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Introduction and evaluation of a double loop staged fluidized bed system for post-combustion CO2 capture using solid sorbents in a continuous temperature swing adsorption process

机译:在连续变温吸附过程中使用固体吸附剂的燃烧后二氧化碳捕集的双环流化床系统的引入和评估

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A double loop staged fluidized bed system operated with solid amine sorbents is proposed and evaluated for temperature swing adsorption (TSA) CO2 separation from flue gas streams. The proposed system features effective counter-current movement of gas and sorbent streams in both gas-solid contactors, i.e. the adsorber and the desorber. The counter-current movement enables the realization of axial CO2 concentration profiles within both contactors that is exploited within the TSA process to reach high CO2 capture rates as well as concentrated CO2 from the desorber. The system comprises two multi-stage fluidized bed contactors where the sorbents move downwards through a series of bubbling fluidized bed stages. The stages are made up by nozzle or sieve plates and feature downcomers or dip tubes to allow for downward directed particle flow. The gas is fed at the bottom and serves as fluidizing agent in the stages. The particles are removed from the bottom stage through chutes and are directed through a sealing device (loop seal or purged moving bed) towards a transporting riser. The particles are lifted up, separated from the transport gas via gravitational or centrifugal separators and sent to the respective other contacting device through simple chutes. Lean/rich heat transfer may be possible using fluidized bed heat exchangers within the dense bed phase of both transport risers. The process is thermodynamically evaluated for a well-studied sorbent material consisting of a porous silica support that is functionalized with a mixture of two different amines (PEI+APTES). It is shown that application of the double loop staged system leads to a significant reduction of sorbent circulation rate and stripping steam demand compared to single-stage fluidized bed systems and thus to a significant reduction of the energy demand of the CO2 capture process. It is found that when implementing five stages in each contacting device, it is possible to capture 90% of the CO2 from a typical flue gas stream (10 vol% CO2 content), even when the process is operated with moderate sorbent circulation and stripping steam rates. The corresponding overall heat requirement of the capture process without accounting for CO2 compression and effective heat integration is 3.5 MJ per kg CO2 captured and, thus, equal or even below the values reported for liquid amine capture systems. Improved heat transfer through immersed fluidized bed heat exchangers as well as a significantly lower number of theoretical stages indicate that the proposed TSA contacting devices will allow for a more compact design as compared to gas-liquid systems, which would lead to reduced capital costs. In conclusion, CO2 capture within the proposed TSA system using solid amine sorbents may be regarded as a promising post-combustion CO2 capture technology. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种使用固体胺吸附剂的双环流化床系统,并对其从烟气流中分离出的变温吸附(TSA)CO2进行了评估。所提出的系统具有在两个气固接触器即吸附器和解吸器中的气流和吸附剂流的有效逆流运动的特征。逆流运动可以在两个接触器中实现轴向CO2浓度分布,这在TSA过程中得到了利用,以实现较高的CO2捕集率以及来自解吸器的浓缩CO2。该系统包括两个多级流化床接触器,其中吸附剂通过一系列鼓泡的流化床阶段向下移动。这些平台由喷嘴或筛板组成,并带有降液管或浸入管,以允许向下的颗粒流。气体在底部进料,并在各段中用作流化剂。颗粒通过滑槽从底部移出,并通过密封装置(环形密封或吹扫的移动床)引向输送冒口。颗粒被提起,通过重力或离心分离器从输送气体中分离出来,并通过简单的溜槽分别输送到另一个接触装置。在两个输送提升管的密相床相内使用流化床热交换器,可以实现稀薄/浓热交换。对该工艺进行了热力学评估,以研究一种由两种不同胺(PEI + APTES)的混合物官能化的多孔二氧化硅载体组成的吸附材料。结果表明,与单级流化床系统相比,双回路分段系统的应用导致吸附剂循环速率的降低和汽提蒸汽的需求量的显着降低,从而显着降低了CO2捕集过程的能量需求。发现在每个接触装置中实施五个阶段时,即使该过程在中等吸附剂循环和汽提蒸汽下运行,也可以从典型的烟道气流中捕获90%的CO2(CO2含量为10 vol%)。费率。在不考虑CO2压缩和有效热量整合的情况下,捕集过程的相应总热量需求为每千克捕集的CO2 3.5 MJ,因此等于或什至低于液体胺捕集系统的报告值。通过浸入式流化床热交换器的传热改善以及理论阶段数明显减少,表明与气液系统相比,拟议的TSA接触装置可实现更紧凑的设计,从而可降低投资成本。总之,在建议的TSA系统中使用固体胺吸附剂捕集二氧化碳可能被认为是一种有前途的燃烧后二氧化碳捕集技术。 (C)2015 Elsevier Ltd.保留所有权利。

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