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1.
J Environ Manage ; 291: 112636, 2021 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-33964626

RESUMEN

Natural Flood Management (NFM) is now well established as a paradigm for reducing flood risk. It is characterised by adopting a catchment-wide hydrological perspective and implementing solutions that work with natural processes such as wetlands, riparian vegetation and river channel rehabilitation. However, despite substantial attention in the river science literature and growing appreciation for NFM among environmental managers, little research has been conducted on how the public perceives NFM. This study explored preferences for a variety of flood risk management schemes through an online survey of the UK public, and assessed how different characteristics of these schemes contribute to preferences via Q-method utilising an array of photographs. Relationships between survey respondents' underlying transcendental values and their preferences for NFM schemes were also studied. Results revealed that while NFM approaches were appreciated for their appearance and wildlife benefits, traditional grey engineering - particularly dams - was seen as more effective in ameliorating flood risk. Q-sorts of photographs revealed three factors that characterised participants' preferences: (i) "Engineered - Natural", (ii) "Messy - Neat" and (iii) "Grey - Green". Finally, transcendental values were significantly related to flood scheme preferences, with 'Self-Transcendence' values positively correlated with preferences for tree planting and wetlands and negatively with dams and weirs. 'Conservative' values were positively correlated with preferences for dredging and weirs and negatively with wetlands. These findings emphasise the plurality of public perceptions related to NFM and the diverse value orientations within which they are grounded. River and catchment managers seeking to promote NFM solutions should focus on addressing public concerns about the efficacy of NFM for mitigating flood risk, and consider how to communicate solutions in ways that resonate with a diverse set of public values.


Asunto(s)
Inundaciones , Opinión Pública , Humanos , Hidrología , Ríos , Humedales
2.
Heliyon ; 10(14): e34265, 2024 Jul 30.
Artículo en Inglés | MEDLINE | ID: mdl-39082009

RESUMEN

Trace metal pollution is globally widespread, largely resulting from human activities. Due to the persistence and high toxicity of trace metals, these pollutants can have serious effects across ecosystems. However, few studies have directly assessed the presence and impact of trace metal pollution across ecosystems, specifically across multiple environmental sources and animal taxa. This study was designed to assess the environmental health impacts of trace metal pollution by assessing its extent and possible transfer into wildlife in the areas surrounding two abandoned metalliferous mine complexes in Wales in the UK. Water, sediment, and soil at the mine sites and in areas downstream had notably elevated concentrations of Pb, Zn, and, to a lesser extent, Cd and Cu, when compared to nearby control sites. These high trace metal concentrations were mirrored in the body burdens of aquatic invertebrates collected in the contaminated streams both at, and downstream of, the mines. Wood mice collected in contaminated areas appeared to be able to regulate their Zn and Cu tissue concentrations, but, when compared to wood mice from a nearby control site, they had significantly elevated concentrations of Cd and, particularly, Pb, detected in their kidney, liver, and bone samples. The Pb concentrations found in these tissues correlated strongly with local soil concentrations (kidney: ρ = 0.690; liver: ρ = 0.668, bone: ρ = 0.649), and were potentially indicative of Pb toxicity in between 10 % and 82 % of the rodents sampled at the mine sites and in areas downstream. The high trace metal concentrations found in the environment and in common prey species (invertebrates and rodents) indicates that trace metal pollution can have far-reaching, ecosystem-wide health impacts long after the polluting activity has ceased, and far beyond the originating site of the pollution.

