Advances in Research of Photochemical Reactions of Natural Organic Matter

ZHANG Nan-nan, HU Bin, WANG Pei-fang

Journal of Changjiang River Scientific Research Institute ›› 2017, Vol. 34 ›› Issue (7) : 24-31.

PDF(1623 KB)
PDF(1623 KB)
Journal of Changjiang River Scientific Research Institute ›› 2017, Vol. 34 ›› Issue (7) : 24-31. DOI: 10.11988/ckyyb.20160614
WATER RESOURCES AND ENVIRONMENT

Advances in Research of Photochemical Reactions of Natural Organic Matter

  • ZHANG Nan-nan1,2, HU Bin1,2, WANG Pei-fang1,2
Author information +
History +

Abstract

Natural organic matter is susceptible to light-induced photochemical reactions, such as photodegradation, photodissolution, photobleaching and photomineralization, which induce the breakdown of large molecules and provide a substantial pool of photoproducts of environmental and biological significance. These photochemical behaviors not only enhance the biogeochemical cycles of bioelements and the migration of heavy metals and organic pollutants, but also change the structure and function of aquatic ecosystems. In this paper, the research progress published to date on photochemical reactions of natural organic matter in water was reviewed, including the basic concepts, reaction mechanisms and updated research techniques. It also made an exposition of ecological and environmental significance of the photochemical reactions. However, the previous researches could not represent complex photochemical reactions comprehensively and veritably because of the single experimental condition and research object, so it was suggested to model ecological process and study the response of interactions between dissolved organic matter and multiple contaminants under light irradiation, contributing to make the photochemistry research more thorough and systemic.

Key words

natural organic matter / photochemical reaction / photodegradation / photodissolution / biogeochemical cycle

Cite this article

Download Citations
ZHANG Nan-nan, HU Bin, WANG Pei-fang. Advances in Research of Photochemical Reactions of Natural Organic Matter[J]. Journal of Changjiang River Scientific Research Institute. 2017, 34(7): 24-31 https://doi.org/10.11988/ckyyb.20160614

