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EAGER: Development of Visible Light Driven Photocatalytic Nanocomposites for the Reduction of CO2 to Hydrocarbon Fuel

EAGER: Development of Visible Light Driven Photocatalytic Nanocomposites for the Reduction of CO2 to Hydrocarbon Fuel
EAGER:开发可见光驱动的光催化纳米复合材料,用于将二氧化碳还原为碳氢化合物燃料
批准号:
1233528
负责人:
Prakash Sharma
金额:
$9.53万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-01 至 2018-07-31

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中文摘要
翻译
如果转换过程与可再生资源(如太阳能)相结合,那么通过将二氧化碳转化为合成燃料来隔离二氧化碳可能是一种非常有吸引力的方法。与用于烃的费-托合成相比,光诱导的二氧化碳还原导致形成富含能量的燃料,例如将CO2转化为CH 4或更高级的烃,尚未被充分研究。在这种情况下,使用光催化半导体材料如二氧化钛是有希望的,因为容易光生电荷载体,促进涉及CO2和水蒸气的表面反应。目前,这种光催化方法的效率非常低。二氧化钛(TiO 2)广泛用于许多光催化、水分解应用中。然而,它只能利用太阳光谱的紫外部分(小于总太阳光能量的4%),这导致这种催化剂在太阳光能量利用中的低总效率。显然,使用TiO 2将CO2光催化还原为烃燃料如甲烷、乙烷或甲醇的关键挑战是使用太阳光的可见光谱提高CO2转化率。由于天然二氧化钛的高带隙导致的低转化率是一个限制,通过开发具有更高光还原位点的新型可见光活化光催化剂来改善碳氢化合物燃料的形成。在EAGER资助下,PI将通过阴离子掺杂,封装,纳米壳/核配方和带隙定制程序设计和开发新型可见光活化光催化剂。初步研究结果表明,通过热化学和机械化学过程对TiO 2进行阴离子掺杂和带隙调整,不仅可以提高TiO 2在可见光区的光吸收特性,还可以获得较大的活性表面积,利用太阳光和水生产清洁的液体燃料将有助于减少温室气体排放和石油进口。此外,该项目还将产生重大的教育影响,因为它将用于在塔斯基吉大学(HBCU)启动可再生能源研究培训的新领域。
英文摘要
AbstractSequestering carbon dioxide by conversion into synthetic fuels can be an immensely attractive approach if the conversion process is coupled with a renewable resource such as solar energy. Photoinduced carbon dioxide reduction leading to the formation of energy rich fuels, such as conversion of CO2 to CH4 or higher hydrocarbons has not been adequately studied as compared with the Fischer-Tropsch synthesis for hydrocarbons. In this context, use of photocatalytic semi-conducting materials such as titania is promising due to the ease of photogeneration of charge carriers that facilitate surface reactions involving CO2 and water vapor. At the present time, the efficiency of such photocatalytic processes is very low. Titanium dioxide (TiO2) is widely used in many photocatalytic, water splitting applications. However, it can only utilize the ultraviolet portion of the solar spectrum (less than 4% of the total sunlight energy), which results in low total efficiency of such catalyst in the sunlight energy utilization. Apparently, a critical challenge in using TiO2 for photocatalytic reduction of CO2 to hydrocarbon fuels such as methane, ethane or methanol has been the enhancement of CO2 conversion rates using the visible spectrum of sunlight. Low conversion rates due to the high band gap of native titania is one limitation, which gets improved by developing novel visible light activated photocatalysts having higher photo-reductive sites for the hydrocarbon fuel formation.Under this EAGER grant, PIs will design and develop novel visible light activated photocatalysts by anion doping, encapsulation, nanoshell/core formulation, and band gap tailoring procedures. Preliminary results have shown that both anion doping and band gap tailoring of TiO2 via thermochemical and mechanochemical processes thus enhances the optical absorption characteristics in the visible light region in addition to the large active surface area.Production of clean liquid fuel from sunlight and water will help reduce the greenhouse gas emissions and petroleum imports. Additionally, this project will also have a substantial educational impact, as it will be used to start a new area of renewable energy research training at Tuskegee University, an HBCU.
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国内基金
海外基金
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  • 批准号:
    --
  • 项目类别:
    --
  • 资助金额:
    40万元
  • 批准年份:
    2020
  • 负责人:
    Vikrant Gupta
  • 依托单位: