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Green and Sustainable Chemistry Challenge - 0 views

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    The Elsevier Green and Sustainable Chemistry Challenge is open to individuals or organisations operating in the not-for-profit and for-profit sectors from all countries. Projects can be in any field of Green or Sustainable Chemistry so long as they are applicable for use in developing countries. Projects which are within their early stage are preferred. The winning project in the Elsevier Green and Sustainable Chemistry Challenge will receive a single payment of € 50,000; the winner of the second prize will receive a single payment of € 25,000.
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Postdoctoral Program in Environmental Chemistry - 0 views

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    The Camille and Henry Dreyfus Foundation is inviting applications for its Postdoctoral Program in Environmental Chemistry, which provides a principal investigator with an award of $120,000 over two years to appoint a postdoctoral fellow in environmental chemistry. The program aims to support innovative fundamental research in the chemical sciences or engineering related to the environment. Examples include but are not limited to the chemistry associated with the climate, the atmosphere, aquatic or marine settings, toxicology, soil, or groundwater. Also of interest are chemistry-related energy research (renewable sources, sequestration, etc.), and new or green approaches to chemical synthesis and processing, both with a clearly stated relation to the environment.
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Postdoctoral Program in Environmental Chemistry - 0 views

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    The Camille and Henry Dreyfus Foundation seeks to further the development of scientific leadership in the field of environmental chemistry with a postdoctoral fellowship program. The Postdoctoral Program in Environmental Chemistry provides a principal investigator with an award of $120,000 over two years to appoint a Postdoctoral Fellow in environmental chemistry.
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Environmental Chemical Sciences | NSF - National Science Foundation - 0 views

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    The Environmental Chemical Sciences (ECS) Program supports basic research in chemistry that promotes the understanding of natural and anthropogenic chemical processes in our environment.  Projects supported by this program enable fundamentally new avenues of basic research and transformative technologies. The program is particularly interested in studying molecular phenomena on surfaces and interfaces in order to understand the inherently complex and heterogeneous environment.  Projects utilize advanced experimental, modeling and computational approaches, as well as developing new approaches.  Topics include studies of environmental surfaces and interfaces under laboratory conditions, the fundamental properties of water and water solutions important in environmental processes, dissolution, composition, origin and behavior of molecular scale systems under a variety of naturally occurring environmental conditions, chemical reactivity of synthetic nanoparticles and their molecular level interactions with the environment, and application of theoretical models and computational approaches to discover and predict environmental phenomena at the molecular scale.
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    The Environmental Chemical Sciences (ECS) Program supports basic research in chemistry that promotes the understanding of natural and anthropogenic chemical processes in our environment.  Projects supported by this program enable fundamentally new avenues of basic research and transformative technologies. The program is particularly interested in studying molecular phenomena on surfaces and interfaces in order to understand the inherently complex and heterogeneous environment.  Projects utilize advanced experimental, modeling and computational approaches, as well as developing new approaches.  Topics include studies of environmental surfaces and interfaces under laboratory conditions, the fundamental properties of water and water solutions important in environmental processes, dissolution, composition, origin and behavior of molecular scale systems under a variety of naturally occurring environmental conditions, chemical reactivity of synthetic nanoparticles and their molecular level interactions with the environment, and application of theoretical models and computational approaches to discover and predict environmental phenomena at the molecular scale.
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Decadal and Regional Climate Prediction using Earth System Models - 0 views

