Uppsats

Nutrient Retention in Constructed Wetlands

Yrkesexamen på avancerad nivå

Uppsala universitet/Institutionen för geovetenskaper

Publicerad: 2022

Språk: Engelska

Sammanfattning

Eutrophication, a surplus of nutrients, is a problem in aquatic environments and one of the Swedish Environmental Goals is that there should be no eutrophication caused by human activities. Constructed wetlands (CW:s) is a measure that could be implemented to decrease the transport of nutrients to water bodies through retention. To optimize the placement of CW:s, this project aims to understand how different factors affect the retention of P (phosphorus) and N(nitrogen) in constructed CW:s and if there are geographical and seasonal variations in retention. Water samples were collected during three sampling periods from CW:s in Halland, in south-western and Mälardalen in eastern Sweden. The variation in retention of P and N between Halland and Mälardalen and between the different sampling occasions was then investigated. The effect of different factors in the catchment area such as percentage of clay, silt and sand, agricultural land, P-AL (phosphorus extracted with ammonium lactate) in the soil, erosion riskclass and the depth of the CW:s on the retention of P and N was also tested. The TP (total phosphorus) load and retention differed between the CW:s in Halland and Mälardalen. In Mälardalen, the load was slightly higher, and had a higher variation in TP load, which can be related to the differences in erosion risk classes as more easily eroded soils usually release P during periods with a lot of runoff. TP retention deviated more from zero in Mälardalen compared with Halland. The retention of TN (total nitrogen) seemed to be higher during August despite the lower TN load. This could be because during the warmer season, there is more retention of inorganic N through denitrification and plant uptake. Many factors such as soil type, erosion risk class, share of agricultural land and hydraulic load (HL) was found to be positively correlated with the load. However, most of the examined factors in the catchment area showed no correlation with the retention of N or P. The percentage of clay in the area had a negative effect on the retention of TP, which is not coherent with previous studies. This could be because the TP retention was mostly zero or negative, which was thought to be because most of the sampling was during periods with high HL and colder weather, especially in Mälardalen, which may have resulted in poor retention and resuspension of nutrients from the sediments. For TN the only factor which had a correlation was the depth of the CW, which had a negative correlation.

Information

Författare
Kero, Johanna
Lärosäte / institution
Uppsala universitet/Institutionen för geovetenskaper
Publiceringsdatum
2022
Uppsatstyp
Yrkesexamen på avancerad nivå
Språk
Engelska

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