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kw.\*:("Constructed wetland")

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Results 1 to 25 of 579

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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

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

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

Transport and survival of bacterial and viral tracers through submerged-flow constructed wetland and sand-filter systemVEGA, Everardo; LESIKAR, Bruce; PILLAI, Suresh D et al.Bioresource technology. 2003, Vol 89, Num 1, pp 49-56, issn 0960-8524, 8 p.Article

Membrane bioreactors and constructed wetlands for treatment of rendering plant wastewaterO'BRIEN, Catherine A; SCHOLZ, Miklas; MCCONNACHLE, Gordon L et al.Journal of the Chartered Institution of Water and Environmental Management. 2005, Vol 19, Num 3, pp 189-198, issn 1360-4015, 10 p.Article

Magnitude of nitrogen pollution in stream water due to intensive livestock farming practicesKRISHNA PRASAD WOLI; NAGUMO, Toshiyuki; HATANO, Ryusuke et al.Soil Science and Plant Nutrition (Tokyo). 2002, Vol 48, Num 6, pp 883-887, issn 0038-0768, 5 p.Article

Effect of plants and the combination of wetland treatment type systems on pathogen removal in tropical climate conditionsGARCIA, Jenny A; PAREDES, Diego; CUBILLOS, Janneth A et al.Ecological engineering. 2013, Vol 58, pp 57-62, issn 0925-8574, 6 p.Article

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

Statistical modelling of organic matter and emerging pollutants removal in constructed wetlandsHIJOSA-VALSERO, Maria; SIDRACH-CARDONA, Ricardo; MARTIN-VILLACORTA, Javier et al.Bioresource technology. 2011, Vol 102, Num 8, pp 4981-4988, issn 0960-8524, 8 p.Article

An anoxic/oxic submerged constructed wetlands process for wastewater treatment: Modeling, simulation and evaluationQI, Wei-Kang; GUO, Yi-Ling; SU, Lin-Meng et al.Ecological engineering. 2014, Vol 67, pp 206-215, issn 0925-8574, 10 p.Article

Evaluation of nutrient removal efficiency and microbial enzyme activity in a baffled subsurface-flow constructed wetland systemLIHUA CUI; YING OUYANG; WENJIE GU et al.Bioresource technology. 2013, Vol 146, pp 656-662, issn 0960-8524, 7 p.Article

Review of environmental effects and treatment of runoff from storage and handling of woodHEDMARK, Asa; SCHOLZ, Miklas.Bioresource technology. 2008, Vol 99, Num 14, pp 5997-6009, issn 0960-8524, 13 p.Article

Accumulation of heavy metals in a constructed wetland treating road runoffGILL, Laurence W; RING, Pamela; HIGGINS, Neil M. P et al.Ecological engineering. 2014, Vol 70, pp 133-139, issn 0925-8574, 7 p.Article

Simulation of batch-operated experimental wetland mesocosms in AQUASIM biofilm reactor compartmentMBURU, Njenga; ROUSSEAU, Diederik P. L; STEIN, Otto R et al.Journal of environmental management. 2014, Vol 134, pp 100-108, issn 0301-4797, 9 p.Article

Balancing carbon sequestration and GHG emissions in a constructed wetlandDE KLEIN, Jeroen J. M; VAN DER WERF, Adrie K.Ecological engineering. 2014, Vol 66, pp 36-42, issn 0925-8574, 7 p.Conference Paper

Enhancement of azo dye Acid Orange 7 removal in newly developed horizontal subsurface-flow constructed wetlandTEE, Heng-Chong; LIM, Poh-Eng; SENG, Chye-Eng et al.Journal of environmental management. 2015, Vol 147, pp 349-355, issn 0301-4797, 7 p.Article

Fate and distribution of arsenic in a process-designed pilot-scale constructed wetland treatment systemSCHWINDAMAN, Jeffrey P; CASTLE, James W; RODGERS, John H et al.Ecological engineering. 2014, Vol 68, pp 251-259, issn 0925-8574, 9 p.Article

Removal and fate of arsenic in the rhizosphere of Juncus effusus treating artificial wastewater in laboratory-scale constructed wetlandsKHAJA ZILLUR RAHMAN; WIESSNER, Arndt; KUSCHK, Peter et al.Ecological engineering. 2014, Vol 69, pp 93-105, issn 0925-8574, 13 p.Article

Salt uptake and evapotranspiration under arid conditions in horizontal subsurface flow constructed wetland planted with halophytesFREEDMAN, Alexander; GROSS, Amit; SHELEF, Oren et al.Ecological engineering. 2014, Vol 70, pp 282-286, issn 0925-8574, 5 p.Article

Phosphorus fractions and fluxes in the soils of a free surface flow constructed wetland in Hong KongLAI, Derrick Y. F.Ecological engineering. 2014, Vol 73, pp 73-79, issn 0925-8574, 7 p.Article

Constructed wetland as an ecotechnological tool for pollution treatment for conservation of Ganga riverRAI, U. N; TRIPATHI, R. D; SINGH, N. K et al.Bioresource technology. 2013, Vol 148, pp 535-541, issn 0960-8524, 7 p.Article

Dynamics of nitrobenzene degradation and interactions with nitrogen transformations in laboratory-scale constructed wetlandsTAO LV; SHUBIAO WU; HAO HONG et al.Bioresource technology. 2013, Vol 133, pp 529-536, issn 0960-8524, 8 p.Article

Performance of microbial fuel cell coupled constructed wetland system for decolorization of azo dye and bioelectricity generationZHOU FANG; SONG, Hai-Liang; NING CANG et al.Bioresource technology. 2013, Vol 144, pp 165-171, issn 0960-8524, 7 p.Article

Influence of temperature on micro-environment, plant eco-physiology and nitrogen removal effect in subsurface flow constructed wetlandJUAN HUANG; WENSHU CAI; QIUSHUANG ZHONG et al.Ecological engineering. 2013, Vol 60, pp 242-248, issn 0925-8574, 7 p.Article

The impact of influent mode on nitrogen removal in horizontal subsurface flow constructed wetlands: A simple analysis of hydraulic efficiency and nutrient distributionYUHUI WANG; XINSHAN SONG; YI DING et al.Ecological engineering. 2013, Vol 60, pp 271-275, issn 0925-8574, 5 p.Article

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