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首页> 外文期刊>Solar Energy >Multi-cyclic evaluation of composite CaO-based structured bodies for thermochemical heat storage via the CaO/Ca(OH)(2) reaction scheme
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Multi-cyclic evaluation of composite CaO-based structured bodies for thermochemical heat storage via the CaO/Ca(OH)(2) reaction scheme

机译:通过CaO / Ca(OH)(2)反应方案对基于CaO的复合结构体进行热化学储热的多循环评估

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摘要

Experimental efforts have shown that thermo-chemical heat storage through cyclic hydration/dehydration of the CaO/Ca(OH)(2) couple requires efficient CaO-based particles, in terms of both hydration capacity and structural robustness. Acknowledging the challenge caused by high fragmentation of pure CaO particles during multi-cyclic operation in bed reactors, the development of CaO-based materials with enhanced mechanical properties is essential. Promising results have been obtained for nearly spherical structured formulations using kaolinite as binder. The combination of natural limestone with 25 wt% kaolinite rendered mechanically strong materials with a hydration capacity of up to 50% compared to the maximum hydration capacity of pure CaO. These formulations remained intact and showed stable reactivity in the course of 10 hydration/dehydration cycles. In order to obtain valid conclusions for the suitability of these materials for the here suggested reaction scheme, examination upon multiple hydration/dehydration cycles was necessary. The current work is related to the assessment of CaO-kaolinite composite materials under three different evaluation protocols, as well as to the examination of their mechanical properties through crushing strength measurements and attrition tests. For most of the materials examined, more satisfactory results were obtained for hydration and dehydration reactions in vapor-rich atmosphere at 450 and 550 C-circle, respectively. Multi-cyclic evaluation (50-200 cycles) confirmed the initial findings of the 10-cycle tests. The final selected composition constituted a promising material for the suggested reaction scheme and was qualified as in-principle suitable for long-term operation in pilot scale units. (C) 2017 Elsevier Ltd. All rights reserved.
机译:实验工作表明,通过CaO / Ca(OH)(2)对的循环水合/脱水进行热化学储热,就水合能力和结构坚固性而言,都需要高效的CaO基颗粒。认识到在床反应器的多循环运行过程中,纯CaO颗粒高度破碎会带来挑战,因此开发具有增强机械性能的CaO基材料至关重要。使用高岭石作为粘合剂的近球形结构配方已获得了令人鼓舞的结果。与纯CaO的最大水化能力相比,天然石灰石与25 wt%的高岭石的结合可提供机械强度高的材料,水化能力高达50%。这些制剂在10个水合/脱水循环的过程中保持完整并显示出稳定的反应性。为了获得这些材料适用于此处建议的反应方案的有效结论,必须对多个水合/脱水循环进行检查。当前的工作涉及在三种不同的评估方案下对CaO-高岭石复合材料的评估,以及通过抗碎强度测量和磨损测试对其力学性能的检查。对于大多数检查的材料,分别在450和550 C圈的富蒸气气氛中进行水合和脱水反应可获得更令人满意的结果。多周期评估(50-200个周期)证实了10个周期测试的初步发现。最终选择的组合物构成了建议反应方案的有前途的材料,并且被认为是适合中试规模单位长期运行的原理。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy 》 |2017年第4期| 65-78| 共14页
  • 作者单位

    Ctr Res & Technol Hellas APTL CPERI CERTH, Aerosol & Particle Technol Lab, Chem Proc & Energy Resources Inst, 6th Km Charilaou Thermi,POB 361, Thermi 57001, Greece|Aristotle Univ Thessaloniki AUTH, Dept Chem Engn, Thessaloniki 54124, Greece;

    CSIC INCAR, Inst Nacl Carbon, C Francisco Pintado Fe,26, Oviedo 33011, Spain;

    Ctr Res & Technol Hellas APTL CPERI CERTH, Aerosol & Particle Technol Lab, Chem Proc & Energy Resources Inst, 6th Km Charilaou Thermi,POB 361, Thermi 57001, Greece;

    Ctr Res & Technol Hellas APTL CPERI CERTH, Aerosol & Particle Technol Lab, Chem Proc & Energy Resources Inst, 6th Km Charilaou Thermi,POB 361, Thermi 57001, Greece;

    Ctr Res & Technol Hellas APTL CPERI CERTH, Aerosol & Particle Technol Lab, Chem Proc & Energy Resources Inst, 6th Km Charilaou Thermi,POB 361, Thermi 57001, Greece|Aristotle Univ Thessaloniki AUTH, Dept Chem Engn, Thessaloniki 54124, Greece;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermochemical energy storage; Calcium oxide; Composite structured bodies; Multi-cyclic evaluation;

    机译:热化学储能;氧化钙;复合结构体;多循环评价;

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