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will examine the complex network of actors, networks, and actants in the pollution of freshwater and its consequences on socio-hydrological systems. Assigning anthropogenic activities as a key factor in
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). The focus in terms of processes of transport, modification and deposition of plastics, however, remains primarily on the role of hydrological processes and particularly the oceans. The role of the wind
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. This is especially challenging for rivers affected by multiple pressures, such as a modified hydrological regime, altered form and riverbed substrate, invasive and non-native species, climate change
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-hydrological systems. Assigning anthropogenic activities as a key factor in polluted freshwater ignores pollution as a manifestation of complex socio-hydrological effect. The research will employ ethnographic
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Protection (RED ALERT CDT). The NERC RED ALERT CDT consists the University of Bath, Bangor University, Cardiff University and the University of Exeter plus the UK Centre for Ecology and Hydrology. RED-ALERT
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Protection (RED ALERT CDT). The NERC RED ALERT CDT consists the University of Bath, Bangor University, Cardiff University and the University of Exeter plus the UK Centre for Ecology and Hydrology. RED-ALERT
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the holistic assessment of water quality and its ecological impacts. This is especially challenging for rivers affected by multiple pressures, such as a modified hydrological regime, altered form and
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Protection (RED ALERT CDT). The NERC RED ALERT CDT consists the University of Bath, Bangor University, Cardiff University and the University of Exeter plus the UK Centre for Ecology and Hydrology. RED-ALERT
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Protection (RED ALERT CDT). The NERC RED ALERT CDT consists the University of Bath, Bangor University, Cardiff University and the University of Exeter plus the UK Centre for Ecology and Hydrology. RED-ALERT