Collaborative Research: Plug and Play Photosynthesis for RuBisCO Independent Fuels
Collaborative Research: Plug and Play Photosynthesis for RuBisCO Independent Fuels
批准号:
1105033
负责人:
Anne Jones
金额:
$45.1万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-03-01 至 2015-02-28
中文摘要
虽然太阳能生物质能可能是一种丰富的、对环境无害的能源,但由于二氧化碳转化为生物质的步伐缓慢,自然光合作用的效率相对较低。该项目寻求通过光合作用增加能量捕获,方法是将能量从正常的缓慢步骤转移到可能更有效的过程。该项目的第一个主要目标是证明,以光合作用有机体产生的电流的形式,能量可以通过生物纳米线(生物线)从光合作用的能量捕获细胞传输到储存能量的“工厂细胞”。这项拟议工作的第二个主要目标是证明工厂电池可以被设计成利用能源来生产有用的燃料化合物。更广泛的影响:该项目将为生物能源研究的新方向奠定基础,有可能大幅提高太阳能捕获和储存的效率,同时培训在生物能源和生物技术新兴领域竞争所需的下一代科学家和工程师。该项目将证明,能量可以作为生物电在细胞之间直接转移。此外,将要开发的生物线将作为未来的通用连接器,用于电连接不同类型的细胞,以创建新的、功能性的生物膜。该项目中构建的光合作用组件将作为原型,以建立新的设计范例。除了这些好处之外,该项目还将1)提供宝贵的资源来推动其他重要的研究项目,2)在与关键国家需求相关的技术领域培训本科生、研究生和博士后研究员,3)建立富有成效的国际合作,以及4)传播与能源和生物技术的基础和应用研究与开发有关的信息。
英文摘要
While solar bioenergy is potentially an abundant and environmentally benign energy source, natural photosynthesis is relatively inefficient owing to slow steps in the conversion of carbon dioxide into biomass. This project seeks to increase energy capture by photosynthesis by diverting energy away from the normal slow steps to potentially more efficient processes. The first major goal of the project is to demonstrate that energy, in the form of electrical current produced by photosynthetic organisms, can be transmitted from a photosynthetic, energy capturing cell to an energy-storing "factory cell" via biological nanowires (biowires). The second major goal of the proposed work is to show that the factory cell can be engineered to use energy to produce useful fuel compounds. Broader Impacts: This project will create the foundation for new directions in bioenergy research, with potential for dramatic increases in the efficiency of solar energy capture and storage, while training the next generation of scientists and engineers needed to compete in emerging areas of bioenergy and biotechnology. The project will demonstrate that energy can be transferred directly between cells as bio-electricity. Furthermore, the biowire to be developed will serve as a future generic connector for electrically connecting distinct cell types to create novel, functional biofilms. The photosynthetic components constructed in this project will serve as prototypes to establish a new design paradigm. In addition to these benefits, the project will 1) provide valuable resources to catalyze other important research projects, 2) train undergraduate and graduate students and postdoctoral fellows in areas of technology relevant to critical national needs, 3) establish productive international collaborations, and 4) disseminate information relevant to basic and applied research and development in energy and biotechnology.
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Collaborative Research: Plug and Play Photosynthesis for RuBisCO Independent Fuels
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批准号:1359648
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项目类别:Standard Grant
-
资助金额:$46.52万
-
财政年份:2014
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负责人:Anne Jones
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依托单位:
Graduate Research Fellowship Program
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批准号:0123876
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项目类别:Fellowship Award
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资助金额:$2.85万
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财政年份:2001
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负责人:Anne Jones
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依托单位:
国内基金
海外基金
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