References

[1] 吴丰昌, 王立英, 黎 文. 天然有机质及其在地表环境中的重要性[J]. 湖泊科学, 2008, 20(1): 1-12.
[2] WU F C, KOTHAWALA D N, EVANS R D, et al. Relationships Between DOC Concentration, Molecular Size and Fluorescence Properties of DOM in a Stream[J]. Applied Geochemistry, 2007, 22(8): 1659-1667.
[3] AZAM F, MALFATTI F. Microbial Structuring of Marine Ecosystems[J]. Nature Reviews Microbiology, 2007, 5(10): 782-791.
[4] WU F C, TANOUE E. Molecular Mass Distribution and Fluorescence Characteristics of Dissolved Organic Ligands for Copper (II) in Lake Biwa, Japan[J]. Organic Geochemistry, 2001, 32(1): 11-20.
[5] WU F C, TANOUE E. Isolation and Partial Characterization of Dissolved Copper-complexing Ligands in Streamwaters[J]. Environmental Science & Technology, 2001, 35(18): 3646-3652.
[6] 李 璐, 王震宇, 林道辉, 等. 天然有机质与重金属相互作用的分析方法进展[J]. 环境科学研究, 2015, 28(2): 182-189.
[7] 何 伟, 白泽琳, 李一龙, 等. 水生生态系统中溶解性有机质表生行为与环境效应研究[J]. 中国科学:地球科学, 2016, 46(3): 341-355.
[8] 郭卫东, 程远月, 吴 芳. 海洋荧光溶解有机物研究进展[J]. 海洋通报, 2007, 26(1): 98-106.
[9] MAYER L M, SCHICK L L, HARDY K R, et al. Photochemical Changes in Chemical Markers of Sedimentary Organic Matter Source and Age[J]. Marine Chemistry, 2009, 113(1): 123-128.
[10]MAYER L M, SCHICK L L, HARDY K R, et al. Photodissolution and Other Photochemical Changes upon Irradiation of Algal Detritus[J]. Limnology and Oceanography, 2009, 54(5): 1688-1698.
[11]MAYER L M, THORNTON K R, SCHICK L L, et al. Photodissolution of Soil Organic Matter[J]. Geoderma, 2012, 170(15): 314-321.
[12]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.
[13]郭卫东, 程远月, 余翔翔, 等. 海洋有色溶解有机物的光化学研究进展[J]. 海洋通报, 2008, 27(3): 107-114.
[14]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.
[15]LIU Q Y. Solar Radiation-enhanced Dissolution (Photodissolution) of Particulate Organic Matter in Texas Estuaries[D]. Austin, USA:University of Texas,2013.
[16]ZHANG Y, ZHANG E, YIN Y, et al. Characteristics and Sources of Chromophoric Dissolved Organic Matter in Lakes of the Yungui Plateau, China, Differing in Trophic State and Altitude[J]. Limnology and Oceanography, 2010, 55(6): 2645-2659.
[17]王 鑫, 张运林, 张文宗. 太湖北部湖区CDOM光学特性及光降解研究[J]. 环境科学研究, 2008, 21(6): 130-136.
[18]ZHANG Y, YIN Y, ZHANG E, et al. Spectral Attenuation of Ultraviolet and Visible Radiation in Lakes in the Yunnan Plateau, and the Middle and Lower Reaches of the Yangtze River, China[J]. Photochemical & Photobiological Sciences, 2011, 10(4): 469-482.
[19]SHANK G C, EVANS A, YAMASHITA Y. Solar Radiation-enhanced Dissolution of Particulate Organic Matter from Coastal Marine Sediment[J]. Limnology and Oceanography, 2011, 56(2): 577-588.
[20]何 伟, 白泽琳, 李一龙, 等. 溶解性有机质特性分析与来源解析的研究进展[J]. 环境科学学报, 2016, 36(2): 359-372.
[21]SHARPLESS C M,AESCHBACHER M,PAGE S E,et al. Photooxidation-induced Changes in Optical, Electrochemical, and Photochemical Properties of Humic Substances[J]. Environmental Science & Technology, 2014, 48(5): 2688-2696.
[22]MAYER L M, SCHICK L L, SKORKO K. Photodissolution of Particulate Organic Matter from Sediments[J]. Limnology and Oceanography, 2006, 51(2): 1064-1071.
[23]ZHANG Y L, LIU X, OSBURN C L, et al. Photobleaching Response of Different Sources of Chromophoric Dissolved Organic Matter Exposed to Natural Solar Radiation using Absorption and Excitation-emission Matrix Spectra[J]. Plos One, 2013, 8(10): e77515.
[24]STEDMON C A, MARKAGER S, TRANVIK L, et al. Photochemical Production of Ammonium and Transformation of Dissolved Organic Matter in the Baltic Sea[J]. Marine Chemistry, 2007, 104(3): 227-240.
[25]KOELMANS A A, PREVO L. Production of Dissolved Organic Carbon in Aquatic Sediment Suspensions[J]. Water Research, 2003, 37(9): 2217-2222.
[26]OSBURN C L, WIGDAHL C R, FRITZ S C, et al. Dissolved Organic Matter Composition and Photo-reactivity in Prairie Lakes of the US Great Plains[J]. Limnology and Oceanography, 2011, 56(6): 2371-2390.
