Assessing the Biodegradation of Lignin/PBAT Composites: A Comparative Study of Weight Loss and Mineralization. [PDF]
Dong Y +7 more
europepmc +1 more source
Multi-scale characterization and mechanistic comparison of acid-alkali pretreatment during cell wall deconstruction of Achnatherum splendens. [PDF]
He Z, Yang G, Wang S, Jing Y, Gao F.
europepmc +1 more source
Effects of Heat Treatment on the Mechanical Properties and Thermal Stability of Bamboo. [PDF]
Liang Z, Jiang H, Tan Y.
europepmc +1 more source
Solvent-free non-isocyanate polyurethane thermoplastic films from lignin and castor oil: toward sustainable packaging applications. [PDF]
Ganesan K +3 more
europepmc +1 more source
Iron-Amended <i>Pleurotus citrinopileatus</i> Residue Composting: Lignocellulose Degradation and Microbial Functional Potential. [PDF]
Li W +6 more
europepmc +1 more source
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Degradation of lignin by bacteria
Journal of Biotechnology, 1990Abstract Bacteria are involved in the degradation and modification of lignin in nature. Many strains are able to metabolize lignin-related compounds and some of them also mineralize and solubilize polymeric lignin. Cleavage of the different types of linkages in lignin, oxidations, demethylations and aromatic ring cleavages are catalyzed by bacterial ...
Wolfgang Zimmermann
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Lignin degradation by water buffalo
Tropical Animal Health and Production, 2021So far, few animals with the ability of lignin degradation have been reported except termite and longicorn. In this study, it was found that the crude fiber and acid detergent lignin (ADL) of rice straw can be degraded dramatically higher by buffalo than those by cattle.
Qingbiao Xu +8 more
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Lignin degradation by microorganisms: A review
Biotechnology Progress, 2021Abstract Lignin is an abundant plant‐based biopolymer that has found applications in a variety of industries from construction to bioethanol production. This recalcitrant branched polymer is naturally degraded by many different species of microorganisms, including fungi and bacteria.
Ghada Atiwesh +3 more
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Thermal degradation behaviour of isotactic polypropylene blended with lignin
The influence of lignin on the thermal degradation of isotactic polypropylene, investigated by thermogravimetric analysis, is reported in this article.
Fabio Bertini, Maurizio Canetti
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Mechanisms of Lignin-Degrading Enzymes
Protein & Peptide Letters, 2020Lignin is abundant in nature. It is a potentially valuable bioresource, but, because of its complex structure, it is difficult to degrade. However, enzymatic degradation of lignin is effective. Major lignin-degrading enzymes include laccases, lignin peroxidases, and manganese peroxidases.
Jianlong Xiao, Sitong Zhang, Guang Chen
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