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Special Research Grants Program - Aquaculture Research - 0 views

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    The purpose of the Aquaculture Research program is to support the development of an environmentally and economically sustainable aquaculture industry in the U.S. and generate new science-based information and innovation to address industry constraints. Over the long term, results of projects supported by this program may help improve the profitability of the U.S. aquaculture industry, reduce the U.S. trade deficit, increase domestic food security, provide markets for U.S.-produced grain products, increase domestic aquaculture business investment opportunities, and provide more jobs for rural and coastal America. The Aquaculture Research program will fund projects that directly address major constraints to the U.S. aquaculture industry and focus on one or more of the following program priorities: (1) Genetics of commercial aquaculture species. (2) Critical disease issues impacting aquaculture species. (3) Design of environmentally and economically sustainable aquaculture production systems. (4) Economic research for increasing aquaculture profitability.
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DE-FOA-0001163 Advanced Reactor Research and Development - 0 views

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    ADVANCED REACTOR RESEARCH AND DEVELOPMENT FUNDING OPPORTUNITY ANNOUNCEMENT During 2012 and continuing in 2014, DOE used a Technical Review Panel (TRP) process to identify Research and Development (R&D) needs for viable advanced reactor concepts in order to inform DOE-NE R&D investment decisions. That process involved the use of a Request for Information to solicit concept information from industry and engagement of technical experts from industry, universities and National Laboratories to evaluate those concepts. Having completed this process in 2014, DOE desires to partner with industry to conduct cost-shared R&D for selected technology needs identified by the TRP process. The intent of this funding opportunity announcement (FOA) is to solicit proposals to conduct such cost-shared R&D activities. Consistent with the Consolidated Appropriations Act, 2014, funding in the amount of up to $12 million will be made available to fund cost-shared R&D with industry.
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DE-FOA-0001163 Advanced Reactor Research and Development - 0 views

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    ADVANCED REACTOR RESEARCH AND DEVELOPMENT FUNDING OPPORTUNITY ANNOUNCEMENT During 2012 and continuing in 2014, DOE used a Technical Review Panel (TRP) process to identify Research and Development (R&D) needs for viable advanced reactor concepts in order to inform DOE-NE R&D investment decisions. That process involved the use of a Request for Information to solicit concept information from industry and engagement of technical experts from industry, universities and National Laboratories to evaluate those concepts. Having completed this process in 2014, DOE desires to partner with industry to conduct cost-shared R&D for selected technology needs identified by the TRP process. The intent of this funding opportunity announcement (FOA) is to solicit proposals to conduct such cost-shared R&D activities. Consistent with the Consolidated Appropriations Act, 2014, funding in the amount of up to $12 million will be made available to fund cost-shared R&D with industry.
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Special Research Grants Program - Aquaculture Research - 0 views

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    The purpose of the Aquaculture Research program is to support the development of an environmentally and economically sustainable aquaculture industry in the U.S. and generate new science-based information and innovation to address industry constraints. Over the long term, results of projects supported by this program may help improve the profitability of the U.S. aquaculture industry, reduce the U.S. trade deficit, increase domestic food security, provide markets for U.S.-produced grain products, increase domestic aquaculture business investment opportunities, and provide more jobs for rural and coastal America. The Aquaculture Research program will fund projects that directly address major constraints to the U.S. aquaculture industry and focus on one or more of the following program priorities: (1) genetics of commercial aquaculture species; (2) critical disease issues impacting aquaculture species; (3) design of environmentally and economically sustainable aquaculture production systems; and (4) economic research for increasing aquaculture profitability.
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OnPAR: Online Partners for Advancement of Research - 0 views

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    Leidos will match high-scoring, unfunded National Institutes of Health (NIH) proposals with private biomedical foundations and/or industries seeking to fund promising research. Foundations will have access to peer-reviewed research proposals that directly relate to their funding priorities, industry will have access to a rich pipeline of early stage and translational research proposals that align with its priorities, while applicants with strong research proposals will be provided with a second opportunity to secure funding. The foundations, industries, applicants, and NIH all will benefit from this synergy.
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FY15 Consolidated Innovative Nuclear Research - 0 views

