参考文献/References:
[1]戴仕宝,杨世伦. 近50年来长江水资源特征变化分析[J].自然资源学报,2006,21(4):501-505.
[2]费宇红,张兆吉,陈京生.人类活动与海河平原水资源关系研究[J].地球科学进展,2004,19(增):102-106.
[3]荣楠,单保庆,张洪,等. 海河流域平原河流非常规水源补给特性及其成因分析[J].环境科学学报, 2016,36(2):483-490.
[4]李廷,毕见霖,王立硕,等. 暴雨径流对非常常规水源补给河流水质冲击研究[J].环境科学学报,2015,35(2):443-448.
[5]虞敏达,张慧,何小松,等.河北洨河溶解性有机物光谱学特性[J].环境科学,2015,36(9):76-84.
[6]李卫华,刘怡心,王伟,等. 污水处理厂及受纳水体样品的三维荧光光谱解析[J].光谱学与光谱分析,2015,35(4):940-945.
[7]ZHANG Y L, ZHANG B, WANG X, et al. A study of absorption characteristics of chromophoric dissolved organic matter and particles in Lake Taihu, China[J].Hydrobiologia,2007,592(1):105-120.
[8]BARKER A, SPENCER R G M. Characterization of dissloved organic matter from source to sea using fluorescence and absorbance spectroscopy[J].Science of The Total Environment,2004,333(1/2/3):217-232.
[9]BAHRAM M, BRO R, STEDMON C, et al. Handling of rayleigh and raman scatter for parafac modeling of fluorescence data using interpolation[J]. Journal of Chemometrics, 2006,20(3/4):99-105.
[10]HELMS J R, STUBBINS A, RITCHIE J D, et al. Absorption spectral slopes and slope ratios as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter[J]. Limnology and Oceanography,2008,53(3):955-969.
[11]CHEN W, WESTERHOFF P, LEENHEER J A, et al. Fluorescence excitation-emission matrix regional integration to quantify spectra for dissolved organic matter[J]. Environmental Science and Technology, 2003,37(24):5701-5710.
[12]ROCHELLE-NEWALL E J, FISHER T R. Chromophoric dissolved organic matter and dissolved organic carbon in Chesapeake Bay[J].Marine Chemistry, 2002, 77(1): 23-41.
[13]HELMS J R, STUBBINS A, RITCHIE J D, et al. Absorption spectral slopes and slope ratio as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter[J]. Limnology and Oceanography, 2008, 53(3): 955-969.
[14]BLOUGH N V, GREEN S A. Spectroscopic characterization and remote sensing of nonliving organic matter [A]//The Role of Nonliving Organic Matter in the Earth’s Carbon Cycle.London: Academic Press, 1995: 23-45.
[15]SCHMIDT M W I, TORN M S, ABIVEN S, et al. Persistence of soil organic matter as an ecosystem property[J]. Nature, 2011, 478(7367): 49-56.
[16]PEURAVUORI J, PIHLAJA K. Isolation and characterization of natural organic matter from lake water: comparison of isolation with solid adsorption and tangential membrane filtration[J].Environment International, 1997, 23(4): 441-451.
[17]WEATERHOFF P, ANNING D. Concentrations and characteristics of organic carbon in surface water in Arizona: Influence of urbanization[J].Journal of Hydrology, 2000, 236(3/4): 202-222.
[18]CAREDER K G, STEWARD G R, HARVEY, et al. Marine humic and fulvic acids: Their effects on remote sensing of ocean chlorophyll[J].Limnology & Oceanography, 1989, 34(1): 68-81.
[19]HUO S L, XI B D, YU H C, et al. Characteristics of dissolved organic matter(DOM)in leachate with different landfill ages[J].Journal of Environment Science, 2008, 20(4): 492-498.
[20]XI B D, HE X S, ZHAO Y, et al. Spectroscopic characterization indicator of landfill in the process of stabilizing[J].Spectroscopy and Spectral Analysis, 2009, 29(9): 2475-2479.
[21]何小松,于静,席北斗,等. 填埋垃圾渗滤液中水溶液有机物去除规律研究[J].光谱学与光谱分析, 2012, 32(9): 2528-2533.
[22]KOWALCZUK P, STON-EGIER J, COOPER W J, et al. Characterization of chromophoric dissolved organic metter(CDOM)in the Baltic Sea by excitation emission matrix fluorescence spectroscopy[J]. Marine Chemistry, 2005, 96(3/4): 273-292.
[23]MOUNIER S, PATEL N, QUILICI L. Three-dimensional fluorescence of the dissolved organic carbon in the Amazon river[J]. Water Research, 1999, 33(6): 1523-1533.
[24]傅平青, 刘丛强, 吴丰昌. 溶解性有机质的三维光谱特征研究[J].光谱学与光谱分析, 2005, 25(12): 204-208.
[25]王福利, 郭卫东. 秋季南海珠江口和北部湾溶解性有机物的光降解[J].环境科学学报, 2010, 30(3): 606-612.
[26]NDEGWA P M, HAMILTON D W, LALMAN J A, et al. Effects of cycle-frequency and temperature on the performance of anaerobic sequencing batch reactors(ASBRs)treating swine waste[J].Bioresource Technology, 2008,99(6):1972-1980.
[27]SIERRA M M D, GIOVANELA M, PARLANTI E, et al. Structural description of humic substances from subtropical coastal environments using elemental analysis, FTIR and 13C-Solid State NMR data[J]. Journal of Coastal Research,2005,42(Suppl):370-382.
[28]FUENTES M, BAIGORRI R, GONZALEZ-GAITANO G, et al. The complementary use of1H NMR,13C NMR, FTIR and size exclusion chromatography to investigate the principal structural changes associated with composting of organic material with diverse origin[J].Organic Geochemistry, 2007,38(12):2012-2023.
[29]DIGNAC M F, GINESTET P, RYBACKI D, et al. Fate of wastewater organic pollution during activated sludge treatment: Nature of residual organic matter[J].Water Research, 2000,34(17):4185-4194.