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    The consequences of climate variability and change are becoming more immediate and profound than previously anticipated. Over recent decades, the world has witnessed the onset of prolonged droughts on several continents, increased frequency of floods, loss of agricultural and forest productivity, degraded ocean and permafrost ecosystems, global sea level rise and the rapid retreat of ice sheets and glaciers, loss of arctic sea ice, and changes in ocean currents. These important impacts highlight that climate variability and change can have significant effects on decadal and shorter time scales, with significant consequences for plant, animal, human, and physical systems. The EaSM funding opportunity enables interagency cooperation on one of the most pressing problems of the millennium: climate change and??how it is likely to affect our world. It allows the partner agencies -- National Science Foundation (NSF) and??U.S. Department of Agriculture (USDA) -- to combine resources to identify and fund the most meritorious and highest-impact projects that support their respective missions, while??avoiding duplication of effort and fostering collaboration between agencies and the investigators they support.This interdisciplinary scientific challenge calls for the development and application of next-generation Earth System Models that include coupled and interactive representations of such??components as ocean and atmospheric currents, agricultural working lands and forests,?? biogeochemistry, atmospheric chemistry,?? the water cycle and land ice.?? This solicitation seeks to attract scientists from the disciplines of geosciences, agricultural sciences, mathematics and statistics. Successful proposals will develop intellectual excitement in the participating disciplinary communities and engage diverse interdisciplinary teams with sufficient breadth to achieve the scientific objectives. 
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A--ARL Core Broad Agency Announcement for Basic and Applied Scientific Research for Fis... - 0 views

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    Research proposals are sought from educational institutions, nonprofit organizations, and commercial organizations for research in materials sciences; ballistics and aeromechanics sciences; information sciences; human sciences; survivability, lethality, and vulnerability analysis and assessment; chemistry; electronics; physics; environmental sciences; life sciences; mechanical sciences, mathematical sciences, computing sciences and network sciences. Proposals will be evaluated only if they are for scientific study and experimentation directed toward advancing the state of the art or increasing knowledge and understanding. ARO has primary responsibility for ARL's extramural basic research programs, with specific research interests as described in Part II.A.2. The ARL Directorates, while having primary responsibility for ARL's in-house research programs, also manage select extramural basic research programs. The research interests of the Directorates are described in Part II.A.1. Although ARL Directorates will consider funding proposals for extramural research programs, they can fund only a modest number of proposals in a single fiscal year.
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Coupling, Energetics, and Dynamics of Atmospheric Regions - 0 views

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    The Coupling, Energetics, and Dynamics of Atmospheric Regions (CEDAR) program is a broad-based research program with the goal of understanding the behavior of atmospheric regions from the middle atmosphere upward through the thermosphere and ionosphere into the exosphere in terms of coupling, energetics, chemistry, and dynamics on regional and global scales. These processes are related to the sources of perturbations that propagate upward from the lower atmosphere as well as to solar radiation and particle inputs from above. The activities within this program combine observations from ground based and space based platforms, theory and modeling.
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Coupling, Energetics, and Dynamics of Atmospheric Regions (CEDAR) (nsf18544) | NSF - Na... - 0 views

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    The Coupling, Energetics, and Dynamics of Atmospheric Regions (CEDAR) program is a broad-based research program with the goal of understanding the behavior of atmospheric regions from the middle atmosphere upward through the thermosphere and ionosphere into the exosphere in terms of coupling, energetics, chemistry, and dynamics on regional and global scales. These processes are related to the sources of perturbations that propagate upward from the lower atmosphere as well as to solar radiation and particle inputs from above. The activities within this program combine observations from ground based and space based platforms, theory and modeling.
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Critical Aspects of Sustainability | NSF - National Science Foundation - 0 views

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    The Critical Aspects of Sustainability (CAS) program includes the Division of Chemistry (CHE) and the Division of Materials Research (DMR) within the Directorate for Mathematical and Physical Sciences (MPS), the Division of Chemical, Bioengineering, Environmental and Transport Systems (CBET) and the Division of Civil, Mechanical and Manufacturing Innovation (CMMI) within the Directorate for Engineering (ENG), and the Division of Earth Sciences (EAR) within the Directorate for Geosciences (GEO).
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Grants.gov - Find Grant Opportunities - Opportunity Synopsis - 0 views

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    The USGS is offering a funding opportunity to a CESU partner to develop hydrodynamic models that describe the transport of bacteria in the nearshore Great Lakes, specifically linking them to water chemistry and human health. This CESU project will provide support for two years.
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FY 2016 and FY 2017 Pollution Prevention Grant Program - 0 views

