinese Journal of Environmental Engineering,2016,10(3):1560-1565(in Chinese).
[35] 梁淑轩,贾艳乐,闫信,等.pH值对白洋淀沉积物氮磷释放的影响[J].安徽农业科学,2010,38(36):20859-20862. LIANG S X,JIA Y L,YAN X,et al.Effect of the pH value on the nitrogen and phosphorus release from the sediment Baiyangdian[J].Journal of Anhui Agri,2010,38(36):20859-20862(in Chinese).
[36] DEL VECCHIO R,BLOUGH N V.Spatial and seasonal distribution of chromophoric dissolved organic matter and dissolved organic carbon in the Middle Atlantic Bight[J].Marine Chemistry,2004,89(1/2/3/4):169-187. [37] 陈欣,张霄宇,雷惠.长江口CDOM的光谱吸收特征以及DOC物源示踪意义[J]. 海洋环境科学,2012,31(5):625-630. CHEN X,ZHANG X Y,LEI H.Optical absorption properties of CDOM and tracing implication of DOC in the Changjiang Estuary[J].Marine Environmental Science,2012,31(5):625-630(in Chinese).
[38] CHEN Z,LI Y,PAN J.Distributions of colored dissolved organic matter and dissolved organic carbon in the Pearl River Estuary China[J]. Continental Shelf Research,2004,24(16):1845-1856. [39] 张运林,秦伯强.梅梁湾、大太湖夏季和冬季CDOM特征及可能来源分析[J].水科学进展,2007,18(3):415-423. ZHANG Y L,QIN B Q.Analysis of summer and winter CDOM characteristics and possible sources in Meiliang Bay and Taihu Lake[J].Advances in Water Science,2007,18(3):415-423(in Chinese).
[40] ZHAO Y,SONG K S. Relationships between DOC and CDOM based on the total carbon-specific fluorescence intensities for river waters across China[J]. Journal of Geophysical Research:Biogeosciences,2018,123(8):2553-2361. [41] 张亚娟,牛姗姗,孙亚乔,等.SPSS软件在渭河流域(陕西段)水质主成分分析评价中的运用[J].安徽农业科学,2012,40(29):14414-14416. ZHANG Y J,NIU S S,SUN Y Q,et al.Application of SPSS in the principal component analysis of water quality in Weihe River[J].Journal of Anhui Agri, 2012,40(29):14414-14416(in Chinese).
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