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STEP (Solar Thermal Electrochemical Production) of Energetic Molecules: A synergy of photovoltaics and solar thermal to form a new, higher efficiency solar energy process

机译:电力充电分子的步骤(太阳能热电化学生产):光伏和太阳能热量的协同作用,形成新的,更高效率的太阳能过程

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STEP, Solar Thermal Electrochemical Production, provides an advance in solar energy conversion efficiency through the use of the full solar spectrum to generate energy rich chemicals. The process captures solar energy with conversion efficiency greater than that of photovoltaics, and rather than electricity, produces the chemical products needed by society. This original process is derived and demonstrated for the solar production of energetically rich chemicals, including iron, and hydrogen fuel without the evolution of carbon dioxide, and to proactively convert and capture anthropogenic CO_2 generated in burning fossil fuels. The STEP process distinguishes radiation that is energy sufficient to drive photovoltaic charge transfer, and applies all excess energy to heat and decrease the energy of endothermic electrolysis reactions. Energy sufficient, visible, sunlight drives photovoltaic charge transfer, and available heat, infrared sunlight, and excess visible sunlight, heats, and decreases the energy of, an electrolysis reaction.
机译:步骤,太阳能热电化学生产,通过使用全景谱来产生能量富含化学品的太阳能转换效率。该过程捕获太阳能,转换效率大于光伏,而不是电力,产生了社会所需的化学产品。这种原始工艺是用于太阳能富含化学品的太阳能生产,包括铁和氢气,而无需二氧化碳的演变,并主动转换和捕获在燃烧化石燃料中产生的人为CO_2。步骤过程区分辐射是能量足以驱动光伏电荷转移的能量,并施加所有过量的能量以加热并降低吸热电解反应的能量。能量足够,可见光,阳光驱动光伏电荷转移,以及可提供的热量,红外阳光,和过量的可见日光,加热,并降低的能量,电解反应。

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  • 来源
    《ECS Meeting》|2011年||共14页
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    S. Licht;

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  • 中图分类 TN201-53;
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