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    The Department of Energy's (DOE) Office of Nuclear Energy (NE) conducts crosscutting nuclear energy research and development (R&D) and associated infrastructure support activities to develop innovative technologies that offer the promise of dramatically improved performance for advanced reactors and fuel cycle concepts while maximizing the impact of DOE resources. NE strives to promote integrated and collaborative research conducted by national laboratory, university, industry, and international partners under the direction of NE's programs. NE funds research activities through both competitive and direct mechanisms, as required to best meet the needs of NE. This approach ensures a balanced R&D portfolio and encourages new nuclear power deployment with creative solutions to the universe of nuclear energy challenges. This FOA addresses the competitive portion of NE's R&D portfolio as executed through the Nuclear Energy University Programs (NEUP), Nuclear Energy Enabling Technologies Crosscutting Technology Development (NEET CTD), and Advanced Test Reactor National Scientific User Facility (ATR NSUF). NEUP utilizes up to 20 percent of funds appropriated to NE's R&D program for university-based infrastructure support and R&D in key NE program-related areas: Fuel Cycle Research and Development (FC R&D), Reactor Concepts Research, Development and Demonstration (RC RD&D), and Nuclear Energy Advanced Modeling and Simulation (NEAMS). NEET CTD supports national laboratory-, university- and industry-led crosscutting research. By establishing the NSUF in 2007, DOE-NE opened up the world of material test reactors, beam lines, and post-irradiation examination facilities to researchers from U.S. universities, industry and national laboratories by granting no-cost access to world-class nuclear research facilities. In addition to the consolidation of the NSUF Call for Applications (CFA) for access to capabilities, NEUP or NEET CTD projects requiring irradiation testing and/
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FY2016 Consolidated Innovative Nuclear Research Funding Opportunity Announcement - 0 views

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    The Department of Energy's (DOE) Office of Nuclear Energy (NE) conducts crosscutting nuclear energy research and development (R&D) and associated infrastructure support activities to develop innovative technologies that offer the promise of dramatically improved performance for advanced reactors and fuel cycle concepts while maximizing the impact of DOE resources.NE strives to promote integrated and collaborative research conducted by national laboratory, university, industry, and international partners under the direction of NE's programs. NE funds research activities through both competitive and direct mechanisms, as required to best meet the needs of NE. This approach ensures a balanced R&D portfolio and encourages new nuclear power deployment with creative solutions to the universe of nuclear energy challenges. This FOA addresses the competitive portion of NE's R&D portfolio as executed through the Nuclear Energy University Programs (NEUP), Nuclear Energy Enabling Technologies (NEET) Crosscutting Technology Development (CTD), and the Nuclear Science User Facilities (NSUF). NEUP utilizes up to 20% of funds appropriated to NE's R&D program for university-based infrastructure support and R&D in key NE program-related areas: Fuel Cycle Research and Development (FC R&D), Reactor Concepts Research, Development and Demonstration (RC RD&D), and Nuclear Energy Advanced Modeling and Simulation (NEAMS). NEET CTD supports national laboratory-, university- and industry-led crosscutting research. By establishing the NSUF in 2007, DOE-NE opened up the world of material test reactors, beam lines, and post-irradiation examination facilities to researchers from U.S. universities, industry and national laboratories by granting no-cost access to world-class nuclear research facilities. In addition to the consolidation of the NSUF Call for Applications (CFA) for access to capabilities, NEUP or NEET CTD projects requiring irradiation testing and/or post-irradiation examinatio
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Lake Erie Protection Fund - 0 views

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    Small grants are available to fund a wide variety of projects which provide a direct benefit to Lake Erie and its tributary watersheds in Ohio. Small grants up to $15,000 will be available during quarters one and four of the fiscal year. Two grants up to $30,000 will be available during quarter three of the fiscal year. All projects require a 25% match. Themes for the $30,000 grants include "Internal Loading as a Source of Phosphorus in Lake Erie" and "Inventory of Water Conservation Measures by Industry Sector." Please see the RFP for "Internal Loading as a Source of Phosphorus in Lake Erie" and the RFP for the "Inventory of Water Conservation Measures by Industry Sector."
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WaterSMART: Title XVI Water Reclamation and Reuse program Funding for Fiscal Year 2014 - 0 views

