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EAGER HBCU: Feasibility Study for International Research, Education and Workforce Development on Sustainable Bio-materials Using NSF I-Corps Framework

EAGER HBCU: Feasibility Study for International Research, Education and Workforce Development on Sustainable Bio-materials Using NSF I-Corps Framework
EAGER HBCU:利用 NSF I-Corps 框架进行可持续生物材料国际研究、教育和劳动力发展的可行性研究
批准号:
1743679
负责人:
Mahour Parast
金额:
$20.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-08-01 至 2020-01-31

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中文摘要
翻译
1743679(Parast)该项目的目标是&通过整合创新和新颖的国际I-Corps,提高NC A T在生物基材料领域的研究和教育能力。(I2-Corps)计划纳入研究生的研究和教育,以1)通过国际合作加速生物基材料的研究和发现,2)确保研究与行业应用的相关性,3)通过同步科学研究提高学生的全球意识,客户发现和市场分析。这项工作的重点是通过在NC A T州立大学开发一个研究利基,以解决2030年生物经济的需求,在研究和教育能力建设的潜在变革方法。这是通过加强NC AT州立大学在可持续生物材料研究方面的核心竞争力来实现的,通过在国际范围内利用NSF I-Corps模型整合技术创新。生物基材料将通过利用实验和建模的综合方法进行研究,开发和部署。建模将使用分子动力学模拟和密度泛函理论。国际合作是以整体方式实现这一愿景的关键,因为可持续资源具有特定的地点性,其当地的可获得性和丰富性促进了各区域或国家具体的生物量转化专门知识和生物材料知识的发展。例如,虽然美国团队有从动物粪便中提取分子物种的经验,但法国的合作伙伴有与藻类合作的经验,丹麦和巴西的合作伙伴分别与荷荷巴油和蓖麻油合作。国际合作将汇集必要的互补专门知识,以应对从生物废物中制造生物材料的挑战。
英文摘要
1743679 (Parast)The objective of this project is to enhance NC A&T's research and educational capability in the area of bio-based materials through integrating an innovative and novel International I-Corps (I2-Corps) program into graduate students' research and education to 1) accelerate research and discovery in bio-based materials via international partnerships, 2) ensure relevance of research to industry applications, and 3) enhance student's global awareness via synchronized scientific research, customer discovery, and market analysis. The effort is centered on a potentially transformative approach to capacity building in research and education through developing a research niche at NC A&T State University that addresses the needs of the bio-economy of 2030. This is to be achieved through strengthening the core competency of NC A&T State University in research in Sustainable Bio-materials through integrating technological innovation utilizing the NSF I-Corps model in an international context.Bio-based materials are to be investigated, developed, and deployed through an integrated approach utilizing experiments and modeling. The modeling will use molecular dynamics simulations and density functional theory. International collaboration is a key for realization of the vision in a holistic manner, because sustainable resources are location-specific, and their localized accessibility and abundance promotes specific bio-mass conversion expertise and bio-materials knowledge development in the respective region or country. For instance, while the U.S. team has experience in extracting molecular species from animal manure, the partners in France have experience working with algae, and the Danish and Brazilian partners have worked with jojoba oil and castor oil, respectively. international collaboration will bring together the complementary expertise necessary to address the challenge of engineering bio-material from bio-waste.
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EAGER: An Exploratory Study of R&D Investment on Innovation using Business R&D and Innovation Survey (BRDIS) Data
  • 批准号:
    2005956
  • 项目类别:
    Standard Grant
  • 资助金额:
    $2.38万
  • 财政年份:
    2019
  • 负责人:
    Mahour Parast
  • 依托单位:
EAGER HBCU: Feasibility Study for International Research, Education and Workforce Development on Sustainable Bio-materials Using NSF I-Corps Framework
  • 批准号:
    2011135
  • 项目类别:
    Standard Grant
  • 资助金额:
    $13.26万
  • 财政年份:
    2019
  • 负责人:
    Mahour Parast
  • 依托单位:
PFI: AIR - TT: Developing A Bio-based Rejuvenator to Revitalize Asphalt in Scrap Roofing Shingles
EAGER: An Exploratory Study of R&D Investment on Innovation using Business R&D and Innovation Survey (BRDIS) Data
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