The Journal of
the Korean Society on Water Environment

The Journal of
the Korean Society on Water Environment

Bimonthly
  • ISSN : 2289-0971 (Print)
  • ISSN : 2289-098X (Online)
  • KCI Accredited Journal

Editorial Office

References

1 
Borrelle S. B., Ringma J., Law K. L., Monnahan C. C., Lebreton L., McGivern A., Murphy E., Jambeck J., Leonard G. H., Hilleary M. A., 2020, Predicted growth in plastic waste exceeds efforts to mitigate plastic pollution, Science, Vol. 369, No. 6510, pp. 1515-1518DOI
2 
Coble P. G., 1996, Characterization of marine and terrestrial DOM in seawater using excitation-emission matrix spectroscopy, Marine Chemistry, Vol. 51, No. 4, pp. 325-346DOI
3 
Derrien M., Lee M. H., Choi K., Lee K. S., Hur J., 2020, Tracking the evolution of particulate organic matter sources during summer storm events via end-member mixing analysis based on spectroscopic proxies, Chemosphere, Vol. 252, No. 126445DOI
4 
Estahbanati S., Fahrenfeld N. L., 2016, Influence of wastewater treatment plant discharges on microplastic concentrations in surface water, Chemosphere, Vol. 162, pp. 277-284DOI
5 
Fang J., Yang X., Ma J., Shang C., Zhao Q., 2010, Characterization of algal organic matter and formation of DBPs from chlor(am)ination, Water Research, Vol. 44, No. 20, pp. 5897-5906DOI
6 
Hudson N., Baker A., Reynolds D., 2007, Fluorescence analysis of dissolved organic matter in natural, waste and polluted waters - A review, River Research and Applications, Vol. 23, No. 6, pp. 631-649DOI
7 
Hur J., Kong D. S., 2008, Use of synchronous fluorescence spectra to estimate biochemical oxygen demand (BOD) of urban rivers affected by treated sewage, Environmental Technology, Vol. 29, No. 4, pp. 435-444DOI
8 
Hur J., Jung N. C., Shin J. K., 2007, Spectroscopic distribution of dissolved organic matter in a dam reservoir impacted by turbid storm runoff, Environmental Monitoring and Assessment, Vol. 133, No. 1, pp. 53-67DOI
9 
Hur J., Shin J. K., Park S. W., 2006, Characterizing fluorescence properties of dissolved organic matter for water quality management of rivers and lakes, Journal of Korean Society of Environmental Engineers, Vol. 28, No. 9, pp. 940-948Google Search
10 
Kim J. M., Park J. D., Noh H. R., Han M. S., 2002, of seasonal and vertical water quality in Soyang and Paldang river-reservoir system, Korean Journal of Ecology and Environment, Vol. 35, No. 1, pp. 10-20Google Search
11 
Lawaetz A. J., Stedmon C. A., 2009, Fluorescence intensity calibration using the Raman scatter peak of water, Applied Spectroscopy, Vol. 63, No. 8, pp. 936-940DOI
12 
Lee H. S., Hur J., Lee M. H., Brogi S. R., Kim T. W., Shin H. S., 2019, Photochemical release of dissolved organic matter from particulate organic matter: Spectroscopic characteristics and disinfection by-product formation potential, Chemosphere, Vol. 235, pp. 586-595DOI
13 
Lee M. H., Lee S. Y., Yoo H. Y., Shin K. H., Hur J., 2020, Comparing optical versus chromatographic descriptors of dissolved organic matter (DOM) for tracking the non-point sources in rural watersheds, Ecological Indicators, Vol. 117, No. 106682DOI
14 
Lee Y. K., Murphy K. R., Hur J., 2020, Fluorescence signatures of dissolved organic matter leached from microplastics: Polymers and additives, Environmental Science & Technology, Vol. 54, No. 19, pp. 11905-11914DOI
15 
Li J., Liu H., Chen J. P., 2018, Microplastics in freshwater systems: A review on occurrence, environmental effects, and methods for microplastics detection, Water Research, Vol. 137, pp. 362-374DOI
16 
Luo H., Xiang Y., He D., Li Y., Zhao Y., Wang S., Pan X., 2019, Leaching behavior of fluorescent additives from microplastics and the toxicity of leachate to Chlorella vulgaris, Science of the Total Environment, Vol. 678, pp. 1-9DOI
