Energy Research Centre of the Netherlands (ECN), Biomass & Energy Efficiency, Westerduinweg 3, 1755 LE Petten, The Netherlands.
Energy Research Centre of the Netherlands (ECN), Biomass & Energy Efficiency, Westerduinweg 3, 1755 LE Petten, The Netherlands.
Bioresour Technol. 2017 Apr;229:160-168. doi: 10.1016/j.biortech.2017.01.014. Epub 2017 Jan 10.
Five technical lignins (three organosolv, Kraft and soda lignin) were depolymerised to produce monomeric biobased aromatics, particularly alkylphenols, by a new two-stage thermochemical approach consisting of dedicated pyrolysis followed by catalytic hydrodeoxygenation (HDO) of the resulting pyrolysis oils. Pyrolysis yielded a mixture of guaiacols, catechols and, optionally, syringols in addition to alkylphenols. HDO with heterogeneous catalysts (Ru/C, CoMo/alumina, phosphided NiMO/C) effectively directed the product mixture towards alkylphenols by, among others, demethoxylation. Up to 15wt% monomeric aromatics of which 11wt% alkylphenols was obtained (on the lignin intake) with limited solid formation (<3wt% on lignin oil intake). For comparison, solid Kraft lignin was also directly hydrotreated for simultaneous depolymerisation and deoxygenation resulting in two times more alkylphenols. However, the alkylphenols concentration in the product oil is higher for the two-stage approach. Future research should compare direct hydrotreatment and the two-stage approach in more detail by techno-economic assessments.
五种技术木质素(三种有机溶剂木质素、 kraft 木质素和苏打木质素)通过一种新的两段式热化学方法进行解聚,生成单体生物基芳烃,特别是烷基酚,该方法由专门的热解和随后的热解油的催化加氢脱氧(HDO)组成。热解除了生成烷基酚外,还生成了愈创木酚、儿茶酚和(可选的)丁香酚。用非均相催化剂(Ru/C、CoMo/氧化铝、磷化 NiMO/C)进行 HDO 可以有效地通过脱甲氧基等作用将产物混合物定向为烷基酚。高达 15wt%的单体芳烃(木质素进料量的 11wt%),其中 11wt%为烷基酚,固体生成量有限(木质素油量的 3wt%)。相比之下,直接加氢处理固体 kraft 木质素也可以同时进行解聚和脱氧,生成的烷基酚是其两倍。然而,在两段式方法中,产物油中的烷基酚浓度更高。未来的研究应通过技术经济评估更详细地比较直接加氢处理和两段式方法。