Wetlands can improve water quality through natural processes including sedimentation, nutrient transformations, and microbial and plant uptake. Tailwater from irrigated pastures may contribute to nonpoint source water pollution in the form of sediments, nutrients, and pathogens that degrade downstream water quality. We examined benefits to water quality provided by a natural, flow-through wetland and a degraded, channelized wetland situated within the flood-irrigation agricultural landscape of the Sierra Nevada foothills of Northern California. The non-degraded, reference wetland significantly improved water quality by reducing loads of total suspended sediments, nitrate, and Escherichia coli on average by 77, 60, and 68%, respectively. Retention of total N, total P, and soluble reactive P (SRP) was between 35 and 42% of loads entering the reference wetland. Retention of pollutant loads by the channelized wetland was significantly lower than by the reference wetland for all pollutants except SRP. A net export of sediment and nitrate was observed from the channelized wetland. Decreased irrigation inflow rates significantly improved retention efficiencies for nitrate, E. coli, and sediments in the reference wetland. We suggest that maintenance of these natural wetlands and regulation of inflow rates can be important aspects of a best management plan to improve water quality as water runs off of irrigated pastures.
Wetlands can improve n class="Chemical">water quality through natural processes inpan>cludinpan>g sedimenpan>tation, nutrienpan>t tranpan>sformations, anpan>d microbial anpan>d planpan>t uptake. Tailpan> class="Chemical">water from irrigated pastures may contribute to nonpoint source water pollution in the form of sediments, nutrients, and pathogens that degrade downstream water quality. We examined benefits to water quality provided by a natural, flow-through wetland and a degraded, channelized wetland situated within the flood-irrigation agricultural landscape of the Sierra Nevada foothills of Northern California. The non-degraded, reference wetland significantly improved water quality by reducing loads of total suspended sediments, nitrate, and Escherichia coli on average by 77, 60, and 68%, respectively. Retention of total N, total P, and soluble reactive P (SRP) was between 35 and 42% of loads entering the reference wetland. Retention of pollutant loads by the channelized wetland was significantly lower than by the reference wetland for all pollutants except SRP. A net export of sediment and nitrate was observed from the channelized wetland. Decreased irrigation inflow rates significantly improved retention efficiencies for nitrate, E. coli, and sediments in the reference wetland. We suggest that maintenance of these natural wetlands and regulation of inflow rates can be important aspects of a best management plan to improve water quality as water runs off of irrigated pastures.
Authors: Nathan J Smucker; Anne Kuhn; Michael A Charpentier; Carlos J Cruz-Quinones; Colleen M Elonen; Sarah B Whorley; Terri M Jicha; Jonathan R Serbst; Brian H Hill; John D Wehr Journal: Environ Manage Date: 2015-11-27 Impact factor: 3.266
Authors: María-Luisa Fournier; Silvia Echeverría-Sáenz; Freylan Mena; María Arias-Andrés; Elba de la Cruz; Clemens Ruepert Journal: Environ Sci Pollut Res Int Date: 2017-01-10 Impact factor: 4.223
Authors: Jennifer N Hogan; Miles E Daniels; Fred G Watson; Patricia A Conrad; Stori C Oates; Melissa A Miller; Dane Hardin; Barbara A Byrne; Clare Dominik; Ann Melli; David A Jessup; Woutrina A Miller Journal: Appl Environ Microbiol Date: 2012-03-16 Impact factor: 4.792
Authors: Karen Shapiro; Patricia A Conrad; Jonna A K Mazet; Wesley W Wallender; Woutrina A Miller; John L Largier Journal: Appl Environ Microbiol Date: 2010-08-27 Impact factor: 4.792
Authors: Jennifer N Hogan; Miles E Daniels; Fred G Watson; Stori C Oates; Melissa A Miller; Patricia A Conrad; Karen Shapiro; Dane Hardin; Clare Dominik; Ann Melli; David A Jessup; Woutrina A Miller Journal: Appl Environ Microbiol Date: 2013-01-11 Impact factor: 4.792
Authors: Laura García-Descalzo; Victorino Parro; Miriam García-Villadangos; Charles S Cockell; Christine Moissl-Eichinger; Alex Perras; Petra Rettberg; Kristina Beblo-Vranesevic; Maria Bohmeier; Elke Rabbow; Frances Westall; Frederik Gaboyer; Ricardo Amils; Moustafa Malki; Viggo Marteinsson; Pauline Vannier; Pascale Ehrenfreund; Euan Monaghan; Andreas Riedo; Patricia Cabezas; Nicolas Walter; Felipe Gómez Gómez Journal: Microorganisms Date: 2019-09-18