Lignin valorization is crucial to replace fossil fuels for a more sustainable future (Karunarathna & Smith, 2020). Reductive catalysis fractionation (RCF) produces phenolic monomers, termed monolignols, that can be valorized through enzymatic bioconversions. This study’s main aim was to increase the value of three RCF monolignols: 4-propyl phenol (4-PP)
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One-Pot Enzymatic Bioconversion of Native Whey for the Simultaneous Production of Galacto-Oligosaccharides and Antioxidant Peptides. [PDF]
Córdova-Suárez A +11 more
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Sustainable Pretreatment of Food Waste for Enhanced Bioethanol Production and Improved Waste Management: A Review. [PDF]
Sharma S +10 more
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Two-step bioconversion of pyridoxal 5'-phosphate from pyridoxine through cofactor regeneration and pyridoxine 5'-phosphate oxidase evolution. [PDF]
Yang X +7 more
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Optimized Bioconversion of Naringenin to Hesperetin in <i>Escherichia coli</i> With Halide Methyltransferase-Mediated <i>S</i>-Adenosylmethionine Regeneration. [PDF]
Wildhagen M +4 more
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Microbial drivers of Black Soldier Fly biowaste valorization: from microbiome functions to scalable insect-microbe systems. [PDF]
Luttenschlager H +5 more
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Production of Xylooligosaccharides (XOSs) with Anti-inflammatory and Prebiotic Activities Using Recombinant Endo-1,4-β-xylanases from <i>Bacillus subtilis</i>. [PDF]
Cuong NC +3 more
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Computer-Based Design to Improve Bacillus thuringiensis Chitinase for Industrial Applications. [PDF]
Sree Agash SG +5 more
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CO2 Capture by Enzymatic Bioconversion in a Membrane Contactor with Task Specific Ionic Liquids
Neves, L. A. +3 more
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Fed-batch strategies for the enhanced biotransformation of cis-epoxysuccinate to L-( +)-tartrate. [PDF]
Ouyang JJ, Pan J, Xu JH, Li CX, Kong XD.
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