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    The Bureau of Reclamation's (Reclamation's) Title XVI Water Reclamation and Reuse program (Title XVI) is an important part of WaterSMART. For purposes of the Title XVI Program, a water reuse project is a project that reclaims and reuses municipal, industrial, domestic, or agricultural wastewater and naturally impaired groundwater and/or surface waters. Reclaimed water can be used for a variety of purposes such as environmental restoration, fish and wildlife, groundwater recharge, municipal, domestic, industrial, agricultural, power generation, or recreation. Water reuse is an essential tool in stretching the limited water supplies in the Western United States. Title XVI projects develop and supplement urban and irrigation water supplies through water reuse, thereby improving efficiency, providing flexibility during water shortages, and diversifying the water supply.
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nsf.gov - Funding - Chemical and Biological Separations - US National Science Foundatio... - 0 views

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    The Chemical and Biological Separations (CBS) program supports fundamental research on novel methods and materials for separation processes.  These processes are central to the chemical, biochemical, materials, energy, and pharmaceutical industries.  A fundamental understanding of the interfacial, transport, and thermodynamic behavior of multiphase chemical systems as well as quantitative descriptions of processing characteristics in the process-oriented industries is critical for efficient resource management and effective environmental protection.  The program encourages proposals that address emerging research areas and technologies, have a high degree of interdisciplinary thought coupled with knowledge creation, and integrate education and research. Research topics OF PARTICULAR INTEREST in CBS include fundamental molecular-level work on: Nanostructured materials for separations Biorenewable resource separation processes Purification of drinking water Field (flow, magnetic, electrical) induced separations Separation of molecular constituents from blood The duration of unsolicited awards is generally one to three years.  The average annual award size for the program is $80,000.  Proposals requesting a substantially higher amount than this, without prior consultation with the Program Director, may be returned without review.  Small equipment proposals of less than $100,000 will also be considered and may be submitted during the annual submission window. 
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Nanomanufacturing - 0 views

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    Nanomanufacturing is the production of useful nano-scale materials, structures, devices and systems in an economically viable manner. The NSF Nanomanufacturing Program supports fundamental research in novel methods and techniques for batch and continuous processes, top-down (addition/subtraction) and bottom-up (directed self-assembly) processes leading to the formation of complex heterogeneous nanosystems. The program supports basic research in nanostructure and process design principles, integration across length-scales, and system-level integration. The Program leverages advances in the understanding of nano-scale phenomena and processes (physical, chemical, electrical, thermal, mechanical and biological), nanomaterials discovery, novel nanostructure architectures, and new nanodevice and nanosystem concepts. It seeks to address quality, efficiency, scalability, reliability, safety and affordability issues that are relevant to manufacturing. To address these issues, the Program encourages research on processes and production systems based on computation, modeling and simulation, use of process metrology, sensing, monitoring, and control, and assessment of product (nanomaterial, nanostructure, nanodevice or nanosystem) quality and performance.The Program seeks to explore transformative approaches to nanomanufacturing, including but not limited to: micro-reactor and micro-fluidics enabled nanosynthesis, bio-inspired nanomanufacturing, manufacturing by nanomachines, additive nanomanufacturing, hierarchical nanostructure assembly, continuous high-rate nanofabrication such as roll-to-roll processing or massively-parallel large-area processing, and modular manufacturing platforms for nanosystems. The Program encourages the fabrication of nanomaterials by design, three-dimensional nanostructures, multi-layer nanodevices, and multi-material and multi-functional nanosystems. Also of interest is the manufacture of dynamic nanosystems such as nanomotors, nanorobots, and nanom
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DE-FOA-0001960 - Clean Energy Manufacturing Innovation Institute: Cybersecurity in Ener... - 0 views

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    The Office of Energy Efficiency and Renewable Energy (EERE), within the U.S. Department of Energy (DOE), invests in cutting-edge research, development, and demonstration activities focused on sustainable transportation, renewable power, and energy efficiency. Through EERE's Advanced Manufacturing Office (AMO) public-private R&D consortia, manufacturers, small businesses, universities, national laboratories, and state and local governments are brought together to pursue coordinated early-stage R&D in high-priority areas essential to energy in manufacturing. Federal funding is the catalyst to bring stakeholders into shared spaces and to address process and technological challenges that present a significant degree of scientific or technical uncertainty. Through this Funding Opportunity Announcement (FOA), EERE in partnership with the Office of Cybersecurity, Energy Security and Emergency Response (CESER), seeks to establish a Clean Energy Manufacturing Innovation Institute dedicated to advancing cybersecurity in energy efficient manufacturing (referred hereafter as the Institute). The Institute will pursue targeted research and development (R&D) that will focus on understanding the evolving cybersecurity threats to greater energy efficiency in manufacturing industries, developing new cybersecurity technologies and methods, and sharing information and knowledge to the broader community of U.S. manufacturers. The Institute will leverage expertise from industry, academia, state and local governments, Non-Governmental Organizations (NGOs), non-profits and Federally Funded Research and Development Centers (FFRDCs)
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Request for Information (RFI) DE-FOA-0002118: Research and Development Opportunities fo... - 0 views

