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In-situ desulfurization performance of limestone purge from the calcium looping process during circulating fluidized bed combustion of coal in a 150kW_(th) pilot plant

机译:在150kW_(TH)先导厂循环流化床燃烧过程中石灰石净化过程的原位脱硫性能

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The calcium looping process (CaL) provides a possibility of post combustion CO_2 capture. Based on the calcination and carbonation of natural limestone, this high temperature dual fluidized bed process has the potential for low efficiency penalty caused by carbon capture. Its technical viability has been successfully demonstrated at pilot scale [1] [2]. During the continuous calcination/carbonation cycles of the lime particles, the CO_2 capture capacity is decreased due to deactivation processes [3]. Therefore a certain flow of fresh natural limestone needs to be continuously fed to the CaL system and a stream of deactivated purge material has to be extracted out of the fluidized bed reactor system. In industrial scale CaL facilities, these significant streams of highly calcined purge material have to be further used or disposed of. Possible further usage application are the clinker production in the cement industry [4] or the use of these deactivated sorbent streams for sulfur capture in fluidized bed combustion chambers. The latter is investigated experimentally at IFK and presented in this work. The in-situ desulfurization is a well-known SO_2 reduction method for coal fired fluidized bed boilers. Here, natural limestone is fed to the combustion chamber together with the fuel. This way, the SO_2 formed during coal combustion is directly captured in the combustion chamber. The intention of this work is to evaluate the use of deactivated and highly calcined CaL purge as a replacement for natural limestone sorbent.
机译:钙循环过程(CAL)提供了燃烧后CO_2捕获的可能性。基于天然石灰石的煅烧和碳酸化,该高温双流化床工艺具有碳捕获引起的低效率损失的可能性。它的技术活力已成功地在试点规模[1] [2]。在石灰颗粒的连续煅烧/碳酸化循环期间,由于去激活过程而降低了CO_2捕获容量[3]。因此,需要连续地将新鲜天然石灰石的一定流动送入CAL系统,并且必须从流化床反应器系统中提取消化的吹扫材料流。在工业规模CAL设施中,必须进一步使用或处理这些高度煅烧的吹扫材料的这些重要的流。可能的进一步使用应用是水泥工业中的熟料生产[4]或使用这些失活的吸附剂流用于流化床燃烧室中的硫捕获。后者在IFK实验调查并在这项工作中提出。原位脱硫是燃煤流化床锅炉的众所周知的SO_2还原方法。这里,天然石灰石与燃料一起送入燃烧室。这样,在燃烧室内形成的SO_2在燃烧室中直接捕获。这项工作的目的是评估使用停用和高煅烧的CAL清除作为天然石灰石吸附剂的替代品。

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