과제정보
This study was supported by the Research Program funded by the SeoulTech (Seoul National University of Science and Technology).
참고문헌
- Cambra, C., Sendra, S., Lloret, J. and Garcia, L. (2017), "An IoT service-oriented system for agriculture monitoring", Proceedings of the 2017 IEEE International Conference on Communications (ICC), Paris, France, May, 1-6.
- Choi, H., Hong, J., Geronimo, F.K.F., and Kim, L.H. (2019), "Assessment of environmental impacts of LID technologies on vegetation.", Membr. Water Treat., 10(1), 39-44. https://doi.org/10.12989/mwt.2019.10.1.039
- Choi, H., Hong, J., Jeon, M., Geronimo, F.K. and Kim, L. (2019), "Assessment of water circulation and hydro-characteristics with LID techniques in urbanized areas", J. Wetlands Res., 21(3), 191-198.
- Diene, B., Rodrigues, J.J., Diallo, O., Ndoye, E.H.M. and Korotaev, V.V. (2020), "Data management techniques for internet of things", Mech. Syst. Signal Process., 138, 106564. https://doi.org/10.1016/j.ymssp.2019.106564
- Drew, M.C. (1997), "Oxygen deficiency and root metabolism: injury and acclimation under hypoxia and anoxia", Annu. Rev. Plant Physiol. Plant Mol. Biol., 48(1), 223-250. https://doi.org/10.1146/annurev.arplant.48.1.223
- Dudhe, P.V., Kadam, N.V., Hushangabade, R.M. and Deshmukh, M.S. (2017), "Internet of things (IOT): an overview and its applications", Proceedings of the 2017 International Conference on Energy, Communication, Data Analytics and Soft Computing (ICECDS), Chennai, India, August, 2650-2653.
- Gorham, E. (1991), "Northern peatlands: role in the carbon cycle and probable responses to climatic warming" Ecol. Appl., 1(2), 182-195. https://doi.org/10.2307/1941811.
- Holden, J. (2005), "Peatland hydrology and carbon release: why small-scale process matters", Philos. Trans. A Math. Phys. Eng. Sci., 363(1837), 2891-2913. https://doi.org/10.1098/rsta.2005.1671.
- International Patent Classification (IPC), World Intellectual Property Organization (WIPO), http://www.wipo.int/classifications/ipc/en/
- Jeon, J., Choi, H., Shin, D., and Kim, L. H. (2019), "Installation and operation of automatic nonpoint pollutant source measurement system for cost-effective monitoring", Membr. Water Treat., 10(1), 99-104. https://doi.org/10.12989/mwt.2019.10.1.099
- Kang, C.G., Lee, S.Y., Cho, H.J., Lee, Y.H. and Kim, L.H. (2011), "Test-bed evaluation of developed small constructed wetland for using in urban areas", J. Wetlands Res., 13(3), 455-463.
- Kayranli, B., Scholz, M., Mustafa, A. and Hedmark, A . (2010), "Carbon storage and fluxes within freshwater wetlands: a critical review" Wetlands, 30(1), 111-124. https://doi.org/10.1007/s13157-009-0003-4
- Keco (2022), Korea Environment Corporation Air korea, Incheon, Korea. https://www.airkorea.or.kr/web/?isPC=Y
- Kim, D., Kim, J., Joo, H., Han, D. and Kim, H.S. (2019), "Future water quality analysis of the Anseongcheon River basin, Korea under climate change", Membr. Water Treat., 10(1), 001. https://doi.org/10.12989/mwt.2019.10.1.001.
- KIPRIS (2023), Korea Intellectual Property Rights Information Service, Daejeon, Korea, http://www.kipris.or.kr/
- KMA (2022), Korea Meteorological Administration, Seoul, Korea. https://www.weather.go.kr/
- Knight, R., Cooper, P., Brix, H., Vymazal, J., Haberl, R. and Kadlec, R. (2000), Constructed Wetlands for Pollution Control, IWA publishing.
- Kodali, R. K., Rajanarayanan, S. C., and Yadavilli, S. (2019), "IoT monitoring setup for waste water treatment.", 2019 IEEE R10 Humanitarian Technology Conference (R10-HTC), Depok, Indonesia, November, 12-14.
- Kwak, S. and Yun, Z. (2020), "The control of point and non-point source nitrogen to prevent eutrophication of the Nakdong River basin, Korea", Membr. Water Treat., 11(5), 345. https://doi.org/10.12989/mwt.2020.11.5.345.
