Paving the Way for Lignin Valorisation: Recent Advances in Bioengineering, Biorefining and Catalysis
Путь к валоризации лигнина: современные достижения в биоинженерии, биорафинировании и катализе
2016-06-17
SCID: 54.1/fmpx3g9p
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catalytic depolymerisationlignin bioengineeringlignin biorefininglignin upgradinglignin valorisation
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Abstract (AI)
Lignin is an abundant biopolymer with a high carbon content and high aromaticity. Despite its potential as a raw material for the fuel and chemical industries, lignin remains the most poorly utilised of the lignocellulosic biopolymers. Effective valorisation of lignin requires careful fine-tuning of multiple "upstream" (i.e., lignin bioengineering, lignin isolation and "early-stage catalytic conversion of lignin") and "downstream" (i.e., lignin depolymerisation and upgrading) process stages, demanding input and understanding from a broad array of scientific disciplines. This review provides a "beginning-to-end" analysis of the recent advances reported in lignin valorisation. Particular emphasis is placed on the improved understanding of lignin's biosynthesis and structure, differences in structure and chemical bonding between native and technical lignins, emerging catalytic valorisation strategies, and the relationships between lignin structure and catalyst performance.
Key Findings
1
Effective lignin valorisation requires coordinated optimization of upstream bioengineering, isolation, early-stage catalytic conversion, depolymerisation, and downstream upgrading.
2
Emerging catalytic strategies increasingly connect lignin structural features with catalyst performance, supporting more targeted valorisation processes.
3
Lignin remains the least-utilized lignocellulosic biopolymer despite its abundant carbon content, aromaticity, and potential for fuels and chemicals.
4
Recent advances improve understanding of lignin biosynthesis and structure, including differences in chemical bonding between native and technical lignins.
5
Successful lignin valorisation is inherently multidisciplinary and requires beginning-to-end integration of biological, biorefining, and catalytic approaches.
Research Object
Lignin (native and technical lignins across valorisation processes)
Research Subject
the effects of lignin biosynthesis, structure, isolation, depolymerisation, upgrading, and catalyst performance on effective lignin valorisation
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2016-06-17
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