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DOI10.1039/d4gc01257g
Sustainable aviation fuel from prehydrolysis liquors
Lebedeva, Daria; Schick, Lars William; Cracco, Daniel; Sangsuwan, Withsakorn; Castiella-Ona, Gonzalo; Silva, Dagoberto O.; Marson, Alessandro; Grape, Erik Svensson; Inge, A. Ken; Rossi, Liane M.; Subbotina, Elena; Manzardo, Alessandro; Samec, Joseph S. M.
发表日期2024
ISSN1463-9262
EISSN1463-9270
英文摘要Maximizing products of high value and minimizing incineration of side-streams is key to realize future biorefineries. In current textile production from forestry, hemicellulose is removed by prehydrolysis before delignification. The resulting prehydrolysis liquor is incinerated in the recovery boiler at low efficiency. This additional burden on the limiting recovery boiler reduces the pulp production. In this study, we demonstrate that prehydrolysis liquor can be upgraded, in 5 steps, to yield aviation fuels. Prehydrolysis liquors were dehydrated to furfural by zeolite catalysis. Furfural was selectively reduced to furfuryl alcohol by Au@NC. Rhenium-catalysed Achmatowicz rearrangement gave a C5 intermediate susceptible to self [2 + 2] cycloaddition to give the C10 oxygenated precursor. By using a combination of Ru/C and zeolites, full hydrodeoxygenation was achieved. The overall transformation from furfural to hydrocarbons resulted in a 48% carbon yield. The resulting hydrocarbons, containing an anticipated strained four-membered ring, are preferred aviation fuel components. This is an important step to show that aviation fuels can be produced sustainably from existing industrial side-streams. A comparative life cycle assessment was applied to evaluate the environmental impact of the proposed valorization approach, demonstrating benefits in the climate change impact category when implementing this technology in a pulp mill compared to the incineration of pre-hydrolysis liquor scenario. Maximizing products of high value and minimizing incineration of side-streams is key to realize future biorefineries.
语种英语
WOS研究方向Chemistry ; Science & Technology - Other Topics
WOS类目Chemistry, Multidisciplinary ; Green & Sustainable Science & Technology
WOS记录号WOS:001232929500001
来源期刊GREEN CHEMISTRY
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/295429
作者单位Stockholm University; Stockholm University; Universidade de Sao Paulo; University of Padua
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GB/T 7714
Lebedeva, Daria,Schick, Lars William,Cracco, Daniel,et al. Sustainable aviation fuel from prehydrolysis liquors[J],2024.
APA Lebedeva, Daria.,Schick, Lars William.,Cracco, Daniel.,Sangsuwan, Withsakorn.,Castiella-Ona, Gonzalo.,...&Samec, Joseph S. M..(2024).Sustainable aviation fuel from prehydrolysis liquors.GREEN CHEMISTRY.
MLA Lebedeva, Daria,et al."Sustainable aviation fuel from prehydrolysis liquors".GREEN CHEMISTRY (2024).
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