首页> 外文期刊>Frontiers in Chemistry >Catalytic fast pyrolysis of kraft lignin with conventional, mesoporous and nanosized ZSM-5 zeolite for the production of alkyl-phenols and aromatics
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Catalytic fast pyrolysis of kraft lignin with conventional, mesoporous and nanosized ZSM-5 zeolite for the production of alkyl-phenols and aromatics

机译:常规,中孔和纳米级ZSM-5沸石对牛皮纸木质素的催化快速热解,用于生产烷基酚和芳烃

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The valorization of lignin that derives as by product in various biomass conversion processes has become a major research and technological objective. The potential of the production of valuable mono-aromatics (BTX and others) and (alkyl)phenols by catalytic fast pyrolysis of lignin is investigated in this work by the use of ZSM-5 zeolites with different acidic and porosity characteristics. More specifically, conventional microporous ZSM-5 (Si/Al =11.5, 25, 40), nano-sized (≤ 20 nm, by direct synthesis) and mesoporous (9 nm, by mild alkaline treatment) ZSM-5 zeolites were tested in the fast pyrolysis of a softwood kraft lignin at 400-600oC on a Py/GC-MS system and a fixed-bed reactor unit. The composition of lignin (FT-IR, 2D HSQC NMR) was correlated with the composition of the thermal (non-catalytic) pyrolysis oil, while the effect of pyrolysis temperature and catalyst-to-lignin (C/L) ratio, as well as of the Si/Al ratio, acidity, micro/mesoporosity and nano-size of ZSM-5, on bio-oil composition was thoroughly investigated. It was shown that the conventional microporous ZSM-5 zeolites are more selective towards mono-aromatics while the nano-sized and mesoporous ZSM-5 exhibited also high selectivity for (alkyl)phenols. However, the nano-sized ZSM-5 zeolite exhibited the lowest yield of organic bio-oil and highest production of water, coke and non-condensable gases compared to the conventional microporous and mesoporous ZSM-5 zeolites.
机译:在各种生物质转化过程中作为副产物衍生的木质素的价质化已成为主要的研究和技术目标。在这项工作中,通过使用具有不同酸性和孔隙度特性的ZSM-5沸石,研究了通过木质素的催化快速热解生产有价值的单芳族化合物(BTX和其他)和(烷基)苯酚的潜力。更具体地说,对常规的微孔ZSM-5(Si / Al = 11.5,25,40),纳米级(≤20 nm,直接合成)和中孔(9 nm,温和碱性处理)的ZSM-5沸石进行了测试。在Py / GC-MS系统和固定床反应器上对400-600oC的针叶牛皮硫酸盐木质素进行快速热解。木质素的组成(FT-IR,二维HSQC NMR)与热(非催化)热解油的组成相关,同时热解温度和催化剂与木质素(C / L)比的影响从硅/铝比,酸度,微/介孔度和纳米级ZSM-5角度,对生物油成分进行了彻底研究。结果表明,常规的微孔ZSM-5沸石对单芳烃的选择性更高,而纳米级和中孔的ZSM-5沸石对(烷基)酚的选择性也很高。然而,与常规的微孔和中孔ZSM-5沸石相比,纳米级ZSM-5沸石表现出最低的有机生物油产量和最高的水,焦炭和不可冷凝气体产量。

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