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Plants as ecosystem engineers in subsurface-flow treatment wetlands

Water Science & Technology · 2001 · Vol. 44(11-12) · pp. 9–17
Chris C. Tanner

Abstract

Mass balance performance data from side by side studies of planted and unplanted gravel-bed treatment wetlands with horizontal subsurface-flow are compared. Planted systems showed enhanced nitrogen and initial phosphorus removal, but only small improvements in disinfection, BOD, COD and suspended solids removal. Direct nutrient uptake by plants was insufficient to account for more than a fraction of the improved removal shown by planted systems. Roles of plants as ecosystem engineers are summarised, with organic matter production and root-zone oxygen release identified as key factors influencing nutrient transformation and sequestration.

Constructed Wetlands for Wastewater TreatmentCoastal wetland ecosystem dynamicsPeatlands and Wetlands EcologyWetlandEnvironmental scienceEcosystemNutrientSubsurface flowOrganic matterEnvironmental engineeringSuspended solidsPhosphorusHydrology (agriculture)

MeSH terms

Biodegradation, EnvironmentalEngineeringNitrogenPhosphorusPlantsWater PollutionEcosystem
Citations
324
FWCI
12.32
field-weighted impact
References
35
Percentile
99%
vs. same field & year
Citations per year
References
Functions of Macrophytes in Constructed Wetlands
Water Science & Technology · 1994 · 642 citations
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