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    Description: The United States (U.S.) Department of Energy (DOE) Building Technologies Office (BTO) is seeking input from the public about its Research and Development Opportunities for Building Energy Modeling (BEM). In particular, BTO is interested in feedback on planned initiatives and their prioritization, on program scope, and on data-sets, metrics and targets for assessing program effectiveness and impact. The purpose of this RFI is to solicit feedback from industry, academia, research laboratories, government agencies, and other stakeholders on BTO's BEM program and its future directions and priorities. To clarify these, BTO has developed a report that is structured around six focus areas (the BEM value proposition, predictive accuracy of BEM, core modeling capabilities, workflow integration and automation, the BEM data ecosystem, and BEM professionals). The report identifies barriers to the increased adoption of BEM and proposing a set of initiatives to address them. BTO is requesting feedback on each of these barriers, the associated initiatives, as well as barriers and initiatives that have not been identified. BTO is also requesting feedback on datasets, metrics, and targets for assessing the impact and progress of the BEM industry and its own BEM program. Request for Information Categories: Category 1: Metrics, benchmarks, targets, and data sets for tracking the use of BEM in various building energy building energy efficiency projects. Methods of attributing energy-efficiency to BEM in various applications. Category 2: Focus areas Category 3: Barriers Category 4: Initiatives Category 5: Stakeholder engagement and feedback mechanisms Category 6: Other Feedback Responses to this RFI must be submitted electronically to BTO_BEM_RDO@ee.doe.gov no later than 5:00pm (ET) on June 3, 2019.
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Research Interests of the Air Force Office of Scientific Research - 0 views

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    The Air Force Office of Scientific Research "we, us, our, or AFOSR" manages the basic research investment for the U.S. Air Force. As a part of the Air Force Research Laboratory (AFRL), our technical experts discover, shape, and champion research within the Air Force Research Laboratory, universities, and industry laboratories to ensure the transition of research results to support U.S. Air Force needs. Using a carefully balanced research portfolio, our research managers seek to foster revolutionary scientific breakthroughs enabling the Air Force and U.S. industry to produce world-class, militarily significant, and commercially valuable products. Our focus is on research areas that offer significant and comprehensive benefits to our national warfighting and peacekeeping capabilities. These areas are organized and managed in two scientific Branches:  Engineering and Information Sciences (RTA) Physical and Biological Sciences (RTB)
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Maritiem Energy Conservation or Efficiency Polot Demonstration - 0 views

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    The Maritime Administration, Office of Environment is issuing this request for proposals (RFP) for projects that demonstrate shipboard energy conservation or efficiency measures. Background: Over the past several years, the Maritime Administration (MARAD) has been partnering with government agencies, industry, and academia on efforts to reduce vessel and port emissions, as well as efforts to support the use of alternative fuel and energy sources. Currently, MARAD would like to focus on exploring and supporting proposals focused on shipboard energy efficiency and conservation. This RFP is specifically seeking to provide cost share funding through a cooperative agreement(s) for one or more proposals that offer the potential for advancement and improvement of energy efficiency for marine vessel operations. The MARAD cost share will not exceed 50% of the total project cost. Collaborative partnerships with other entities such as industry, ports, maritime organizations, and state or local governments are highly encouraged. This announcement is an expression of interest only and does not commit MARAD to make any award. The total amount of funding under the RFP will be up to $400,000.
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NSF/VMware Partnership on Edge Computing Data Infrastructure (ECDI) (nsf18540) | NSF - ... - 0 views