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    EPA's Office of Pollution Prevention and Toxics, Chemistry, Economic and Sustainable Strategies Division oversees the Pollution Prevention (P2) Grant Program to support State and Tribal P2 Programs administer P2 projects that will help businesses identify better environmental strategies and solutions for reducing or eliminating waste at the source. EPA anticipates it will award approximately $7.94 million in federal P2 grant funding ($3.97 million in FY 2016 and $3.97 million in FY 2017) to support two-year grant agreements. Grants will be awarded and managed by EPA's ten Regional P2 Program Offices. P2 grants are dependent on Congressional appropriation and the quality of proposals received.
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Environmental Research Apprenticeship Program for College and University Students | Res... - 0 views

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    EPA-ORD seeks applications from eligible entities to enter into a cooperative agreement with EPA that will provide training opportunities for undergraduate and graduate students on-site at ORD's Ground Water and Ecosystems Research Division (GWERD) research facilities located in Ada, Oklahoma.  It is envisioned that the training program will increase both the effectiveness and number of future environmental scientists. The training received under the mentorship of EPA scientists will complement the trainees' academic coursework. The recipient will be responsible for ensuring that the training projects are supportive of the trainees' academic training.  Some appropriate fields of study for trainees include, but are not limited to, environmental science, water policy, chemistry, engineering, computer science, ecology, and physical and biological sciences.
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Using a Total Environment Framework (Built, Natural, Social Environments) to Assess Lif... - 0 views

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    The U.S. Environmental Protection Agency (EPA), through its Science to Achieve Results (STAR) program, seeks applications for research on how pollution affects human health in the context of the total environment - built, natural, and social environments interacting together with inherent characteristics and interactions. Proposed research should develop and test innovative models or impact assessment approaches to examine causal relationships of chemical pollutants and health effects with modifying interactions among the variables representing all of the major stressors and factors involved in a person's life. Proposals that integrate a diverse field of disciplines (social science, economics, epidemiology, engineering, environmental science, biology, statistics, toxicology, chemistry, etc.) to address the complexity of the total environment research problem are highly recommended.
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US NSF - Dear Colleague Letter - FY 2014 Sustainable Chemistry, Engineering, and Materi... - 0 views

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    Fundamental research topics of interest in SusChEM include the replacement of rare, expensive, and/or toxic chemicals/materials with earth-abundant, inexpensive, and benign chemicals/materials; recycling of chemicals/materials that cannot be replaced; development of non-petroleum based sources of important raw materials; the elimination of waste products and enhancement in efficiencies of chemical reactions and processes; discovery of new separation science that will facilitate recycling and production of valuable chemicals/materials; and development and characterization of low cost, sustainable and scalable-manufactured materials with improved properties.
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Fiscal Year 2015 Pollution Prevention Grant Program - 0 views

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    EPA's Office of Pollution Prevention and Toxics, Chemistry, Economic and Sustainable Strategies Division oversees the Pollution Prevention (P2) Grant Program to support State and Tribal P2 Programs administer P2 projects that will help businesses identify better environmental strategies and solutions for reducing or eliminating waste at the source. EPA anticipates it will award approximately $3.97 million in P2 grant funding in Fiscal Year 2015. Grants will be awarded and managed by EPA's ten Regional P2 Program Offices. P2 grants are dependent on Congressional appropriation and the quality of proposals received.
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US NSF - Dear Colleague Letter: FY 2015 Sustainable Chemistry, Engineering, and Materia... - 0 views

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    Examples of fundamental research topics of interest in SusChEM include the replacement of rare, expensive, and/or toxic chemicals/materials with earth-abundant, inexpensive, and benign chemicals/materials; recycling of chemicals/materials that cannot be replaced; development of non-petroleum based sources of important raw materials; chemicals/materials for food and/or water sustainability; the elimination of waste products and enhancement in efficiencies of chemical reactions and processes; discovery of new separation science that will facilitate recycling and production of valuable chemicals/materials; and development and characterization of low cost, sustainable and scalable-manufactured materials with improved properties.
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Environmental Engineering - 0 views