- Lakshmikantha, V., Hiriyannagowda, A., Manjunath, A., Patted, A., Basavaiah, J., and Anthony, A. A. (2021), "IoT based smart water quality monitoring system.", Global Transitions Proceedings, 2(2), 181-186. https://doi.org/10.1016/j.gltp.2021.08.062
- Laskov, C., Horn, O. and Hupfer, M. (2006), "Environmental factors regulating the radial oxygen loss from roots of Myriophyllum spicatum and Potamogeton crispus", Aquat. Bot., 84(4), 333-340. https://doi.org/10.1016/j.aquabot.2005.12.005
- Lee, J., Bae, S., Lee, W.H. and Gil, K. (2022), "Effect of surface area to catchment area ratio on pollutant removal efficiency in vegetation-type facilities", Ecol. Eng., 179, 106609. https://doi.org/10.1016/j.ecoleng.2022.106609.
- Li, C., Huang, Y., Guo, H., Wu, G., Wang, Y., Li, W., and Cui, L. (2019), "The concentrations and removal effects of PM10 and PM2.5 on a wetland in Beijing.", Sustainability., 11(5), 1312. https://doi.org/10.3390/su11051312
- Liquete, C., Udias, A., Conte, G., Grizzetti, B. and Masi, F. (2016), "Integrated valuation of a nature-based solution for water pollution control: Highlighting hidden benefits", Ecosyst. Serv., 22, 392-401. https://doi.org/10.1016/j.ecoser.2016.09.011.
- Maniquiz-Redillas, M., Robles, M.E., Cruz, G., Reyes, N.J. and Kim, L.H. (2022), "First flush stormwater runoff in urban catchments: A bibliometric and comprehensive review", Hydrology, 9(4), 63. https://doi.org/10.3390/hydrology9040063.
- Mitra, S., Wassmann, R. and Vlek, P.L. (2005), "An appraisal of global wetland area and its organic carbon stock", Curr. Sci., 88(1), 25-35.
- Mitsch, W.J. and Gosselink, J.G. (2007), Wetlands 4th edition, Wiley, New York, USA.
- Pezeshki, S.R. and DeLaune, R.D. (2012), "Soil oxidation-reduction in wetlands and its impact on plant functioning", Biology, 1(2), 196-221. https://doi.org/10.3390/biology1020196
- Salim, I., Paule-Mercado, M.C., Sajjad, R.U., Memon, S.A., Lee, B.Y., Sukhbaatar, C. and Lee, C.H. (2019). "Trend analysis of rainfall characteristics and its impact on stormwater runoff quality from urban and agricultural catchment", Membr. Water Treat., 10(1), 45-55. https://doi.org/10.12989/mwt.2019.10.1.047.
- Srivastava, P., Bajaj, M., and Rana, A. S. (2018). "Overview of ESP8266 Wi-Fi module based smart irrigation system using IOT.", In 2018 Fourth International Conference on Advances in Electrical, Electronics, Information, Communication and Bio-Informatics (AEEICB), Chennai, India, February, 1-5.
- Sungji, K., Jiwon, L. and Kyungik, G. (2020), "Inflow and outflow event mean concentration analysis of contaminants in bioretention facilities for non-point pollution management", Ecol. Eng., 147, 105757. https://doi.org/10.1016/j.ecoleng.2020.105757.
- Voesenek, L.A.C.J., Colmer, T.D., Pierik, R., Millenaar, F.F. and Peeters, A.J.M. (2006), "How plants cope with complete submergence", New Phytol., 170(2), 213-226. https://doi.org/10.1111/j.1469-8137.2006.01692.x
- Wang, Y.S. and Gu, J.D. (2021), "Ecological responses, adaptation and mechanisms of mangrove wetland ecosystem to global climate change and anthropogenic activities", Int. Biodeterior. Biodegrad., 162, 105248. https://doi.org/10.1016/j.ibiod.2021.105248.
- Wu, S., Lyu, T., Zhao, Y., Vymazal, J., Arias, C.A. and Brix, H. (2018), "Rethinking intensification of constructed wetlands as a green eco-technology for wastewater treatment", Environ. Sci. Technol., 52(4), 1693-1694. https://doi.org/10.1021/acs.est.8b00010.