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ATMOSPHERIC DEPOSITION FLUXES TO THE BELGIAN MARINE WATERS ORIGINATING FROM SHIP EMISSIONSSHIPFLUX L. Bench, B. Foreman, A. Atlanta Buczyska, R. Van Green, P. Viable, N. Feldman, F. Deutsche, B. Degree,
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Bench, B. Foreman, A. Atlanta Buczyska, R. Van Green, P. Viable, N. Feldman, F. Deutsche, B. Degree, M. Van Popped, D. Lawyer, K. De Rider, L. Janssen, B. Maine, M. Vanhulsel, S. Janssen, L. Blythe, C. MensinkSCIENCE FOR A SUSTAINABLE DEVELOPMENT (SSD) North Sea FINAL REPORTATMOSPHERIC DEPOSITION FLUXES TO THE BELGIAN MARINE WATERS ORIGINATING FROM SHIP EMISSIONSSHIPFLUX A number of new or proposed studies have been commissioned since the previous report was published. In particular, the ESSD has been interested in monitoring both the physical state of the Earth and a wide range of oceanic and atmosphere parameters. The most recent of these was undertaken in conjunction with the U.S. Navy. The goal of this study was to provide a comprehensive analysis for several scenarios that include: 1) human intervention in a broad range of ocean, atmosphere and biological processes; 2) no human intervention; 3) limited human intervention, including no alteration of environmental limits and/or anthropogenic impacts; and 4) no human intervention, including limited interventions by artificial intelligences and/or modified humans. Several alternative physical models using a range of physical and chemical, physical and biological, and biological-chemical factors were employed, as well as biological and physical models that simulate the effects of man-made and natural catastrophes (such as earthquakes, tsunamis, volcanic eruptions, volcanic ash clouds, and ozone depletion). The results confirmed that, under most realistic scenarios, a large fraction of the ocean (i.e., a good portion) would not be accessible to both humans and natural forces and/or be affected by such forces (see Figure 1). These results were robust across several global-scale physical scenarios and biological models. In this context, it is worth mentioning that the ESSD has also been involved in ongoing ocean observations and studies of ocean conditions, such as the National Coral Reef Monitoring Program (NCR). The NCR is a global network of automated research cruisers which monitor the global and vertical ocean currents and marine biological processes (reviewed in detail by van Popped et al. 2015).

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Atmospheric deposition fluxes refer to the deposition of particles and gases from the atmosphere onto land or water surfaces.
The entities responsible for monitoring and managing environmental impacts, such as government agencies or industries, are typically required to file atmospheric deposition fluxes.
To fill out atmospheric deposition fluxes, one needs to collect data on deposition rates, analyze the composition of deposited particles and gases, and report the findings according to the specified reporting guidelines or regulations.
The purpose of atmospheric deposition fluxes is to assess the impact of air pollution on ecosystems and human health, and to inform environmental management and policy-making decisions.
The information typically reported on atmospheric deposition fluxes includes deposition rates of specific pollutants, their composition, location of deposition sites, and any associated environmental or health risks.
The deadline to file atmospheric deposition fluxes in 2023 may vary depending on the specific reporting requirements and regulations of the jurisdiction or organization. It is recommended to refer to the relevant guidelines or contact the responsible authority for the accurate deadline.
The penalty for the late filing of atmospheric deposition fluxes can also vary depending on the jurisdiction or organization. It may involve fines, additional monitoring requirements, or other consequences specified in the relevant regulations or agreements. It is advisable to consult the responsible authority for the exact penalty details.
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