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Isothermal Water Splitting

机译:等温水分解

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摘要

The potential of solar radiation as an infinite resource of renewable energy is widely recognized. The challenge is to convert it as efficiently as possible into useful energy forms such as hydrogen or liquid carbonaceous fuels. Thermochemical cycles are a number of consecutive chemical reactions (>2) that lower the maximum temperature compared to a single chemical reaction. Typical temperatures for these cycles to reach full conversion range from 800°C to 2000°C. The necessary solar heat can be generated by concentrating optics that direct the solar radiation on a single point—in solar towers or central receiver systems. To use the solar power efficiently and economically, losses must be minimized, with major factors being the minimization of re-radiation and the reduction of gases that are used to transport the reactant. As pointed out by Munich et al. (7) on page 540 of this issue, a particularly important factor in this respect is the minimization of temperature differences between reaction steps. However, the necessary temperatures are high, and it has yet to be proven that the materials and components are stable over a long time to make the processes economically attractive.
机译:太阳辐射作为无限量的可再生能源的潜力已得到广泛认可。挑战在于如何将其尽可能有效地转化为有用的能源形式,例如氢气或液态含碳燃料。热化学循环是许多连续的化学反应(> 2),与单个化学反应相比,它们降低了最高温度。这些循环达到完全转换的典型温度范围为800°C至2000°C。可以通过将光学器件集中到单个位置(在太阳能塔或中央接收器系统中)将光学器件定向到单个点来产生必要的太阳能。为了有效和经济地使用太阳能,必须使损失最小化,主要因素是最小化再辐射和减少用于输送反应物的气体。正如慕尼黑等人指出的。 (7)在此问题的第540页上,这方面的一个特别重要的因素是最小化反应步骤之间的温差。然而,所需的温度很高,并且尚未证明材料和部件在长时间内是稳定的以使该方法在经济上具有吸引力。

著录项

  • 来源
    《Science》 |2013年第6145期|470-471|共2页
  • 作者

    Martin Roeb; Christian Sattler;

  • 作者单位

    Institute of Solar Research, German Aerospace Center DLR,Linder Hoehe, Koeln, 51147, Germany;

    Institute of Solar Research, German Aerospace Center DLR,Linder Hoehe, Koeln, 51147, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 02:52:59

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