Kalateh Roozbeh, Aysu Tevfik, Ojeda Manuel, Sanna Aimaro
Institute of Mechanical, Process and Energy Engineering, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH12 7NT, UK.
Molecules. 2024 Dec 4;29(23):5719. doi: 10.3390/molecules29235719.
In this study, we investigated the pyrolysis of cellulose, lignin, phenylalanine and textile wool waste using microscale thermogravimetric analysis (TGA) and a gram-scale fixed bed reactor. The pyrolysis was conducted at 500 °C and 1 bar N, using Al- and Li-doped mesoporous KIL-2 and ZSM-5 catalysts for comparison. Our results show that amorphous Al-KIL-2 catalyst was the most efficient in producing aromatics from cellulose and lignin. This efficiency is attributed to Al-KIL-2 large mesoporosity, wide pore size distribution, and mild acid sites. Additionally, Al-KIL-2 promoted esterification and denitrogenation reactions, indicating its potential application in the pyrolysis of biomass and protein-rich feedstocks. Conversely, the Li-KIL-2 catalyst demonstrated activity primarily in the depolymerisation of cellulose to sugars and promoted ketonisation and alcohol formation. In summary, our findings indicate that Al-KIL-2 is a promising catalyst for efficient aromatic production from biomass.
在本研究中,我们使用微型热重分析(TGA)和克级固定床反应器研究了纤维素、木质素、苯丙氨酸和纺织羊毛废料的热解。热解在500°C和1巴氮气条件下进行,使用铝掺杂和锂掺杂的介孔KIL-2和ZSM-5催化剂进行比较。我们的结果表明,无定形铝掺杂KIL-2催化剂在从纤维素和木质素生产芳烃方面效率最高。这种效率归因于铝掺杂KIL-2的大介孔率、宽孔径分布和温和的酸性位点。此外,铝掺杂KIL-2促进了酯化和脱氮反应,表明其在生物质和富含蛋白质原料热解中的潜在应用。相反,锂掺杂KIL-2催化剂主要在纤维素解聚为糖的过程中表现出活性,并促进了酮化和醇的形成。总之,我们的研究结果表明,铝掺杂KIL-2是一种有前途的用于从生物质高效生产芳烃的催化剂。