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Reactivation of limestone sorbents in FBC for SO_2 capture

机译:FBC中石灰石吸附剂的再活化以捕获SO_2

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Fluidized bed combustion (FBC) has the considerable advantage of being capable of burning high-sulphur fuels while achieving in situ sulphur capture by means of limestone addition. Unfortunately the efficiency of this process is limited, and limestone utilization in the range of 30-45% is not uncommon. In consequence, improving limestone utilization has long been an aim of FBC research. The principal directions this research has taken are the use of water (as liquid or vapour) to reactivate the spent sorbent, or mixing of chemical additives with the limestone to improve its utilization. Despite research stretching over the entire history of FBC combustion, there are still no working commercial applications of reactivation technology noted in the open literature. It is the aim of this paper to present some of the more important research undertaken in this field and to explore the major knowledge gaps that still exist in the area of sorbent reactivation.
机译:流化床燃烧(FBC)具有相当大的优势,能够燃烧高硫燃料,同时通过添加石灰石实现原位硫捕获。不幸的是,该方法的效率受到限制,并且石灰石利用率在30-45%的范围内并不罕见。因此,提高石灰石利用率一直是FBC研究的目标。这项研究的主要方向是使用水(作为液体或蒸气)以重新活化用过的吸附剂,或将化学添加剂与石灰石混合以提高其利用率。尽管在FBC燃烧的整个历史中进行了广泛的研究,但公开文献中仍未提及再活化技术的有效商业应用。本文的目的是介绍在该领域进行的一些更重要的研究,并探讨在吸附剂再活化领域仍然存在的主要知识空白。

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