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 
Andrady A. L., 2011, Microplastics in the marine environment, Marine Pollution Bulletin, Vol. 62, No. 8, pp. 1596-1605DOI
2 
Barnes D. K., Galgani F., Thompson R. C., Barlaz M., 2009, Accumulation and fragmentation of plastic debris in global environments, Philosophical transactions of the Royal Society of London. Series B, Biological sciences, Vol. 364, No. 1526, pp. 1985-1998DOI
3 
Bergmann M., Wirzberger V., Krumpen T., Lorenz C., Primpke S., Tekman M. B., Gerdts G., 2017, High quantities of microplastic in Arctic deep-sea sediments from the HAUSGARTEN observatory, Environmental Science & Technology, Vol. 51, No. 19, pp. 11000-11010DOI
4 
Cole M., Lindeque P., Halsband C., Galloway T. S., 2011, Microplastics as contaminants in the marine environment: A review, Marine Pollution Bulletin, Vol. 62, No. 12, pp. 2588-2597DOI
5 
Collins T. J., 2007, ImageJ for microscopy, Biotechniques, Vol. 43, No. S1, pp. S25-S30DOI
6 
Conley K., Clum A., Deepe J., Lane H., Beckingham B., 2019, Wastewater treatment plants as a source of microplastics to an urban estuary: Removal efficiencies and loading per capita over one year, Water Research X, Vol. 3, pp. 100030DOI
7 
Dutta A. K., Kamada K., Ohta K., 1996, Spectroscopic studies of Nile Red in organic solvents and polymers, Journal of Photochemistry and Photobiology A: Chemistry, Vol. 93, No. 1, pp. 57-64DOI
8 
Ehlers S. M., Maxein J., Koop J. H., 2020, Low‐cost microplastic visualization in feeding experiments using an ultraviolet light emitting flashlight, Ecological Research, Vol. 35, No. 1, pp. 265-273DOI
9 
Gies E. A., LeNoble J. L., Noël M., Etemadifar A., Bishay F., Hall E. R., Ross P. S., 2018, Retention of microplastics in a major secondary wastewater treatment plant in Vancouver, Canada, Marine Pollution Bulletin, Vol. 133, pp. 553-561DOI
10 
Hengstmann E., Fischer E. K., 2019, Nile Red staining in microplastic analysis—proposal for a reliable and fast identification approach for large microplastics, Environmental Monitoring and Assessment, Vol. 191, pp. 612DOI
11 
Igathinathane C., Pordesimo L. O., Columbus E. P., Batchelor W. D., Methuku S. R., 2008, Shape identification and particles size distribution from basic shape parameters using ImageJ, Computers and Electronics in Agriculture, Vol. 63, No. 2, pp. 168-182DOI
12 
Lares M., Ncibi M. C., Sillanpää M., Sillanpää M., 2018, Occurrence, identification and removal of microplastic particles and fibers in conventional activated sludge process and advanced MBR technology, Water Research, Vol. 133, No. 15, pp. 236-246DOI
13 
Law K. L., 2017, Plastics in the marine environment, Annual Review of Marine Science, Vol. 9, pp. 205-229DOI
14 
Löder M. G. J., Imhof H. K., Ladehoff M., Löschel L. A., Lorenz C., Mintenig S., Piehl S., Primpke S., Schrank I., Laforsch C., Gerdts G., 2017, Enzymatic purification of microplastics in environmental samples, Environmental Science & Technology, Vol. 51, No. 24, pp. 14283-14292DOI
15 
Lusher A. L., Tirelli V., O’Connor I., Officer R., 2015, Microplastics in Arctic polar waters: the first reported values of particles in surface and sub-surface samples, Scientific Reports, Vol. 5, No. 1, pp. 14947DOI
16 
Maes T., Jessop R., Wellner N., Haupt K., Mayes A. G., 2017, A rapid-screening approach to detect and quantify microplastics based on fluorescent tagging with Nile Red, Scientific Reports, Vol. 7, No. 1, pp. 44501DOI
17 
Mintenig S. M., Int-Veen I., Löder M. G. J., Primpke S., Gerdts G., 2017, Identification of microplastic in effluents of waste water treatment plants using focal plane arraybased micro-Fourier-transform infrared imaging, Water Research, Vol. 108, pp. 365-372DOI
18 
Obbard R. W., 2018, Microplastics in polar regions: The role of long range transport, Current Opinion in Environmental Science & Health, Vol. 1, pp. 24-29DOI
19 
Prata J. C., Alves J. R., da Costa J. P., Duarte A. C., Rocha-Santos T., 2020, Major factors influencing the quantification of Nile Red stained microplastics and improved automatic quantification (MP-VAT 2.0), Science of The Total Environment, Vol. 719, pp. 137498DOI
20 
Rasband W. S., 1997, ImageJ: Image processing and analysis in Java, Astrophysics Source Code Library, Vol. 1, pp. 06013Google Search
21 
Ray A., Das S., Chattopadhyay N., 2019, Aggregation of Nile Red in water: Prevention through encapsulation in β-Cyclodextrin, ACS Omega, Vol. 4, No. 1, pp. 15-24DOI
22 
Shim W. J., Song Y. K., Hong S. H., Jang M., 2016, Identification and quantification of microplastics using Nile Red staining, Marine Pollution Bulletin, Vol. 113, No. 1-2, pp. 469-476DOI
23 
Simon M., van Alst N., Vollertsen J., 2018, Quantification of microplastic mass and removal rates at wastewater treatment plants applying Focal Plane Array (FPA)-based Fourier Transform Infrared (FT-IR) imaging, Water Research, Vol. 142, pp. 1-9DOI
24 
Stock F., Kochleus C., Bänsch-Baltruschat B., Brennholt N., Reifferscheid G., 2019, Sampling techniques and preparation methods for microplastic analyses in the aquatic environment–A review, TrAC Trends in Analytical Chemistry, Vol. 113, pp. 84-92DOI
25 
Sun J., Dai X., Wang Q., van Loosdrecht M. C., Ni B. J., 2019, Microplastics in wastewater treatment plants: Detection, occurrence and removal, Water Research, Vol. 152, pp. 21-37DOI
26 
Talvitie J., Mikola A., Koistinen A., Setälä O., 2017, Solutions to microplastic pollution - Removal of microplastics from wastewater effluent with advanced wastewater treatment technologies, Water Research, Vol. 123, pp. 401-407DOI
27 
Thompson R. C., Swan S. H., Moore C. J., Vom Saal F. S., 2009, Our plastic age, Philosophical Transactions of the Royal Society B: Biological Sciences, Vol. 364, No. 1526, pp. 1973-1976DOI
28 
Waller C. L., Griffiths H. J., Waluda C. M., Thorpe S. E., Loaiza Alamo I., Moreno B., Pacherres C. O., Hughes K. A., 2017, Microplastics in the Antarctic marine system: An emerging area of research, Science of The Total Environment, Vol. 598, pp. 220-227DOI