Kotyza J, Soudek P, Kafka Z, Vanek T (2010) Phytoremediation of pharmaceuticals – preliminary
study. Int J Phytoremediation 12(3):306–316
Kummerer K (2009) Antibiotics in the aquatic environment -a review–part II. Chemosphere
75:435–441
Lahvis MA, Baehr AL, Baker RJ (1999) Quantification of aerobic biodegradation and volatilization
rates of gasoline hydrocarbons near the water table under natural attenuation conditions. Water
Resour Res 35(3):753–765
Langenheder S, Prosser JI (2008) Resource availability influences the diversity of a functional
group of heterotrophic soil bacteria. Environ Microbiol 10:2245–2256
Lee BH, Scholz M (2007) What is the role of Phragmites australis in experimental constructed
wetland filters treating urban runoff? Ecol Eng 29:87–95
Lefebvre O, Moletta R (2006) Treatment of organic pollution in industrial saline wastewater: a
literature review. Water Res 40:3671–3682
Lemanceau P, Bauer P, Kraemer S, Briat JF (2009) Iron dynamics in the rhizosphere as a case study
for analyzing interactions between soils, plants and microbes. Plant Soil 321:513–535
Lesage E, Rousseau DPL, Meers E, Tack FMG, De Pauw N (2007) Accumulation of metals in a
horizontal subsurface flow constructed wetland treating domestic wastewater in Flanders,
Belgium. Sci Total Environ 380:102–115
Leyval C, Joner EJ, del Val C, Haselwandter K (2002) Potential of arbuscular mycorrhizal fungi for
bioremediation. In: Gianinazzi S, Schuepp H, Barea JM, Haselwandter K (eds) Mycorrhizal
technology in agriculture. Birkhauser-Verlag, Basel, pp 175–186
Li Y, Zhu G, Ng WJ, Tan SK (2014) A review on removing pharmaceutical contaminants from
wastewater by constructed wetlands: design, performance and mechanism. Sci Total Environ
468–469:908–932
Maine MA, Sune N, Hadad H, Sanchez G, Bonetto C (2006) Nutrient and metal removal in a
constructed wetland for waste-water treatment from a metallurgic industry. Ecol Eng
26:341–347
Manning BA, Fendorf SE, Goldberg S (1998) Surface structures and stability of arsenic(III) on
goethite: spectroscopic evidence for inner-sphere complexes. Environ Sci Technol
32:2383–2388
Marchand L, Mench M, Jacob DL, Otte ML (2010) Metal and metalloid removal in constructed
wetlands, with emphasis on the importance of plants and standardized measurements: a review.
Environ Pollut 158:3447–3461
Martiny JBH, Bohannan BJM, Brown JH, Colwell RK, Fuhrman JA, Green JL et al (2006)
Microbial biogeography: putting microorganisms on the map. Nature Rev 4:102–112
Mastretta C, Taghavi S, van der Lelie D, Mengoni A, Galardi F, Gonnelli C, Barac T, Boulet J,
Weyens N, Vangronsveld J (2009) Endophytic bacteria from seeds of Nicotiana tabacum can
reduce cadmium phytotoxicity. Int J Phytoremediation 11:251–267
Matagi SV (1998) Environmental Technology Assessment in Uganda. A country Synopsis. In:
Environmental Technology Assessment (EnTA) in Sub-Saharan Africa, UNEP-IETC Report
3, Osaka/Shiga, pp 259–277
Matagi SV, Swai D, Maine MA, Sune N, Hadad H, Sanchez G, Bonetto C (1998) Nutrient and
metal removal in a constructed wetland for waste-water treatment from a metallurgic industry.
Ecol Eng 26:341–347
Matamoros V, Boyona JM (2006) Elimination of pharmaceuticals and personal care products in
subsurface flow constructed wetlands. Environ Sci Technol 40(18):5811–5816
Mbuligwe SE (2005) Comparative treatment of dye-rich wastewater in engineered wetland systems
(EWSs) vegetated with different plants. Water Res 39:271–280
Mishra VK, Tripathi BD (2008) Concurrent removal and accumulation of heavy metals by the three
aquatic macrophytes. Bioresour Technol 99:7091–7097
Mitchell DS (1976) The growth and management of Eichhornia crassipes and Salvinia spp. in their
native environment and in alien situation
Mitsch WJ, Gosselink JG (2007) Wetlands, 4th edn. Wiley, New York
Mitsch WJ, Jorgensen SE (2003) Ecological engineering: a field whose time has come. Ecol Eng 20
