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1.
J Environ Manage ; 181: 874-882, 2016 Oct 01.
Article in English | MEDLINE | ID: mdl-27397841

ABSTRACT

Agricultural point source pesticide pollution arising from contaminated machinery washings and accidental spillages pose a significant threat to river water and groundwater quality. In this study, we assess the effectiveness of a three-stage on-farm biobed for treating pesticide contaminated wastewater from a large (20 km(2)) commercial arable estate. The facility consisted of an enclosed machinery wash-down unit (stage 1), a 49 m(2) lined compost-straw-topsoil biobed (stage 2), and a 200 m(2) drainage field with a trickle irrigation system (stage 3). Pesticide concentrations were analysed in water samples collected fortnightly between November 2013 and November 2015 from the biobed input and output sumps and from 20 porous pots buried at 45 cm and 90 cm depth within the drainage field. The results revealed that the biobed removed 68-98% of individual pesticides within the contaminated washings, with mean total pesticide concentrations reducing by 91.6% between the biobed input and output sumps. Drainage field irrigation removed a further 68-99% of individual pesticides, with total mean pesticide concentrations reducing by 98.4% and 97.2% in the 45 cm and 90 cm depth porous pots, respectively. The average total pesticide concentration at 45 cm depth in the drainage field (57 µg L(-1)) was 760 times lower than the mean concentration recorded in the input sump (43,334 µg L(-1)). There was no evidence of seasonality in the efficiency of biobed pesticide removal, nor was there evidence of a decline in removal efficiency over the two-year monitoring period. However, higher mean total pesticide concentrations at 90 cm (102 µg L(-1)) relative to 45 cm (57 µg L(-1)) depth indicated an accumulation of pesticide residues deeper within the soil profile. Overall, the results presented here demonstrate that a three-stage biobed can successfully reduce pesticide pollution risk from contaminated machinery washings on a commercial farm.


Subject(s)
Farms , Pesticides , Waste Disposal, Fluid/methods , Water Pollutants, Chemical , Agricultural Irrigation/instrumentation , Agricultural Irrigation/methods , Agriculture/methods , Equipment Design , Pesticide Residues/analysis , Pesticide Residues/isolation & purification , Pesticides/analysis , Pesticides/isolation & purification , Soil , United Kingdom , Waste Disposal, Fluid/instrumentation , Wastewater/analysis , Wastewater/chemistry , Water Pollutants, Chemical/analysis
3.
Science ; 341(6141): 45-50, 2013 Jul 05.
Article in English | MEDLINE | ID: mdl-23828934

ABSTRACT

Landscapes generate a wide range of valuable ecosystem services, yet land-use decisions often ignore the value of these services. Using the example of the United Kingdom, we show the significance of land-use change not only for agricultural production but also for emissions and sequestration of greenhouse gases, open-access recreational visits, urban green space, and wild-species diversity. We use spatially explicit models in conjunction with valuation methods to estimate comparable economic values for these services, taking account of climate change impacts. We show that, although decisions that focus solely on agriculture reduce overall ecosystem service values, highly significant value increases can be obtained from targeted planning by incorporating all potential services and their values and that this approach also conserves wild-species diversity.


Subject(s)
Agriculture , Climate Change , Conservation of Natural Resources , Decision Support Techniques , Ecosystem , Models, Economic , Animals , Biodiversity , Decision Making , Marketing , United Kingdom
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