[27]程远月. 沉积物间隙水中CDOM光学特性与河口CDOM光化学反应研究[D]. 厦门:厦门大学, 2007.
[28]COTTRELL B A, TIMKO S A, DEVERA L, et al. Photochemistry of Excited-state Species in Natural Waters: A Role for Particulate Organic Matter[J]. Water Research, 2013, 47(14): 5189-5199.
[29]LESTER Y, SHARPLESS C M, MAMANE H, et al. Production of Photo-oxidants by Dissolved Organic Matter during UV Water Treatment[J]. Environmental Science & Technology, 2013, 47(20): 11726-11733.
[30]VIONE D, BAGNUS D, MAURINO V, et al. Quantification of Singlet Oxygen and Hydroxyl Radicals Upon UV Irradiation of Surface Water[J]. Environmental Chemistry Letters, 2010, 8(2): 193-198.
[31]XU H, COOPER W J, JUNG J, et al. Photosensitized Degradation of Amoxicillin in Natural Organic Matter Isolate Solutions[J]. Water Research, 2011, 45(2): 632-638.
[32]TIMKO S A, ROMERA-CASTILLO C, JAFF, et al. Photo-reactivity of Natural Dissolved Organic Matter from Fresh to Marine Waters in the Florida Everglades, USA[J]. Environmental Science: Processes & Impacts, 2014, 16(4): 866-878.
[33]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.
[34]TZORTZIOU M, OSBURN C L, NEALE P J. Photobleaching of Dissolved Organic Material from a Tidal Marsh-Estuarine System of the Chesapeake Bay[J]. Photochemistry and photobiology, 2007, 83(4): 782-792.
[35]PORCAL P, DILLON P J, MOLOT L A. Temperature Dependence of Photodegradation of Dissolved Organic Matter to Dissolved Inorganic Carbon and Particulate Organic Carbon[J]. Plos One, 2015, 10(6): e0128884.
[36]孙 欣, 宋贵生, XIE Hui-xiang. 长江口溶解有机物光漂白和光矿化表观量子产率[J]. 海洋学报, 2016, 38(4):120-129.
[37]SHANK G C, ZEPP R G, VHTALO A, et al. Photobleaching Kinetics of Chromophoric Dissolved Organic Matter Derived from Mangrove Leaf Litter and Floating Sargassum Colonies[J]. Marine Chemistry, 2010, 119(1): 162-171.
[38]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.
[39]PULLIN M J, BERTILSSON S, GOLDSTONE J V, et al. Effects of Sunlight and Hydroxyl Radical on Dissolved Organic Matter: Bacterial Growth Efficiency and Production of Carboxylic Acids and Other Substrates[J]. Limnology and Oceanography, 2004, 49(6): 2011-2022.
[40]MAYER L M, THORNTON K H, SCHICK L L. Bioavailability of Organic Matter Photodissolved from Coastal Sediments[J]. Aquatic Microbial Ecology, 2011, 64(3): 275-284.
[41]DANIEL C,GRANELI W,KRITZBERG E S,et al. Stimulation of Metazooplankton by Photochemically Modified Dissolved Organic Matter[J]. Limnology and Oceanography, 2006, 51(1): 101-108.
[42]SCHIEBEL H N, WANG X. Photochemical Release of Dissolved Organic Matter from Resuspended Salt Marsh Sediments[J]. Estuaries and Coasts, 2015, 38(5): 1692-1705.
[43]SOUTHWELL M W, KIEBER R J, MEAD R N. Effects of Sunlight on the Production of Dissolved Organic and Inorganic Nutrients from Resuspended Sediments[J]. Biogeochemistry, 2010, 98(1/3): 115-126.
[44]HELMS J R, GLINSKI D A, MEAD R N, et al. Photochemical Dissolution of Organic Matter from Resuspended Sediments: Impact of Source and Diagenetic State on Photorelease[J]. Organic Geochemistry, 2014, 73(3): 83-89.
[45]ESTAPA M L, MAYER L M. Photooxidation of Particulate Organic Matter, Carbon/oxygen Stoichiometry and Related Photoreactions[J]. Marine Chemistry, 2010, 122(1/4): 138-147.
[46]OSBURN C L, RETAMAL L, VINCENT W F. Photoreactivity of Chromophoric Dissolved Organic Matter Transported by the Mackenzie River to the Beaufort Seas[J]. Marine Chemistry, 2009, 115(1/2): 10-20.
[47]SOUTHWELL M W, MEAD R N, LUQUIRE C M, et al. Influence of Organic Matter Source and Diagenetic State on Photochemical Release of Dissolved Organic Matter and Nutrients from Resuspendable Estuarine Sediments[J]. Marine Chemistry, 2011, 126(1): 114-119.
