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Characterization and performance analysis of an innovative Ni/Mayenite catalyst for the steam reforming of raw syngas

机译:创新型Ni / Mayenite催化剂的蒸汽改性液体改性的特征及性能分析

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Biomass gasification represents a very effective way to produce syngas, a gaseous fuel exploitable in different devices for energy production, such as ICE, micro-turbines, fuel cells or for the production of pure H2. For these reasons the syngas must be cleaned and conditioned in order to remove the pollutants that will cause damage to the downstream systems; in particular tars concentration must be really low and the H2 content in the syngas must be maximized. For these purposes catalytic steam reforming of tar and CH4 is necessary; Nickel catalysts at the moment are the preferable candidates for this purpose but still have some deactivation problems related to carbon deposition and sulphur poisoning. Various studies demonstrated that the use of Mayenite as binder for Nickel has various advantages such as the presence of free oxygen ions O2~- and O2~(2-) in the Mayenite structure that can protect the catalyst from coke formation and F12S poisoning [1]. Most of the studies on this catalyst are carried out with simulated gas using just few hydrocarbons as tar representative (for example toluene) [2]; in this study the new catalyst was instead tested with real raw syngas produced by biomass gasification in a bench scale gasifier, thus containing CH4, benzene and different types of tars. Ni/Mayenite was prepared, characterized before its utilization, tested for several tens of hours in a catalytic reactor downstream the bench scale gasifier and finally again characterized in order to study its degradation in time.
机译:生物质气化代表生产合成气的非常有效的方法,在不同装置中可利用的气态燃料,用于能量产生,例如冰,微涡轮机,燃料电池或用于生产纯H2。由于这些原因,必须清洁和调节合成气以除去将导致下游系统损坏的污染物;特别是焦油浓度必须真正较低,并且合成气中的H2含量必须最大化。对于这些目的,焦油和CH4的催化蒸汽重整是必要的;目前镍催化剂是本用途的优选候选物,但仍然具有与碳沉积和硫中毒有关的一些失活问题。各种研究证明,使用莫尼特镁作为镍的粘合剂具有各种优点,例如莫奈特结构中的游离氧离子O 2〜 - 和O 2〜(2-)的存在,其可以保护催化剂免受焦炭形成和F12s中毒[1 ]。对该催化剂的大多数研究用少量烃作为焦油代表性(例如甲苯)[2]用模拟气体进行。在该研究中,使用在板凳秤气化炉中的生物质气化产生的真实原始合成气测试新的催化剂,从而含有CH4,苯和不同类型的焦油。制备Ni / umerenite,其特征在其利用之前,在稳定性反应器中测试了几十小时,下游在台面刻度气化器下游,最后再次表现为研究其及时降解。

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