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Sustainable Solutions for Environmental Pollution, Volume 2


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Dent, C.L., Gergel, S.E., Grimm, N.B., Groffman, P.M., Hart, S.C., Harvey, J.W., Johnston, C.A., Mayorga, E., McDowell, W.H., Pinay, G., Biogeochemical hot spots and hot moments at the interface of terrestrial and aquatic ecosystems. Ecosystems, 6, 4, 301–312, 2003, doi: 10.1007/s10021-003-0161-9.

      Medlock, J.M., Vaux, A.G.C., Impacts of the creation, expansion and management of English wetlands on mosquito presence and abundance - developing strategies for future disease mitigation. Parasitol. Vectors, 8, 13, 2015, doi: 10.1186/s13071-015-0751-3.

      Mendoza-Lera, C., Datry, T., Relating hydraulic conductivity and hyporheic zone biogeochemical processing to conserve and restore river ecosystem services. Sci. Total Environ., 579, 1815–1821, 2017, doi: 10.1016/j. scitotenv.2016.11.166.

      Minella, M., Giannakis, S., Mazzavillani, A., Maurino, V., Minero, C., Vione, D., Phototransformation of Acesulfame K in surface waters: Comparison of two techniques for the measurement of the second-order rate constants of indirect photodegradation, and modelling of photoreaction kinetics. Chemosphere, 186, 185–192, 2017, doi: 10.1016/j.chemosphere.2017.07.128.

      Mkandawire, M., Dudel, E., Are Lemna spp. effective phytoremediation agents? Biorem. Biodiv. Bioavail., 1, 1, 56–71, 2007.

      Mohan, S.V., Chandrasekhar, K., Self-induced bio-potential and graphite electron accepting conditions enhances petroleum sludge degradation in bio-electrochemical system with simultaneous power generation. Bioresour. Technol., 102, 20, 9532–9541, 2011, doi: 10.1016/j.biortech.2011.07.038.

      Morato, J., Codony, F., Sanchez, O., Perez, L.M., Garcia, J., Mas, J., Key design factors affecting microbial community composition and pathogenic organism removal in horizontal subsurface flow constructed wetlands. Sci. Total Environ., 481, 81–89, 2014, doi: 10.1016/j.scitotenv.2014.01.068.

      Morris, J.M., Jin, S., Enhanced biodegradation of hydrocarbon-contaminated sediments using microbial fuel cells. J. Hazard. Mater., 213, 474–477, 2012, doi: 10.1016/j.jhazmat.2012.02.029.

      Naganna, S.R., Deka, P.C., Ch, S., Hansen, W.F., Factors influencing streambed hydraulic conductivity and their implications on stream-aquifer interaction: a conceptual review. Environ. Sci. Pollut. Res., 24, 32, 24765–24789, 2017, doi: 10.1007/s11356-017-0393-4.

      Najafgholi, Z., Rahimnejad, M., Improvement of sediment microbial fuel cell performance by application of sun light and biocathode. Korean J. Chem. Eng., 33, 1, 154–158, 2016, doi: 10.1007/s11814-015-0123-x.

      Namour, P., Jobin, L., Electrochemistry, a tool to enhance self-purification in water systems while preventing the emission of noxious gases (greenhouse gases, H2S, NH3). Curr. Opin. Electrochem., 11, 25–33, 2018, doi: 10.1016/j. coelec.2018.07.003.

      Namour, P., Le Pimpec, P., Simulation of hyporheic self-purification in rivers: the assimilative capacity of proteins. Water Sci. Technol., 43, 5, 231–238, 2001, doi: 10.2166/wst.2001.0293.

      Namour, P., Auto-épuration des rejets organiques domestiques, nature de la matière organique résiduaire et son effet en rivière, Ecologie, p. 162, Université de Lyon, Lyon (France, 1999, [http://bit.ly/PhNamourPhthesis].

      Namour, P., Eschbach, D., Schmitt, L., Moulin, B., Fantino, G., Bordes, C., Breil, P., Stream pollution concentration in riffle geomorphic units (Yzeron basin, France). Sci. Total Envrion., 532, 80–90, 2015, doi: 10.1016/j. scitotenv.2015.05.057.

      Navratil, O., Breil, P., Schmitt, L., Grosprêtre, L., Albert, M.B., Hydrogeomorphic adjustments of stream channels disturbed by urban runoff (Yzeron River basin, France). J. Hydrol., 485, 24–36, 2013, doi: 10.1016/j.jhydrol.2012.01.036.

      Neculita, C.M., Zagury, G.J., Bussière, B., Passive treatment of acid mine drainage in bioreactors using sulfate-reducing bacteria: critical review and research needs. J. Environ. Qual., 36, 1, 1–16, 2007, doi: 10.2134/jeq2006.0066.