17 
Mayer L. M., Thornton K. R., Schick L. L., Jastrow J. D., Harden J. W., 2012, Photodissolution of soil organic matter, Geoderma, Vol. 170, pp. 314-321DOI
18 
Murphy K. R., Stedmon C. A., Waite T. D., Ruiz G. M., 2008, Distinguishing between terrestrial and autochthonous organic matter sources in marine environments using fluorescence spectroscopy, Marine Chemistry, Vol. 108, No. 1-2, pp. 40-58DOI
19 
Phong D. D., Hur J., 2015, Insight into photocatalytic degradation of dissolved organic matter in UVA/TiO2 systems revealed by fluorescence EEM-PARAFAC, Water Research, Vol. 87, pp. 119-126DOI
20 
Potthoff A., Oelschlägel K., Schmitt‐Jansen M., Rummel C. D., Kühnel D., 2017, From the sea to the laboratory: Characterization of microplastic as prerequisite for the assessment of ecotoxicological impact, Integrated Environmental Assessment and Management, Vol. 13, No. 3, pp. 500-504DOI
21 
Rhodes C. J., 2018, Plastic pollution and potential solutions, Science Progress, Vol. 101, No. 3, pp. 207-260DOI
22 
Romera-Castillo C., Pinto M., Langer T. M., Álvarez-Salgado X. A., Herndl G. J., 2018, Dissolved organic carbon leaching from plastics stimulates microbial activity in the ocean, Nature Communications, Vol. 9, No. 1, pp. 1-7DOI
23 
Shim W. J., Hong S. H., Eo S. E., 2017, Identification methods in microplastic analysis: A review, Analytical Methods, Vol. 9, No. 9, pp. 1384-1391DOI
24 
Shin J. K., Jeong S. A., Choi I. H., Hwang S. J., 2004, Dynamics of turbid water in a korean reservoir with selective withdrawal discharges, Korean Journal of Ecology and Environment, Vol. 37, No. 4, pp. 423-430DOI
25 
Song Y. K., Hong S. H., Jang M., Han G. M., Jung S. W., Shim W. J., 2017, Combined effects of UV exposure duration and mechanical abrasion on microplastic fragmentation by polymer type, Environmental Science & Technology, Vol. 51, No. 8, pp. 4368-4376DOI
26 
Stanton T., Johnson M., Nathanail P., MacNaughtan W., Gomes R. L, 2020, Freshwater microplastic concentrations vary through both space and time, Environmental Pollution, Vol. 263, No. 114481DOI
27 
Thompson R. C., Moore C. J., vom Saal F. S., Swan S. H., 2009, Plastics, the environment and human health: Current consensus and future trends, Philosophical Transactions of the Royal Society B: Biological Sciences, Vol. 364, No. 1526, pp. 2153-2166DOI
28 
Velzeboer I., Kwadijk C., Koelmans A., 2014, Strong sorption of PCBs to nanoplastics, microplastics, carbon nanotubes, and fullerenes, Environmental Science & Technology, Vol. 48, No. 9, pp. 4869-4876DOI
29 
Wang Y., Wang X., Li Y., Li J., Liu Y., Xia S., Zhao J., 2021, Effects of exposure of polyethylene microplastics to air, water and soil on their adsorption behaviors for copper and tetracycline, Chemical Engineering Journal, Vol. 404, No. 126412DOI
30 
Watkins L., McGrattan S., Sullivan P. J., Walter M. T., 2019, The effect of dams on river transport of microplastic pollution, Science of the Total Environment, Vol. 664, pp. 834-840DOI
31 
Worrall F., Burt T. P., Howden N. J., Hancock G. R., Wainwright J., 2018, The fate of suspended sediment and particulate organic carbon in transit through the channels of a river catchment, Hydrological Processes, Vol. 32, No. 1, pp. 146-159DOI
32 
Zhang H., Wang J., Zhou B., Zhou Y., Dai Z., Zhou Q., Chriestie P., Luo Y., 2018, Enhanced adsorption of oxytetracycline to weathered microplastic polystyrene: Kinetics, isotherms and influencing factors, Environmental Pollution, Vol. 243, pp. 1550-1557DOI
33 
Zhu L., Zhao S., Bittar T. B., Stubbins A., Li D., 2020, Photochemical dissolution of buoyant microplastics to dissolved organic carbon: Rates and microbial impacts, Journal of Hazardous Materials, Vol. 383, No. 121065DOI