[48]PARA J, COBLE P G, CHARRIRE B, et al. Fluorescence and Absorption Properties of Chromophoric Dissolved Organic Matter (CDOM) in Coastal Surface Waters of the Northwestern Mediterranean Sea, Influence of the Rhe River[J]. Biogeosciences, 2010, 7(12): 4083-4103.
[49]ZHANG Y, LIU M, QIN B, et al. Photochemical Degradation of Chromophoric-dissolved Organic Matter Exposed to Simulated UV-B and Natural Solar Radiation[J]. Hydrobiologia, 2009, 627(1): 159-168.
[50]MACDONALD M J, MINOR E C. Photochemical Degradation of Dissolved Organic Matter from Streams in the Western Lake Superior Watershed[J]. Aquatic sciences, 2013, 75(4): 509-522.
[51]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): 133-140.
[52]OSBURN C L, HANDSEL L T, MIKAN M P, et al. Fluorescence Tracking of Dissolved and Particulate Organic Matter Quality in a River-dominated Estuary[J]. Environmental Science & Technology, 2012, 46(16): 8628-8636.
[53]HUR J, JUNG K Y, JUNG Y M. Characterization of Spectral Responses of Humic Substances upon UV Irradiation using Two-dimensional Correlation Spectroscopy[J]. Water Research, 2011, 45(9): 2965-2974.
[54]鲁 亢, 杨尚源, 梁志伟, 等. 有机物生物降解性评价方法综述[J]. 应用生态学报, 2013, 24(2): 597-606.
[55]POWERS L C, MILLER W L. Photochemical Production of CO and CO2 in the Northern Gulf of Mexico: Estimates and Challenges for Quantifying the Impact of Photochemistry on Carbon Cycles[J]. Marine Chemistry, 2015, 171: 21-35.
[56]ROSE A L, MOFFETT W, WAITE T D. Determination of Superoxide in Seawater using 2-methyl-6-(4-methoxyphenyl)-3, 7-dihydroimidazo [1, 2-a] Pyrazin-3(7 H)-one Chemiluminescence[J]. Analytical chemistry, 2008, 80(4): 1215-1227.
[57]PETERSON B M, MCNALLY A M, CORY R M, et al. Spatial and Temporal Distribution of Singlet Oxygen in Lake Superior[J]. Environmental Science & Technology, 2012, 46(13): 7222-7229.
[58]CHEN L, TANG X, SHEN C, et al. Photosensitized Degradation of 2, 4′, 5-trichlorobiphenyl (PCB 31) by Dissolved Organic Matter[J]. Journal of Hazardous Materials, 2012, 201/202: 1-6.
[59]LATCH D E, MCNEILL K. Microheterogeneity of Singlet Oxygen Distributions in Irradiated Humic Acid Solutions[J]. Science, 2006, 311(5768): 1743-1747.
[60]AL HOUSARI F, VIONE D, CHIRON S, et al. Reactive Photoinduced Species in Estuarine Waters. Characterization of Hydroxyl Radical, Singlet Oxygen and Dissolved Organic Matter Triplet State in Natural Oxidation Processes[J]. Photochemical & Photobiological Sciences, 2010, 9(1): 78-86.
[61]WHITE E M, KIEBER D J, SHERRARD J, et al. Carbon Dioxide and Carbon Monoxide Photoproduction Quantum Yields in the Delaware Estuary[J]. Marine Chemistry, 2010, 118(1): 11-21.
[62]ANESIO A M, GRANLI W, AIKEN G R, et al. Effect of Humic Substance Photodegradation on Bacterial Growth and Respiration in Lake Water[J]. Applied and Environmental Microbiology, 2005, 71(10): 6267-6275.
[63]AMADO A M, COTNER J B, CORY R M, et al. Disentangling the Interactions between Photochemical and Bacterial Degradation of Dissolved Organic Matter: Amino Acids Play a Central Role[J]. Microbial Ecology, 2015, 69(3): 554-566.
[64]VHTALO A V, ZEPP R G. Photochemical Mineralization of Dissolved Organic Nitrogen to Ammonium in the Baltic Sea[J]. Environmental Science & Technology, 2005, 39(18): 6985-6992.
[65]杨 程, 马剑敏. 城市湖泊生态修复及水生植物群落构建研究进展[J]. 长江科学院院报, 2014, 31(7): 13-20.
[66]HANAMACHI Y, HAMA T, YANAI T. Decomposition Process of Organic Matter Derived from Fresh-water Phytoplankton[J]. Limnology, 2008, 9(1): 57-69.
[67]KOEHLER B, LANDELIUS T, WEYHENMEYER G A, et al. Sunlight-induced Carbon Dioxide Emissions from Inland Waters[J]. Global Biogeochemical Cycles, 2014, 28(7): 696-711.
[68]陈 蕾, 沈超峰, 陈英旭. 溶解性有机质与水生生物的直接相互作用研究进展[J]. 湖泊科学, 2011, 23(1): 1-8.
[69]郐安琪, 赵伟华, 李青云, 等. 典型污染物对藻类生态毒性效应研究进展[J]. 长江科学院院报, 2015, 32(6): 100-109.
PDF(1623 KB)

Accesses

Citation

Detail

Sections
Recommended

/