Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater
A horizontal subsurface flow constructed wetland was investigated after eight years of residential wastewater discharge (150 person equivalents). Twenty core samples distributed over the entire wetland were taken from the soil matrix. The distribution pattern of phosphorus (P) accumulation in the su...
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doaj-8f8637293ebc4ff2b1df6395821d2c832020-11-25T02:40:29ZengMDPI AGWater2073-44412011-01-013114615610.3390/w3010146Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential WastewaterAgnieszka KarczmarczykGunno RenmanA horizontal subsurface flow constructed wetland was investigated after eight years of residential wastewater discharge (150 person equivalents). Twenty core samples distributed over the entire wetland were taken from the soil matrix. The distribution pattern of phosphorus (P) accumulation in the substrate of the wetland was determined using kriging technique and P sorption was related to the content of aluminum (Al), calcium (Ca) and iron (Fe). The correlations found between Al, Ca and Fe content and P accumulation in the bed substrate were weak: R2 = 0.09, R2 = 0.21 and R2 = 0.28, respectively. Great heterogeneity was observed in the distribution of Ca, P and organic matter in the superficial and deeper layers of the bed. Hydraulic problems associated with wastewater discharge and conductivity of the bed substrate were suggested to have negative effects on the wetland performance. http://www.mdpi.com/2073-4441/3/1/146/kriging techniqueorganic matterphosphorus distributionsorptionwastewater |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Agnieszka Karczmarczyk Gunno Renman |
spellingShingle |
Agnieszka Karczmarczyk Gunno Renman Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater Water kriging technique organic matter phosphorus distribution sorption wastewater |
author_facet |
Agnieszka Karczmarczyk Gunno Renman |
author_sort |
Agnieszka Karczmarczyk |
title |
Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater |
title_short |
Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater |
title_full |
Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater |
title_fullStr |
Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater |
title_full_unstemmed |
Phosphorus Accumulation Pattern in a Subsurface Constructed Wetland Treating Residential Wastewater |
title_sort |
phosphorus accumulation pattern in a subsurface constructed wetland treating residential wastewater |
publisher |
MDPI AG |
series |
Water |
issn |
2073-4441 |
publishDate |
2011-01-01 |
description |
A horizontal subsurface flow constructed wetland was investigated after eight years of residential wastewater discharge (150 person equivalents). Twenty core samples distributed over the entire wetland were taken from the soil matrix. The distribution pattern of phosphorus (P) accumulation in the substrate of the wetland was determined using kriging technique and P sorption was related to the content of aluminum (Al), calcium (Ca) and iron (Fe). The correlations found between Al, Ca and Fe content and P accumulation in the bed substrate were weak: R2 = 0.09, R2 = 0.21 and R2 = 0.28, respectively. Great heterogeneity was observed in the distribution of Ca, P and organic matter in the superficial and deeper layers of the bed. Hydraulic problems associated with wastewater discharge and conductivity of the bed substrate were suggested to have negative effects on the wetland performance. |
topic |
kriging technique organic matter phosphorus distribution sorption wastewater |
url |
http://www.mdpi.com/2073-4441/3/1/146/ |
work_keys_str_mv |
AT agnieszkakarczmarczyk phosphorusaccumulationpatterninasubsurfaceconstructedwetlandtreatingresidentialwastewater AT gunnorenman phosphorusaccumulationpatterninasubsurfaceconstructedwetlandtreatingresidentialwastewater |
_version_ |
1724781405920034816 |