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Interactions between char and tar during the steam gasification in a fluidized bed reactor

机译:流化床反应器中蒸汽气化过程中炭和焦油之间的相互作用

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The aim of the present work is to understand the different interactions which may occur between the char and a tar model (toluene) in a fluidized bed reactor during biomass char gasification with steam. Experiments are conducted at 850 degrees C and atmospheric pressure with sand particles as solid medium. The influence of steam and toluene partial pressures on both the char reactivity and the presence of tar in the product gas was investigated in the range of 0.05-0.4 bars and 0.0025 and 0.0075 bars (10.1 and 30.4 g.Nm(-3)), respectively. Results showed that the presence of char in the fluidized bed reactor leads to toluene polymerization (cokefaction) which produces a carbonaceous deposit (coke) on its surface. This deposit is much less reactive towards steam gasification than the initial char. For the operating conditions used in this study, it was found that the rate of tars polymerization (R-p) is always smaller than the one of coke and char gasification (R-sr + R-g). Finally, a comparison between the different solid catalysts in the fluidized bed reactor revealed that olivine is the best catalyst towards toluene conversion when the ratio P-H2/P-H2O is higher than 1.5 in the reactive gas atmosphere. Otherwise, for a steam partial pressure higher than 0.2 bars, "olivine + 3% char" and "sand + 3% char" were found to be the best compromise to limit the amount of tar in the product gas.
机译:本工作的目的是了解在生物质炭用蒸汽气化期间,流化床反应器中的炭和焦油模型(甲苯)之间可能发生的不同相互作用。实验是在850摄氏度和大气压下以沙粒为固体介质进行的。在0.05-0.4 bar和0.0025和0.0075 bar(10.1和30.4 g.Nm(-3))的范围内研究了蒸汽和甲苯分压对焦炭反应性和产物气中焦油存在的影响,分别。结果表明,流化床反应器中焦炭的存在会导致甲苯聚合(焦化),从而在其表面产生碳质沉积物(焦炭)。与最初的炭相比,该沉积物对蒸汽气化的反应性低得多。对于本研究中使用的操作条件,发现焦油聚合速率(R-p)始终小于焦炭和焦炭气化速率(R-sr + R-g)之一。最后,在流化床反应器中不同固体催化剂之间的比较表明,当在反应性气体气氛中,P-H2 / P-H2O比值高于1.5时,橄榄石是实现甲苯转化的最佳催化剂。否则,对于蒸汽分压高于0.2巴的情况,发现“橄榄石+ 3%炭”和“砂+ 3%炭”是限制产品气中焦油量的最佳折衷方案。

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