Page last updated: 2024-08-18

syringaldehyde and lignin

syringaldehyde has been researched along with lignin in 14 studies

Research

Studies (14)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's2 (14.29)29.6817
2010's10 (71.43)24.3611
2020's2 (14.29)2.80

Authors

AuthorsStudies
Lee, YY; Xiang, Q1
Camarero, S; Del Río, JC; Gutiérrez, A; Ibarra, D; Martínez, AT; Molina, S; Rencoret, J; Romero, J1
Cortez, DV; Roberto, IC1
Bösmann, A; Stärk, K; Taccardi, N; Wasserscheid, P1
Babot, ED; del Río, JC; Gutiérrez, A; Kalum, L; Lund, H; Martínez, AT; Rencoret, J; Rico, A; Romero, J1
Tejirian, A; Xu, F1
Geng, A; Li, Q; Lu, Y; Yao, C; Zhang, J1
Hu, H; Jahan, MS; Liu, H; Ni, Y1
Chu, Q; Jiang, T; Li, X; Ouyang, J; Qiao, H; Yong, Q; Zheng, Z1
Choi, IG; Choi, WS; Hong, CY; Kim, SH; Lee, SY; Park, SY1
Dickinson, M; Goh, KM; Supramaniam, CV1
Ezeji, TC; Okonkwo, CC; Ujor, V1
An, Z; Han, D; He, M; Mei, Q; Sun, J; Wang, X; Wei, B; Xie, J; Zhan, J1
Bai, Y; Gao, D; Ouyang, D; Zhao, X1

Other Studies

14 other study(ies) available for syringaldehyde and lignin

ArticleYear
Production of oxychemicals from precipitated hardwood lignin.
    Applied biochemistry and biotechnology, 2001,Spring, Volume: 91-93

    Topics: Aldehydes; Benzaldehydes; Biomass; Biotechnology; Chemical Precipitation; Ethanol; Hydrogen-Ion Concentration; Ketones; Lignin; Oxidation-Reduction; Wood

2001
Removal of lipophilic extractives from paper pulp by laccase and lignin-derived phenols as natural mediators.
    Environmental science & technology, 2007, Jun-01, Volume: 41, Issue:11

    Topics: Acetophenones; Benzaldehydes; Coumaric Acids; Eucalyptus; Industrial Waste; Laccase; Lignin; Paper; Phenols; Plant Extracts; Propionates; Waste Management; Wood

2007
Individual and interaction effects of vanillin and syringaldehyde on the xylitol formation by Candida guilliermondii.
    Bioresource technology, 2010, Volume: 101, Issue:6

    Topics: Aldehydes; Benzaldehydes; Biotechnology; Candida; Culture Media; Fermentation; Glucose; Hydrogen-Ion Concentration; Lignin; Polysaccharides; Temperature; Xylitol; Xylose

2010
Oxidative depolymerization of lignin in ionic liquids.
    ChemSusChem, 2010, Jun-21, Volume: 3, Issue:6

    Topics: Benzaldehydes; Benzoquinones; Catalysis; Ionic Liquids; Lignin; Oxidation-Reduction

2010
Towards industrially-feasible delignification and pitch removal by treating paper pulp with Myceliophthora thermophila laccase and a phenolic mediator.
    Bioresource technology, 2011, Volume: 102, Issue:12

    Topics: Benzaldehydes; Bioreactors; Eucalyptus; Gallic Acid; Gas Chromatography-Mass Spectrometry; Laccase; Lignin; Paper; Polysorbates; Sordariales; Waste Disposal, Fluid

2011
Inhibition of enzymatic cellulolysis by phenolic compounds.
    Enzyme and microbial technology, 2011, Mar-07, Volume: 48, Issue:3

    Topics: Benzaldehydes; Biomass; Cellulases; Cellulose; Hydrolysis; Lignin; Phenols; Tannins

2011
Effects of lignin-derived phenolic compounds on xylitol production and key enzyme activities by a xylose utilizing yeast Candida athensensis SB18.
    Bioresource technology, 2012, Volume: 121

    Topics: Benzaldehydes; Biotechnology; Candida; Chromatography, High Pressure Liquid; Fermentation; Lignin; Phenol; Phenols; Regression Analysis; Singapore; Xylitol; Xylose

2012
Furfural formation from the pre-hydrolysis liquor of a hardwood kraft-based dissolving pulp production process.
    Bioresource technology, 2013, Volume: 131

    Topics: Benzaldehydes; Furaldehyde; Hydrolysis; Lignin; Plant Extracts; Wood; Xylose

2013
Lactic Acid Production from Pretreated Hydrolysates of Corn Stover by a Newly Developed Bacillus coagulans Strain.
    PloS one, 2016, Volume: 11, Issue:2

    Topics: Bacillus; Benzaldehydes; Biomass; Bioreactors; Fermentation; Furaldehyde; Glucose; Hydrolysis; Industrial Microbiology; Lactic Acid; Lignin; Mutation; Temperature; Water; Xylose; Zea mays

2016
Degradation and polymerization of monolignols by Abortiporus biennis, and induction of its degradation with a reducing agent.
    Journal of microbiology (Seoul, Korea), 2016, Volume: 54, Issue:10

    Topics: Acrolein; Ascorbic Acid; Basidiomycota; Benzaldehydes; Culture Media; Lignin; Molecular Structure; Molecular Weight; Phenols; Phenylpropionates; Polymerization; Reducing Agents

2016
Morphological and transcript changes in the biosynthesis of lignin in oil palm (Elaeis guineensis) during Ganoderma boninense infections in vitro.
    Physiologia plantarum, 2018, Volume: 162, Issue:3

    Topics: Alcohol Oxidoreductases; Arecaceae; Benzaldehydes; Cell Wall; Ganoderma; Gene Expression Regulation, Plant; Host-Pathogen Interactions; Lignin; Methyltransferases; Phenylalanine Ammonia-Lyase; Plant Diseases; Plant Epidermis; Plant Proteins; Trans-Cinnamate 4-Monooxygenase

2018
Chromosomal integration of aldo-keto-reductase and short-chain dehydrogenase/reductase genes in Clostridium beijerinckii NCIMB 8052 enhanced tolerance to lignocellulose-derived microbial inhibitory compounds.
    Scientific reports, 2019, 05-21, Volume: 9, Issue:1

    Topics: Acetone; Aldo-Keto Reductases; Benzaldehydes; Butanols; Chromosomes, Fungal; Clostridium beijerinckii; Ethanol; Fermentation; Fungal Proteins; Furaldehyde; Gallic Acid; Industrial Microbiology; Lignin; Oxidoreductases; Vanillic Acid

2019
Effect of pH on ·OH-induced degradation progress of syringol/syringaldehyde and health effect.
    Chemosphere, 2020, Volume: 255

    Topics: Atmosphere; Benzaldehydes; Hydrogen-Ion Concentration; Kinetics; Lignin; Oxidation-Reduction; Oxygen; Pyrogallol; Wastewater; Water

2020
Synthesis and Computational Investigation of Antioxidants Prepared by Oxidative Depolymerization of Lignin and Aldol Condensation of Aromatic Aldehydes.
    ChemSusChem, 2023, Jun-22, Volume: 16, Issue:12

    Topics: Aldehydes; Antioxidants; Lignin; Mitogen-Activated Protein Kinase Kinases; Oxidative Stress; Solvents

2023