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    The proliferation of mobile and Internet-of-Things (IoT) devices, and their pervasiveness across nearly every sphere of our society, continues to raise questions about the architectures that organize tomorrow's compute infrastructure. At the heart of this trend is the data that will be generated as myriad devices and application services operate simultaneously to digitize a complex domain like a smart building or smart industrial facility. A key shift is from edge devices consuming data produced in the cloud to edge devices being a voluminous producer of data. This shift reopens a broad variety of system-level research questions concerning data placement, movement, processing and sharing. Importantly, the shift also opens the door to compelling new applications with significant industrial and societal impact in domains such as healthcare, manufacturing, transportation, public safety, energy, buildings, and telecommunications.
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Transformational Pre-combustion Carbon Capture Technologies - 0 views

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    The mission of DOE's Fossil Energy R&D Program is to ensure the nation can continue to rely on traditional resources for clean, secure and affordable energy while enhancing environmental protection. The Carbon Capture program focuses on developing technologies to control emissions from either post-combustion units (e.g., pulverized coal) or pre-combustion (e.g., Integrated Gasification Combined Cycle, or IGCC). First Generation technologies (i.e. those that are currently being demonstrated or that are commercially available) exist, and Second Generation Technologies (i.e., those that include technology components currently in R&D and are expected to be ready for demonstration in the 2020-2025 timeframe) have shown potential for improvement towards an economic goal for cost of capture at less than $40/tonne, but are still cost prohibitive for broad deployment to the existing coal fleet. For Fiscal Year (FY) 2018, the Carbon Capture Program will solicit applications under this FOA to develop technologies in the area of pre-combustion carbon capture. Approaches that look at either hydrogen (H2) separation or carbon dioxide (CO2) separation will be accepted. The carbon capture technologies developed through this FOA will have direct application to coal gasification processes where coal derived synthesis gas or hydrogen are produced. Additionally, because gasification technology is often used to produce industrial chemicals, the technologies developed through this FOA will also be directly applicable to industrial gasifiers.
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Acer Access and Development Program - 0 views

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    The U.S. Department of Agriculture (USDA), Agricultural Marketing Service (AMS), requests applications for the Acer Access and Development Program (Acer). AMS will competitively award grants to eligible applicants for projects that support the efforts of States, tribal governments, and research institutions to promote the domestic maple syrup industry through activities associated with: promotion of research and education related to maple syrup production; promotion of natural resource sustainability in the maple syrup industry; market promotion for maple syrup and maple-sap products; encouragement of owners and operators of privately held land containing species of trees in the genus Acer-to initiate or expand maple-sugaring activities on the land; or to voluntarily make the land available, including by lease or other means, for access by the public for maple-sugaring activities. Eligible applicants include States, tribal governments, and research institutions. This announcement provides information about the eligibility criteria for applicants and projects, and the application forms and associated instructions needed to apply for an award.
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Process Separations - 0 views

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    The Process Separations program is part of the Chemical Process Systems cluster, which includes also 1) Catalysis; 2) Process Systems, Reaction Engineering, and Molecular Thermodynamics; and 3) Energy for Sustainability. The Process Separations program supports research focused on novel methods and materials for separation processes, such as those central to the chemical, biochemical, bioprocessing, materials, energy, and pharmaceutical industries. A fundamental understanding of the interfacial, transport, and thermodynamic behavior of multiphase chemical systems as well as quantitative descriptions of processing characteristics in the process-oriented industries is critical for efficient resource management and effective environmental protection. The program encourages proposals that address long standing challenges and emerging research areas and technologies, have a high degree of interdisciplinary work coupled with the generation of fundamental knowledge, and the integration of education and research. Research topics of particular interest include fundamental molecular-level work on: Design of scalable mass separating agents and/or a mechanistic understanding of the interfacial thermodynamics and transport phenomena that relate to purification of gases, chemicals, or water
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Blooming Prairie Foundation - 0 views

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    The Blooming Prairie Foundation is dedicated to promoting innovative ideas and practices in the area of organic and natural foods in order to further the health of the people, the health of the environment, and cooperative ideals. The Foundation provides grants to nonprofit organizations that conduct any of the following activities: developmental, research, and educational efforts in the organic industry and the cooperative community; the development of organic and natural products; and cooperative development in the natural products industry. The application deadline is March 1, 2018. Visit the Foundation's website to review the grant guidelines.
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