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Effect of climate change on runoff of Campylobacter and Cryptosporidium from land to surface water

pmid: 26986498
Faeces originating from wildlife, domestic animals or manure-fertilized fields, is considered an important source of zoonotic pathogens to which people may be exposed by, for instance, bathing or drinking-water consumption. An increase in runoff, and associated wash-off of animal faeces from fields, is assumed to contribute to the increase of disease outbreaks during periods of high precipitation. Climate change is expected to increase winter precipitation and extreme precipitation events during summer, but has simultaneously also other effects such as temperature rise and changes in evapotranspiration. The question is to what extent the combination of these effects influence the input of zoonotic pathogens to the surface waters. To quantitatively analyse the impacts of climate change on pathogen runoff, pathogen concentrations reaching surface waters through runoff were calculated by combining an input model for catchment pathogen loads with the Wageningen Lowland Runoff Simulator (WALRUS). Runoff of Cryptosporidium and Campylobacter was evaluated under different climate change scenarios and by applying different scenarios for sources of faecal pollution in the catchments, namely dairy cows and geese and manure fertilization. Model evaluation of these scenarios shows that climate change has little overall impact on runoff of Campylobacter and Cryptosporidium from land to the surface waters. Even though individual processes like runoff fluxes, pathogen release and dilution are affected, either positively or negatively, the net effect on the pathogen concentration in surface waters and consequently also on infection risks through recreation seems limited.
- Department of Earth Sciences Russian Federation
- Russian Academy of Sciences Russian Federation
- National Institute for Public Health and the Environment Netherlands
- Utrecht University Netherlands
Pathogen transport, Runoff, Climate Change, Cryptosporidium, Lowland catchments, SDG 13 - Climate Action, Climate change, Quantitative microbial risk analysis, Animals, Waste Management and Disposal, Water Science and Technology, Water, Campylobacter, Pollution, Ecological Modelling, Cattle, Female
Pathogen transport, Runoff, Climate Change, Cryptosporidium, Lowland catchments, SDG 13 - Climate Action, Climate change, Quantitative microbial risk analysis, Animals, Waste Management and Disposal, Water Science and Technology, Water, Campylobacter, Pollution, Ecological Modelling, Cattle, Female
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