Sustainable Solutions for Environmental Pollution, Volume 2. Группа авторов

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      Sun, Y., Deng, L., Pan, S.-Y., Chiang, P.-C., Sable, S.S., Shah, K.J., Integration of green and gray infrastructures for sponge city: Water and energy nexus. Water-Energy Nexus, 3, 29–40, 2020, doi: 10.1016/j.wen.2020.03.003.

      Suresh Kumar, K., Dahms, H.-U., Won, E.-J., Lee, J.-S., Shin, K.-H., Microalgae – A promising tool for heavy metal remediation. Ecotox. Environ. Safe., 113, 329–352, 2015, doi: 10.1016/j.ecoenv.2014.12.019.

      Tai, Y., Tam, N.F.-Y., Dai, Y., Yang, Y., Lin, J., Tao, R., Yang, Y., Wang, J., Wang, R., Huang, W., Xu, X., Assessment of rhizosphere processes for removing water-borne macrolide antibiotics in constructed wetlands. Plant Soil, 419, 1, 489–502, 2017, doi: 10.1007/s11104-017-3359-x.

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      Valdelfener, M., Barraud, S., Sibeud, E., Bacot, L., Perrin, Y., Jourdain, F., Marmonier, P. Do Sustainable Drainage Systems favour mosquito proliferation in cities compared to stormwater networks? Urban Water J., 16, 6, 436–443, 2019, doi: 10.1080/1573062X.2018.1523442.

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      Villa, J., Ju, Y., Stephen, T., Rey-Sanchez, A.C., Wrighton, K., Bohrer, G., Plant-mediated methane transport in emergent and floating-leaved species of a temperate freshwater mineral-soil wetland. Limnol. Oceanogr., 65, 7, 1635– 1650, 2020, doi: doi.org/10.1002/lno.11467.

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      Vymazal, J., Březinová, T., The use of constructed wetlands for removal of pesticides from agricultural runoff and drainage: A review. Environ. Int., 75, 11–20, 2015, doi: 10.1016/j.envint.2014.10.026.

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      Vymazal, J., Constructed Wetlands for Wastewater Treatment: A Review. Proceedings of Taal 2007: 12th World Lake Conference, pp. 965–980, 2008. Vymazal, J., The use constructed wetlands with horizontal sub-surface flow for various types of wastewater. Ecol. Eng., 35, 1, 1–17, 2009, doi: 10.1016/j. ecoleng.2008.08.016.

      Vymazal, J., Plants used in constructed wetlands with horizontal subsurface flow: a review. Hydrobiologia, 674, 1, 133–156, 2011, doi: 10.1007/ s10750-011-0738-9.

      Vymazal, J., Removal of nutrients in constructed wetlands for wastewater treatment through plant harvesting – Biomass and load matter the most. Ecol. Eng., 155, 105962, 2020, doi: 10.1016/j.ecoleng.2020.105962.

      Walaszek, M., Bois, P., Laurent, J., Lenormand, E., Wanko, A., Micropollutants removal and storage efficiencies in urban stormwater constructed wetland. Sci. Total Environ., 645, 854–864, 2018, doi: 10.1016/j.scitotenv.2018.07.156.

      Wang, H.M., Ren, Z.Y.J., A comprehensive review of microbial electrochemical systems as a platform technology. Biotechnol. Adv., 31, 8, 1796–1807, 2013, doi: 10.1016/j.biotechadv.2013.10.001.

      Wang, L., Yue, X., Wang, H., Ling, K., Liu, Y., Wang, J., Hong, J., Pen, W., Song, H., Dynamic inversion of inland aquaculture water quality based on UAVs-WSN spectral analysis. Remote Sens., 12, 3, 402, 2020a, doi: 10.3390/rs12030402.

      Wang, L.W., Hou, D.Y., Cao, Y.N., Ok, Y.S., Tack, F.M.G., Rinklebe, J., O’Connor, D., Remediation of mercury contaminated soil, water, and air: A review of emerging materials and innovative technologies. Environ. Int., 134, 19, 2020b, doi: 10.1016/j.envint.2019.105281.

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      West, M., Fenner, N., Gough, R., Freeman, C., Evaluation of algal bloom mitigation and nutrient removal in floating constructed wetlands with different macrophyte species. Ecol. Engin., 108, 581–588, 2017, doi: 10.1016/j. ecoleng.2017.07.033.

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