首页> 外文会议>Solar Hydrogen and Nanotechnology II; Proceedings of SPIE-The International Society for Optical Engineering; vol.6650 >Preparation of high efficiency visible light activated Pt/CdS photocatalyst for solar hydrogen production
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Preparation of high efficiency visible light activated Pt/CdS photocatalyst for solar hydrogen production

机译:用于太阳能制氢的高效可见光活化Pt / CdS光催化剂的制备

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Production of hydrogen by water splitting using solar energy is one of the long sought goals of hydrogen economy. Approximately 33% of solar radiation is emitted as high energy photons while the remaining 67% consists of primarily thermal energy. Utilization of both thermal and photonic energies within the solar spectrum is essential for achieving water splitting at high efficiency. At FSEC, we have developed a solar-thermochemical water splitting cycle for the production of hydrogen. In this cycle, the photonic portion of solar irradiance is diverted and used to drive the hydrogen production step, while solar thermal portion drives the oxygen generation step of the cycle. The photocatalytic hydrogen production step of the cycle employs aqueous ammonium sulfite solution that is oxidized to ammonium sulfate in the presence of nanosized photocatalysts. We have developed a technique for the preparation of polymer encapsulated nanosize photocatalysts that show high activity toward oxidation of ammonium sulfite aqueous solution. The use of nano-scale and defect free photocatalysts hinder the recombination of photo-generated electron-hole pairs, thereby increasing solar to hydrogen energy conversion efficiency.
机译:通过使用太阳能将水分解产生氢是氢经济的长期追求的目标之一。大约33%的太阳辐射以高能光子的形式发射,而其余的67%主要由热能组成。利用太阳光谱内的热能和光子能对实现高效水分解至关重要。在FSEC,我们开发了用于生产氢气的太阳能热化学分解水循环。在此循环中,太阳辐照度的光子部分被转移并用于驱动制氢步骤,而太阳热部分则驱动该循环的氧气生成步骤。该循环的光催化制氢步骤采用亚硫酸铵水溶液,该溶液在纳米级光催化剂的存在下被氧化成硫酸铵。我们已经开发了一种制备聚合物封装的纳米级光催化剂的技术,该催化剂对亚硫酸铵水溶液的氧化具有很高的活性。纳米级和无缺陷的光催化剂的使用阻碍了光生电子-空穴对的复合,从而提高了太阳能到氢能的转化效率。

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