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    The Environmental Engineering program is part of the Environmental Engineering and Sustainability cluster together with 1) the Biological and Environmental Interactions of Nanoscale Materials program and 2) the Environmental Sustainability program. Environmental engineering is an interdisciplinary field that applies chemical, biological, and physical scientific principles to protect human and ecological health. The goal of the Environmental Engineering program is tosupport potentially transformative fundamental research that applies scientific and engineering principles to 1) prevent or minimize solid, liquid, and gaseous discharges of pollution to soil, water, and air; 2) mitigate the ecological and human-health impacts of such releases by smart/adaptive/reactive amendments or manipulation of the environment, and 3) remediate polluted environments through engineered chemical, biological, and/or geo-physical processes. Integral to achieving these goals is a fundamental understanding of the transport and biogeochemical reactivity of pollutants in the environment. Therefore, research on environmental micro/biology, environmental chemistry, and environmental geophysics may be relevant providing there is a clear connection to the application of environmental engineering to protect human and ecological health.
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Electrochemical Systems - 0 views

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    The Electrochemical Systems program is part of the Chemical Process Systems cluster, which also includes: 1) the Catalysis program; 2) the Interfacial Engineering program; and 3) the Process Systems, Reaction Engineering, and Molecular Thermodynamics program. The goal of the Electrochemical Systems program is to support fundamental engineering research that will enable innovative processes involving electro- or photochemistry for the sustainable production of electricity, fuels, and chemicals. Processes for sustainable energy and chemical production must be scalable, environmentally benign, reduce greenhouse gas production, and utilize renewable resources. Research projects that stress fundamental understanding of phenomena that directly impact key barriers to improved system or component-level performance (for example, energy efficiency, product yield, process intensification) are encouraged. Processes for energy storage should address fundamental research barriers for the applications of renewable electricity storage or for transport propulsion. For projects concerning energy storage materials, proposals should involve hypotheses that involve device or component performance characteristics that are tied to fundamental understanding of transport, kinetics, or thermodynamics. Advanced chemistries are encouraged. Proposed research should be inspired by the need for economic and impactful conversion processes. All proposal project descriptions should address how the proposed work, if successful, will improve process realization and economic feasibility and compare the proposed work against current state of the art. Highly integrated multidisciplinary projects are encouraged.
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Water is our common language: spring conservation and community engagement in US-Mexico... - 0 views

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    This project will build upon a wildlife conservation partnership established between 6 ⿿sister parks⿝ and other reserves in Arizona and Sonora and Baja California, Mexico that share similar ecological communities and resources. Montane springs occur in all the parks but their hydrology and biological value are poorly understood. We will seek to better understand the dynamics, groundwater connections, and threats to springs, while engaging with our international partners to address critical conservation issues through workshops, field work, and water chemistry analysis.
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Determining Airfield Pavement Deicer and Anti-Icer Contributions to Airport Stormwater - 0 views

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    One of the conclusions of this review was that the National Pollutant Discharge Elimination System (NPDES) stormwater permit compliance requirements increasingly include pavement deicer constituents in stormwater discharges. As controls on aircraft deicing runoff have become more widespread and effective, focus on the relative contribution and influence of pavement deicing runoff has increased. The objective of this research is to develop a method to estimate the contributions of airfield pavement deicers and anti-icers to overall oxygen demand (BOD and COD) in stormwater discharges. The method should: Account for sources, fate and transport of airfield pavement deicers and anti-icers; Identify and quantify airfield pavement deicers and anti-icers contained in discharged waters; Account for contributions from other non-airfield pavement-related deicers and anti-icing activities; Be adaptable to background water chemistry, various geographies, airport configurations, soils, topography, climate, weather, and hydrology; Be scalable to levels of resource availability (e.g., data, time, money, personnel, expertise); and Produce output expressed as a percentage of overall BOD and COD attributable to airfield pavement deicers and anti-icers with levels of confidence, and identify uncertainties.
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