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Steam Reactivation of a Spent Sorbent for Enhanced SO_2 Capture in FBC

机译:蒸汽活化废吸收剂以增强FBC中的SO_2捕获

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The regeneration by steam hydration of the sulfur capture ability of spent sorbent particles from Fluidized Bed Combustion(FBC)is addressed.The process is characterized in terms of effectiveness of sorbent reactivation,hydration degree,particle sulfation pattern,development of accessible porosity,and extent of particle attrition and fragmentation.Steam reactivation experiments were carried out in a lab-scale atmospheric FBC at 250 deg C for 10,30,and 180 min with 0.05 MPa steam partial pressure.The effectiveness of sorbent reactivation was assessed by reinjecting the reactivated material into the FB reactor operated at 850 deg C under simulated desulfurization conditions and following the degree of calcium conversion and the attrition rate along with resulfation.The experimental results indicated that steam reactivation is effective in renewing the SO_2 uptake ability of the exhausted sorbent particles.The regeneration mechanism based on the swelling upon hydration of the unreacted core,the generation of fissures and cracks,and the consequent development of accessible porosity is confirmed for the limestone under scrutiny.In addition to this,a remarkable result was that steam hydration induces,for the sorbent under investigation,a pronounced sulfur redistribution throughout the particle cross-section,which provides another pathway to the enhancement of the sulfur capture ability of the reactivated sorbent.
机译:针对流化床燃烧(FBC)中废吸附剂颗粒的蒸汽水合再生方法进行了研究。该过程以吸附剂再活化的有效性,水合度,颗粒硫酸化模式,可及孔隙度的发展和程度为特征。在实验室规模的大气FBC上于250℃下进行10,30和180分钟,蒸汽分压为0.05 MPa的蒸汽再活化实验。通过重新注入再活化的材料评估吸附剂再活化的有效性在模拟脱硫条件下,在850℃下运行的FB反应器中,根据钙的转化程度和损耗速率以及再硫酸化的结果,实验结果表明,蒸汽再活化能有效地恢复耗尽的吸附剂颗粒对SO_2的吸收能力。基于未反应的水合物水合膨胀的再生机理e,仔细检查证实了石灰石的裂隙和裂缝的产生以及随之而来的孔隙的发展。此外,一个显着的结果是蒸汽水化诱导了被研究的吸附剂在整个过程中明显的硫重新分布。颗粒横截面,这为提高再活化吸附剂的硫捕获能力提供了另一条途径。

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