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Removal and factors influencing removal of sulfonamides and trimethoprim from domestic sewage in constructed wetlandsDAN A; YANG YANG; DAI, Yu-Nv et al.Bioresource technology. 2013, Vol 146, pp 363-370, issn 0960-8524, 8 p.Article

Classification and extraction methods of the clog components of constructed wetlandJIANFENG YE; HUAIZHENG LI; CHENGYU ZHANG et al.Ecological engineering. 2014, Vol 70, pp 327-331, issn 0925-8574, 5 p.Article

Modelling of arsenic retention in constructed wetlandsLLORENS, Esther; OBRADORS, Joshua; ALARCON-HERRERA, Teresa María et al.Bioresource technology. 2013, Vol 147, pp 221-227, issn 0960-8524, 7 p.Article

Enhanced nitrogen removal in constructed wetlands: Effects of dissolved oxygen and step-feedingFENGMIN LI; LUN LU; XIANG ZHENG et al.Bioresource technology. 2014, Vol 169, pp 395-402, issn 0960-8524, 8 p.Article

Nitrogen removal in intermittently aerated vertical flow constructed wetlands: Impact of influent COD/N ratiosJINLIN FAN; WENGANG WANG; BO ZHANG et al.Bioresource technology. 2013, Vol 143, pp 461-466, issn 0960-8524, 6 p.Article

Comparison of horizontal and vertical constructed wetland systems for landfill leachate treatmentYALCUK, Arda; UGURLU, Aysenur.Bioresource technology. 2009, Vol 100, Num 9, pp 2521-2526, issn 0960-8524, 6 p.Article

Cr(VI) removal and detoxification in constructed wetlands planted with Leersia hexandra SwartzJIE LIU; ZHANG, Xue-Hong; YOU, Shao-Hong et al.Ecological engineering. 2014, Vol 71, pp 36-40, issn 0925-8574, 5 p.Article

The verification of the Constructed Wetland Model No. 1 implementation in HYDRUS using column experiment dataPALFY, T. G; LANGERGRABER, G.Ecological engineering. 2014, Vol 68, pp 105-115, issn 0925-8574, 11 p.Article

Constructed wetland technology in Austria ― History, current practices and new developmentsLANGERGRABER, Günter; HABERL, Raimund.Sciences, eaux & territoires. 2012, Num 9, pp 32-34, issn 2109-3016, 3 p.Article

Influence of bed media characteristics on ammonia and nitrate removal in shallow horizontal subsurface flow constructed wetlandsALBUQUERQUE, A; OLIVEIRA, J; SEMITELA, S et al.Bioresource technology. 2009, Vol 100, Num 24, pp 6269-6277, issn 0960-8524, 9 p.Article

How to increase microbial degradation in constructed wetlands: Influencing factors and improvement measuresPANPAN MENG; HAIYAN PEI; WENRONG HU et al.Bioresource technology. 2014, Vol 157, pp 316-326, issn 0960-8524, 11 p.Article

Assessing pesticide reduction in constructed wetlands using a tanks-in-series model within a Bayesian frameworkKRONE-DAVIS, Pamela; WATSON, Fred; LOS HUERTOS, Marc et al.Ecological engineering. 2013, Vol 57, pp 342-352, issn 0925-8574, 11 p.Article

Enhanced denitrification and organics removal in hybrid wetland columns: Comparative experimentsSAEED, Tanveer; GUANGZHI SUN.Bioresource technology. 2011, Vol 102, Num 2, pp 967-974, issn 0960-8524, 8 p.Article

Dependence between quality and removal effectiveness of organic matter in hybrid constructed wetlandsTUSZYNSKA, A; OBARSKA-PEMPKOWIAK, H.Bioresource technology. 2008, Vol 99, Num 14, pp 6010-6016, issn 0960-8524, 7 p.Article

Application of constructed wetlands for wastewater treatment in developing countries — A review of recent developments (2000-2013)DONG QING ZHANG; JINADASA, K. B. S. N; GERSBERG, Richard M et al.Journal of environmental management. 2014, Vol 141, pp 116-131, issn 0301-4797, 16 p.Article

Experiences from the full-scale implementation of a new two-stage vertical flow constructed wetland designLANGERGRABER, Guenter; PRESSL, Alexander; HABERL, Raimund et al.Water science and technology. 2014, Vol 69, Num 2, pp 335-342, issn 0273-1223, 8 p.Article

French vertical flow constructed wetlands: a need of a better understanding of the role of the deposit layerMOLLE, Pascal.Water science and technology. 2014, Vol 69, Num 1, pp 106-112, issn 0273-1223, 7 p.Article

Three-stage horizontal subsurface flow constructed wetlands for organics and nitrogen removal: Effect of aerationFENGMIN LI; LUN LU; XIANG ZHENG et al.Ecological engineering. 2014, Vol 68, pp 90-96, issn 0925-8574, 7 p.Article

Constructed wetlands for treatment of industrial wastewaters: A reviewVYMAZAL, Jan.Ecological engineering. 2014, Vol 73, pp 724-751, issn 0925-8574, 28 p.Article

Biological characterization and treatment performances of a compact vertical flow constructed wetland with the use of expanded schistPRIGENT, S; BELBEZE, G; PAING, J et al.Ecological engineering. 2013, Vol 52, pp 12-18, issn 0925-8574, 7 p.Article

Constructed wetland treatment of agricultural effluent from an anaerobic digesterCOMINO, Elena; RIGGIO, Vincenzo A; ROSSO, Maurizio et al.Ecological engineering. 2013, Vol 54, pp 165-172, issn 0925-8574, 8 p.Article

Effect of aeration on hydrocarbon phytoremediation capability in pilot sub-surface flow constructed wetland operationISRAA ABDULWAHAB AL-BALDAWI; SITI ROZAIMAH SHEIKH ABDULLAH; SUJA, Fatihah et al.Ecological engineering. 2013, Vol 61, pp 496-500, issn 0925-8574, 5 p., aArticle

Effect of migration of amorphous iron oxide on phosphorous spatial distribution in constructed wetland with horizontal sub-surface flowCHONG, Y. X; YU, G. W; CAO, X. Y et al.Ecological engineering. 2013, Vol 53, pp 126-129, issn 0925-8574, 4 p.Article

Design and monitoring of horizontal subsurface-flow constructed wetlands for treating nursery leachatesNARVAEZ, Lola; CUNILL, Conrad; CACERES, Rafaela et al.Bioresource technology. 2011, Vol 102, Num 11, pp 6414-6420, issn 0960-8524, 7 p.Article

Improving the treatment efficiency of constructed wetlands with zeolite-containing filter sandsBRUCH, Ingo; FRITSCHE, Johannes; BÄNNINGER, Dominik et al.Bioresource technology. 2011, Vol 102, Num 2, pp 937-941, issn 0960-8524, 5 p.Article

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