(5):363–377
160
S. Khan et al.
study. Int J Phytoremediation 12(3):306–316
Kummerer K (2009) Antibiotics in the aquatic environment -a review–part II. Chemosphere
75:435–441
Lahvis MA, Baehr AL, Baker RJ (1999) Quantification of aerobic biodegradation and volatilization
rates of gasoline hydrocarbons near the water table under natural attenuation conditions. Water
Resour Res 35(3):753–765
Langenheder S, Prosser JI (2008) Resource availability influences the diversity of a functional
group of heterotrophic soil bacteria. Environ Microbiol 10:2245–2256
Lee BH, Scholz M (2007) What is the role of Phragmites australis in experimental constructed
wetland filters treating urban runoff? Ecol Eng 29:87–95
Lefebvre O, Moletta R (2006) Treatment of organic pollution in industrial saline wastewater: a
literature review. Water Res 40:3671–3682
Lemanceau P, Bauer P, Kraemer S, Briat JF (2009) Iron dynamics in the rhizosphere as a case study
for analyzing interactions between soils, plants and microbes. Plant Soil 321:513–535
Lesage E, Rousseau DPL, Meers E, Tack FMG, De Pauw N (2007) Accumulation of metals in a
horizontal subsurface flow constructed wetland treating domestic wastewater in Flanders,
Belgium. Sci Total Environ 380:102–115
Leyval C, Joner EJ, del Val C, Haselwandter K (2002) Potential of arbuscular mycorrhizal fungi for
bioremediation. In: Gianinazzi S, Schuepp H, Barea JM, Haselwandter K (eds) Mycorrhizal
technology in agriculture. Birkhauser-Verlag, Basel, pp 175–186
Li Y, Zhu G, Ng WJ, Tan SK (2014) A review on removing pharmaceutical contaminants from
wastewater by constructed wetlands: design, performance and mechanism. Sci Total Environ
468–469:908–932
Maine MA, Sune N, Hadad H, Sanchez G, Bonetto C (2006) Nutrient and metal removal in a
constructed wetland for waste-water treatment from a metallurgic industry. Ecol Eng
26:341–347
Manning BA, Fendorf SE, Goldberg S (1998) Surface structures and stability of arsenic(III) on
goethite: spectroscopic evidence for inner-sphere complexes. Environ Sci Technol
32:2383–2388
Marchand L, Mench M, Jacob DL, Otte ML (2010) Metal and metalloid removal in constructed
wetlands, with emphasis on the importance of plants and standardized measurements: a review.
Environ Pollut 158:3447–3461
Martiny JBH, Bohannan BJM, Brown JH, Colwell RK, Fuhrman JA, Green JL et al (2006)
Microbial biogeography: putting microorganisms on the map. Nature Rev 4:102–112
Mastretta C, Taghavi S, van der Lelie D, Mengoni A, Galardi F, Gonnelli C, Barac T, Boulet J,
Weyens N, Vangronsveld J (2009) Endophytic bacteria from seeds of Nicotiana tabacum can
reduce cadmium phytotoxicity. Int J Phytoremediation 11:251–267
Matagi SV (1998) Environmental Technology Assessment in Uganda. A country Synopsis. In:
Environmental Technology Assessment (EnTA) in Sub-Saharan Africa, UNEP-IETC Report
3, Osaka/Shiga, pp 259–277
Matagi SV, Swai D, Maine MA, Sune N, Hadad H, Sanchez G, Bonetto C (1998) Nutrient and
metal removal in a constructed wetland for waste-water treatment from a metallurgic industry.
Ecol Eng 26:341–347
Matamoros V, Boyona JM (2006) Elimination of pharmaceuticals and personal care products in
subsurface flow constructed wetlands. Environ Sci Technol 40(18):5811–5816
Mbuligwe SE (2005) Comparative treatment of dye-rich wastewater in engineered wetland systems
(EWSs) vegetated with different plants. Water Res 39:271–280
Mishra VK, Tripathi BD (2008) Concurrent removal and accumulation of heavy metals by the three
aquatic macrophytes. Bioresour Technol 99:7091–7097
Mitchell DS (1976) The growth and management of Eichhornia crassipes and Salvinia spp. in their
native environment and in alien situation
Mitsch WJ, Gosselink JG (2007) Wetlands, 4th edn. Wiley, New York
Mitsch WJ, Jorgensen SE (2003) Ecological engineering: a field whose time has come. Ecol Eng 20
(5):363–377
160
S. Khan et al.
