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Calcium-looping for thermochemical energy storage in concentrating solar power applications: Evaluation of the effect of acoustic perturbation on the fluidized bed carbonation

机译:集中太阳能应用中热化学储能的钙环:声学扰动对流化床碳酸化效果的评价

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摘要

In the framework of thermochemical energy storage (TCES) in concentrating solar power (CSP) plants, the calcium-looping (CaL) process, carried out in fluidized bed reactors, is receiving increasing research interest due to the high energy density and the extremely low price, nontoxicity, and wide availability of natural CaO precursors. One of the main open challenges in CaL is represented by finding solutions to the progressive decline in the CaO carbonation conversion with the number of cycles, which is due to the sorbent deactivation caused by sintering and pore-plugging. In this framework, the reduction of the CaO particles size has been reported to improve the carbonation conversion and, therefore, the achievable energy density, by maximizing the availability of the sorbent surface exposed to the gaseous phase and hindering the natural loss of CaO mutlicyclic activity. However, the use of fine particles in fluidized bed reactors is challenging due to agglomeration, channeling and plugging phenomena.
机译:在浓缩太阳能(CSP)植物中的热化学能量存储(TCE)框架中,在流化床反应器中进行的钙环(CAL)过程正在接受由于高能量密度和极低的研究兴趣增加价格,无毒,天然曹前体的广泛可用性。 CAR中的主要开放挑战之一是通过寻找CAO碳化转化率的逐步下降的解决方案来表示,这是由于烧结和孔隙引起的吸附剂失活来源。在该框架中,据报道,通过最大化暴露于气相暴露的吸附剂表面并阻碍CaO mutliClicclic活性的自然丧失来改善碳化转化,因此可实现的能量密度降低,以改善碳化转化,因此可实现的能量密度。 。然而,由于聚集,通道和堵塞现象,使用细颗粒在流化床反应器中的使用是挑战。

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