2023 AIChE Annual Meeting
(253i) Complete Hydrodeoxygenation of Enzymatic Hydrolysis Lignin to Cycloalkane Fuels
Authors
Ni catalyst derived from the reduction of Ni-Al hydrotalcite (NiAl-LDH) was employed for HDO of EHL. The effects of Ni/Al ratio and reduction condition on the catalyst activity have been examined. The catalyst obtained from the reduction of NiAl-LDH at 460 oC (Re-NiAl-LDH-460) showed the highest activity among the catalyst samples examined. With this catalyst, EHL was completely converted and depolymerized at 320 °C under 3 MPa H2 for 6 h, yielding 133.24 mg/g EHL of cycloalkanes. Meanwhile, the heating value of the product is 42.5 MJ/kg and much higher than that obtained without a catalyst (25 MJ/kg) under the same reaction condition. After that, Fe was introduced into the Ni-Al hydrotalcite, followed by reduction to prepare a NiFe alloy catalyst. The total yield of cycloalkanes was improved to 161.1 mg/g EHL under the same reaction conditions (320 °C, 3 MPa H2, 6 h). The results of the lignin dimer model compound conversion demonstrate that the NiFe alloy catalyst exhibits high activity in breaking C-O linkages and achieves partial cleavage of C-C linkages.
Reference
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