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首页> 外文期刊>Fuel Processing Technology >Hydration-induced reactivation of spent sorbents for fluidized bed calcium looping (double looping)
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Hydration-induced reactivation of spent sorbents for fluidized bed calcium looping (double looping)

机译:水合诱导的废吸附剂的再活化,用于流化床钙循环(双循环)

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摘要

The aim of this work was to study the hydration-induced reactivation of spent sorbents from a calcium looping process. The changes of the sorbent properties induced by hydration, the regeneration of the CO2 capture capacity and the attrition tendency of the material once reused in the looping cycle were investigated. To this end, a reference limestone was subjected to multiple calcination/carbonation cycles in a lab-scale fluidized bed reactor and then reactivated by water hydration at room temperature for different times. Results suggested that the sorbent under investigation should be hydrated for times as short as possible compatible with Complete chemical hydration. In fact long hydration times bring about cramming (chemical sintering) phenomena, lower enhancement in the active porosity, increased attrition tendency and reduced reactivation. Attrition/fragmentation data referring to as-received and reactivated sorbents were compared. Relationships among CO2 capture capacity, surface properties and attrition tendency were presented and critically discussed, taking into account also the results obtained for a different sorbent.
机译:这项工作的目的是研究水化诱导的钙环化过程中废吸附剂的再活化。研究了水合作用引起的吸附性能的变化,CO2捕集能力的再生以及在循环周期中再次使用后材料的磨损趋势。为此,将参考石灰石在实验室规模的流化床反应器中进行多次煅烧/碳酸化循环,然后在室温下通过水合将其活化不同时间。结果表明,所研究的吸附剂应与完全化学水合作用尽可能短的时间水合。实际上,长的水合作用时间会导致填塞(化学烧结)现象,活性孔隙率降低程度降低,磨损趋势增加,再活化降低。比较了原样和重新活化的吸附剂的磨损/碎裂数据。提出并严格讨论了CO2捕集能力,表面性质和磨损趋势之间的关系,同时还考虑了针对不同吸附剂获得的结果。

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