3.
Sci Total Environ ; 869: 161684, 2023 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-36690105

RESUMEN

Understanding the links between environmental and wildlife elemental concentrations is key to help assess ecosystem functions and the potential effects of legacy pollutants. In this study, livers from 448 European badgers (Meles meles) collected across the English Midlands were used to investigate the relationship between elemental concentrations in topsoils and wildlife. Mean soil sample concentrations within 2 km of each badger, determined using data from the British Geological Survey's 'Geochemical Baseline Survey of the Environment', were compared to badger liver elemental concentrations, focusing primarily on Ag, As, Cd, Cr, Cu, K, Mn, Pb, Se, Zn. Generally, the badgers appeared to have elemental concentrations comparable with those published for other related animals, though Cu concentrations tended to be lower than expected. While there was no relationship between soil and badger liver concentrations for most biologically essential elements, biologically non-essential elements, specifically Pb, Cd, As, and Ag, were positively correlated between soil and badger livers. Lead and Cd, the elements with the strongest relationships between soils and badger livers, were primarily elevated in badgers collected in Derbyshire, a county with a millennia-long history of Pb mining and significant Pb and Cd soil pollution. Cadmium concentrations in badgers were also, on average, almost nine times higher than the local soil concentrations, likely due to Cd biomagnification in earthworms, a dietary staple of badgers. While badgers are good models for studying associations between soil and wildlife elemental concentrations, due to their diet, burrowing behaviours, and site fidelity, all flora and fauna local to human-modified environments could be exposed to and impacted by legacy pollutants.


Asunto(s)
Contaminantes Ambientales , Metales Pesados , Mustelidae , Contaminantes del Suelo , Humanos , Animales , Suelo , Cadmio , Ecosistema , Plomo , Contaminantes del Suelo/análisis , Metales Pesados/análisis , Monitoreo del Ambiente
4.
Sci Total Environ ; 783: 146863, 2021 Aug 20.
Artículo en Inglés | MEDLINE | ID: mdl-33872912

RESUMEN

Microplastic pollution of freshwaters is known to be a great concern in China and these pollutants can be discharged into the coastal environment through fluvial processes, posing threats to the global marine ecosystem. This paper reviewed the literature measuring microplastic pollution in the Chinese freshwater environment and found that microfibres dominate other plastic morphologies in more than 65% of samples collected in surface water, sediments and effluents of wastewater treatment plants and domestic sewers. Current potential sources of microfibre pollution are identified including fishery activities, laundry sewage, and waste textiles according to previous research. Recommendations are offered using the circular economy management framework, such as textile waste reuse and recycling systems in China, for improving current control measures for microplastics in freshwaters.

5.
Environ Pollut ; 237: 792-802, 2018 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-29153473

RESUMEN

The ecological effects of interacting stressors within lotic ecosystems have been widely acknowledged. In particular, the ecological effects of elevated fine sediment inputs and phosphate have been identified as key factors influencing faunal community structure and composition. However, while knowledge regarding adult and larval life stage responses to environmental stressors has grown, there has been very limited research on their eggs. In this study, the eggs of the mayfly Serratella ignita (Ephemerellidae: Ephemeroptera) were collected and incubated in laboratory aquaria to hatching under differing concentrations of inert suspended sediment (SS) and orthophosphate (OP), individually and in combination. Results indicate that SS and OP have greater effects on egg hatching in combination than when either were considered in isolation. SS displayed a greater effect on egg survival than OP in isolation or when OP was added to elevated SS treatments. Egg mortality in control treatments was around 6% compared to 45% in treatments with 25 mg l-1 SS and 52% in 0.3 mg l-1 OP treatments. Even relatively modest levels of each stressor (10 mg l-1 SS; 0.1 mg l-1 OP), below national legal thresholds, had significant effects on egg survival to hatching. The results support calls for legal levels of SS to be reassessed and suggest that more research is required to assess the impacts of pollution on invertebrate egg development given their different sensitivity and exposure pathways compared to other life stages.


Asunto(s)
Ephemeroptera/fisiología , Fosfatos/toxicidad , Contaminantes Químicos del Agua/toxicidad , Contaminantes del Agua/toxicidad , Animales , Ecosistema , Larva/fisiología , Estadios del Ciclo de Vida/efectos de los fármacos , Fosfatos/análisis , Pruebas de Toxicidad , Contaminantes del Agua/análisis , Contaminantes Químicos del Agua/análisis
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