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1.
Health Promot Int ; 38(4)2023 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-34935042

RESUMEN

Innovative actions are local initiatives which leverage the interactions between the ocean and human health to reduce the risks and enhance the benefits for the stakeholders and the natural environment. These initiatives can have strong positive effects on human health and wellbeing as well as on the marine environment. We analysed 150 such innovative actions in Europe. Using a combined case study and survey approach, innovative actions were identified using interviews and content analysis of websites and compiled into a database. Quantitative data were analysed according to the Drivers, Pressures, State, Impact and Response (DPSIR) framework, guided by selected in-depth interviews. Overall, the innovative actions provided a positive impact on the health of both the ocean and humans through increasing food provision, water quality and tourism opportunities; and addressing environmental issues such as commercial fish stock depletion, pollution and climate change. Innovative actions contributed to meeting various targets of the Sustainable Development Goals (SDGs) 3, 13 and 14. These actions played a potential role ahead of and alongside policy. Some of the innovative actions may have potential to be put in place elsewhere. Such up-scaling would need to be adapted to local circumstances and could be facilitated by an innovative action exchange platform.


This study presents 150 innovative actions taken by citizens and organizations in Europe to promote the health of both the ocean and humans. These were analysed and categorized according to the environmental issues they responded to, the Sustainable Development Goals (SDGs) addressed, and the ecosystem services provided. Plastic pollution and loss of biodiversity were the most targeted environmental issues, while tourism, recreation and wellbeing were the services most addressed by the innovative actions. These innovative actions tended to target those SDGs that currently show a lack of progress. Such actions, with both an environmental and health promotion agenda, may have the potential to complement regular policymaking in achieving these SDGs. The impact could be further enhanced by sharing best practices among an international network of local stakeholder action innovators. An interactive map shows the locations and websites of the European innovative actions identified. The map can serve as a first step in providing a platform for the network to connect and inspire people interested in creating their own interventions.


Asunto(s)
Desarrollo Sostenible , Humanos , Océanos y Mares , Europa (Continente)
2.
Sci Total Environ ; 771: 145366, 2021 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-33545469

RESUMEN

Many aquatic ecosystems in densely populated delta areas worldwide are under stress from overexploitation and pollution. Global population growth will lead to further increasing pressures in the coming decades, while climate change may amplify the consequences for chemical and ecological water quality. In this study, we explored the effects of climatic variability on eutrophication of groundwater, streams, rivers, lakes, estuaries, and marine waters in the Netherlands. We exploited the relatively dense monitoring information from the Dutch part of the Rhine-Meuse delta to evaluate the water quality response on climatic variability, in combination with anthropogenic pressures. Our results show that water quality of all water systems in the Netherlands is affected by climate variability in several ways: 1) through the process of global climate change (mainly temperature and sea level rise), 2) through changes Atlantic ocean circulation patterns (more southwestern winds), 3) through changes in continental precipitation and river discharge fluctuations, and 4) through local climatic fluctuations. The impact of climate variability propagates through the hydrological system 'from catchment to coast'. The fluctuations in water quality induced by climatic variability shown in this study give a preview for the potential effects of climate change.

3.
Acta Trop ; 193: 217-226, 2019 May.
Artículo en Inglés | MEDLINE | ID: mdl-30857860

RESUMEN

The water-related exposome is a significant determinant of human health. The disease burden through water results from water-associated communicable and non-communicable diseases and is influenced by water pollution with chemicals, solid waste (mainly plastics), pathogens, insects and other disease vectors. This paper analyses a range of water practitioner-driven health issues, including infectious diseases and chemical intoxication, using the conceptual framework of Drivers, Pressures, State, Impacts, and Responses (DPSIR), complemented with a selective literature review. Pressures in the environment result in changes in the State of the water body: chemical pollution, microbiological contamination and the presence of vectors. These and other health hazards affect the State of human health. The resulting Impacts in an exposed population or affected ecosystem, in turn incite Responses. Pathways from Drivers to Impacts are quite divergent for chemical pollution, microbiological contamination and the spread of antimicrobial resistance, in vectors of disease and for the combined effects of plastics. Potential Responses from the water sector, however, show remarkable similarities. Integrated water management interventions have the potential to address Drivers, Pressures, Impacts, and State of several health issues at the same time. Systematic and integrated planning and management of water resources, with an eye for human health, could contribute to reducing or preventing negative health impacts and enhancing the health benefits.


Asunto(s)
Enfermedades Transmisibles/transmisión , Conservación de los Recursos Hídricos , Microbiología del Agua , Contaminación Química del Agua/prevención & control , Animales , Control de Enfermedades Transmisibles , Vectores de Enfermedades , Ecosistema , Política de Salud , Humanos , Plásticos , Contaminación Química del Agua/efectos adversos
4.
PLoS One ; 7(11): e49319, 2012.
Artículo en Inglés | MEDLINE | ID: mdl-23166639

RESUMEN

Population fluctuations are often driven by an interplay between intrinsic population processes and extrinsic environmental forcing. To investigate this interplay, we analyzed fluctuations in coastal phytoplankton concentration in relation to the tidal cycle. Time series of chlorophyll fluorescence, suspended particulate matter (SPM), salinity and temperature were obtained from an automated measuring platform in the southern North Sea, covering 9 years of data at a resolution of 12 to 30 minutes. Wavelet analysis showed that chlorophyll fluctuations were dominated by periodicities of 6 hours 12 min, 12 hours 25 min, 24 hours and 15 days, which correspond to the typical periodicities of tidal current speeds, the semidiurnal tidal cycle, the day-night cycle, and the spring-neap tidal cycle, respectively. During most of the year, chlorophyll and SPM fluctuated in phase with tidal current speed, indicative of alternating periods of sinking and vertical mixing of algal cells and SPM driven by the tidal cycle. Spring blooms slowly built up over several spring-neap tidal cycles, and subsequently expanded in late spring when a strong decline of the SPM concentration during neap tide enabled a temporary "escape" of the chlorophyll concentration from the tidal mixing regime. Our results demonstrate that the tidal cycle is a major determinant of phytoplankton fluctuations at several different time scales. These findings imply that high-resolution monitoring programs are essential to capture the natural variability of phytoplankton in coastal waters.


Asunto(s)
Eutrofización/fisiología , Material Particulado/análisis , Fitoplancton/crecimiento & desarrollo , Olas de Marea , Clorofila/metabolismo , Fluorescencia , Mar del Norte , Dinámica Poblacional , Factores de Tiempo
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