      Ng, G.-H.C., Yourd, A.R., Johnson, N.W., Myrbo, A.E., Modeling hydrologic controls on sulfur processes in sulfate-impacted wetland and stream sediments. J. Geophys. Res. Biogeosci., 122, 9, 2435–2457, 2017, doi: 10.1002/2017jg003822.

      Nguyen, P.M., Afzal, M., Ullah, I., Shahid, N., Baqar, M., Arslan, M., Removal of pharmaceuticals and personal care products using constructed wetlands: effective plant-bacteria synergism may enhance degradation efficiency. Environ. Sci. Pollut. Res., 26, 21, 21109–21126, 2019a, doi: 10.1007/ s11356-019-05320-w.

      Nguyen, T.T., Ngo, H.H., Guo, W., Wang, X.C., Ren, N., Li, G., Ding, J., Liang, H., Implementation of a specific urban water management - Sponge City. Sci. Total Environ., 652, 147–162, 2019b, doi: 10.1016/j.scitotenv.2018.10.168.

      Nielsen, M.E., Reimers, C.E., Stecher, H.A., Enhanced power from chambered benthic microbial fuel cells. Environ. Sci. Technol., 41, 22, 7895–7900, 2007, doi: 10.1021/es071740b.

      Niu, X.J., Wei, A.S., Li, Y.D., Mi, L.N., Yang, Z.Q., Song, X.F., Phosphine in paddy fields and the effects of environmental factors. Chemosphere, 93, 9, 1942– 1947, 2013, doi: 10.1016/j.chemosphere.2013.06.078.

      Njambuya, J., Stiers, I., Triest, L., Competition between Lemna minuta and Lemna minor at different nutrient concentrations. Aquat. Bot., 94, 4, 158–164, 2011, doi: 10.1016/j.aquabot.2011.02.001.

      Oberholster, P., Cheng, P.-H., Botha, A., Hobbs, P., Hill, L., Assessment of selected macroalgae for use in a biological hybrid system for treating sulphur in acid mine drainage (AMD). J. Appl. Phycol., 30, 1361–1370, 2017, doi: 10.1007/ s10811-017-1314-0.

      Oberholster, P.J., Cheng, P.H., Genthe, B., Steyn, M., The environmental feasibility of low-cost algae-based sewage treatment as a climate change adaption measure in rural areas of SADC countries. J. Appl. Phycol., 31, 1, 355–363, 2019, doi: 10.1007/s10811-018-1554-7.

      Ockenden, M.C., Deasy, C., Quinton, J.N., Surridge, B., Stoate, C., Keeping agricultural soil out of rivers: Evidence of sediment and nutrient accumulation within field wetlands in the UK. J. Environ. Manage., 135, 54–62, 2014, doi: 10.1016/j.jenvman.2014.01.015.

      Oon, Y.L., Ong, S.A., Ho, L.N., Wong, Y.S., Dahalan, F.A., Oon, Y.S., Lehl, H.K., Thung, W.E., Synergistic effect of up-flow constructed wetland and microbial fuel cell for simultaneous wastewater treatment and energy recovery. Bioresour. Technol., 203, 190–197, 2016, doi: 10.1016/j.biortech.2015.12.011.

      Oswald, W.J., Ponds in the 21st Century. Water Sci. Technol., 31, 12, 1–8, 1995, doi: 10.1016/0273-1223(95)00487-8.

      Pálfy, T., Gourdon, R., Meyer, D., Stéphane, T., Molle, P., Model-based optimization of constructed wetlands treating combined sewer overflow. Ecol. Engin., 101, 261–267, 2017, doi: j.ecoleng.2017.01.020.

      Pálfy, T., Molle, P., Langergraber, G., Stéphane, T., Gourdon, R., Meyer, D., Simulation of constructed wetlands treating combined sewer overflow using HYDRUS/CW2D. Ecol. Engin., 87, 340–347, 2016, doi: j.ecoleng.2015.11.048.

      Palma, E., Daghio, M., Franzetti, A., Papini, M.P., Aulenta, F., The bioelectric well: a novel approach for insitu treatment of hydrocarbon-contaminated groundwater. Microb. Biotechnol., 11, 1, 112–118, 2018, doi: 10.1111/1751-7915.12760.

      Pavlineri, N., Skoulikidis, N.T., Tsihrintzis, V.A., Constructed floating wetlands: A review of research, design, operation and management aspects, and data meta-analysis. Chem. Eng. J., 308, 1120–1132, 2017, doi: 10.1016/j. cej.2016.09.140.

      Peeters, E.T.H.M., van Zuidam, J.P., van Zuidam, B.G., Van Nes, E.H., Kosten, S., Heuts, P.G.M., Roijackers, R.M.M., Netten, J.J.C., Scheffer,