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Conversion of Concentrated Solar Thermal Energy into Chemical Energy

机译:集中太阳能热能转化为化学能

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摘要

When a concentrated solar beam is irradiated to the ceramics such as Ni-ferrite, the high-energy flux in the range of 1500–2500 kW/m2 is absorbed by an excess Frenkel defect formation. This non-equilibrium state defect is generated not by heating at a low heating-rate (30 K/min), but by irradiating high flux energy of concentrated solar beam rapidly at a high heating rate (200 K/min). The defect can be spontaneously converted to chemical energy of a cation-excess spinel structure (reduced-oxide form) at the temperature around 1773 K. Thus, the O2 releasing reaction (α-O2 releasing reaction) proceeds in two-steps; (1) high flux energy of concentrated solar beam absorption by formation of the non-equilibrium Frenkel defect and (2) the O2 gas formation from the O2− in the Frenkel defect even in air atmosphere. The 2nd step proceeds without the solar radiation. We may say that the 1st step is light reaction, and 2nd step, dark reaction, just like in photosynthesis process.
机译:当集中的太阳束照射到镍铁氧体等陶瓷时,多余的弗伦克尔缺陷会吸收1500–2500 kW / m 2 范围内的高能通量。这种非平衡状态的缺陷不是通过以低加热速率(30 K / min)加热而产生的,而是通过以高加热速率(200 K / min)迅速照射聚集的太阳束的高通量能量而产生的。缺陷可以在1773 K左右的温度下自发转化为阳离子过量的尖晶石结构的化学能(还原氧化物形式)。因此,O2释放反应(α-O2释放反应)分两步进行; (1)通过形成非平衡Frenkel缺陷而吸收了集中的太阳光束的高通量能量;(2)即使在空气中,Frenkel缺陷中O 2-形成的O2气体也是如此。第二步继续进行,没有太阳辐射。我们可以说第一步是光反应,第二步是暗反应,就像在光合作用过程中一样。

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