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Review on the Development of Sorbents for Calcium Looping

机译:钙循环吸附剂的开发综述

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摘要

The calcium looping (CaL) process is a promising CO2 capture technology, which uses CaO-based sorbents by employing a reversible reaction between CaO and CO2 generally named carbonation and calcination for each direction of the reaction. Although CaO-based sorbents possess many advantages, including wide availability, relatively low cost, and high theoretical CO(2 )uptake (similar to 0.786 g of CO2/g of CaO), it mainly suffers from a rapid decline in CO(2 )capture performance during cyclic operation, which has remained an urgent issue required to be addressed for industrial applications of the CaL process. Extensive studies have been conducted thus far, attempting to prevent and/or alleviate the rapid performance decay of the sorbents. Thus, this paper reviews the recent development of the CaL process worldwide with an emphasis on its development in China, mainly focusing on the advancement in the design and reinforcement of CaO-based sorbents. These activation strategies mainly include doping, chemical pretreatment, incorporation of supports with high Tammann temperatures, and structural modification, which do enhance the cyclic performance of the sorbents. However, some challenges still exist in the development of the CaO-based sorbents, such as the cost of the synthesis route, the scale-up pathways of the sorbents, the assessment of cyclic performance under mild conditions, and the ignorance of mechanical strength and attrition resistance of the sorbents. Therefore, life cycle assessment together with techno-economic analysis is essential when synthesizing CaO-based sorbents. In addition, more work should be conducted under industrially relevant conditions in fluidized bed reactors and even pilot-scale reactors, which are much closer to industrial situations. In this case, mechanical strength and attrition resistance are also assessed during cyclic operation.
机译:钙循环(CAL)方法是一项有前途的CO 2捕获技术,其通过在通常在每种方向的CaO和CO 2之间采用可逆反应来使用基于CaO的吸附剂。虽然CAO为基础的吸附剂具有许多优点,包括广泛的可用性,成本相对较低,并且高理论CO(2)摄取(类似于0.786g CO2 / g的CO2 / g),主要患有CO(2)的快速下降循环操作期间的捕获性能,这仍然需要解决CAL过程的工业应用所需的紧急问题。迄今为止进行了广泛的研究,试图预防和/或缓解吸附剂的快速性能衰减。因此,本文综述了全球最近的开发,强调其在中国的发展,主要关注曹族吸附剂的设计和加固的进步。这些激活策略主要包括掺杂,化学预处理,掺入具有高茶杯温度的支撑,以及结构改性,其能够提高吸附剂的循环性能。然而,在基于Cao的吸附剂的发展中仍然存在一些挑战,例如合成途径的成本,吸附剂的扩大途径,在温和条件下的循环性能的评估,以及机械强度的无知吸附剂的耐久性。因此,在合成CaO的吸附剂时,生命周期评估与技术经济分析一起是必不可少的。此外,在流化床反应堆的工业相关条件下,应更多的工作,甚至是先导式反应器,这与工业情况有多近。在这种情况下,在循环操作期间也评估机械强度和磨损性。

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  • 来源
    《Energy & fuels》 |2020年第7期|7806-7836|共31页
  • 作者单位

    Southeast Univ Sch Energy & Environm Key Lab Energy Thermal Convers & Control Minist Educ Nanjing 210096 Jiangsu Peoples R China;

    Southeast Univ Sch Energy & Environm Key Lab Energy Thermal Convers & Control Minist Educ Nanjing 210096 Jiangsu Peoples R China;

    Southeast Univ Sch Energy & Environm Key Lab Energy Thermal Convers & Control Minist Educ Nanjing 210096 Jiangsu Peoples R China;

  • 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);
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  • 正文语种 eng
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