The purpose of this work is to study the ability of an industrially available laccase-mediator system to modify and remove lignin during pretreatment of wood (Eucalyptus globulus) feedstock, thus improving saccharification, and to analyze the chemical modifications produced in the whole material and especially in the recalcitrant lignin moiety.

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Pretreatment with laccase and a phenolic mediator degrades lignin and enhances saccharification of Eucalyptus feedstock. Biotechnology for Biofuels, 2014. Jorge Rencoret.

8. Lu, J.; Yang, P.; Ji, Y.; Huang, Q. Enhanced formation of chlorinated disinfection byproducts in the UV/chlorine process in the presence of benzophenone-4. Chemical 2021-02-20 · In addition, the immobilized laccase-natural redox mediator system can degrade and release the adsorbed phenanthrene, and the preadsorption of laccase and SBE on the catalyst beads can be used for the in-situ regeneration of biocatalysts to stabilize the system performance. Degradation of Perfluorooctanesulfonate by Reactive Electrochemical Membrane Composed of Magnéli Phase Titanium Suboxide.

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Bioresource Technology, 2011. M. Roncero. PDF. Download Free PDF. Free PDF. Pretreatment with laccase and a phenolic mediator degrades lignin and enhances saccharification of Eucalyptus feedstock Biotechnology for Biofuels , Jan 2014 Alejandro Rico , Jorge Rencoret , José C del Río , Angel T Martínez , Ana Gutiérrez 7. Luo, Q.; Yan, X.; Lu, J.; Huang, Q. Perfluorooctanesulfonate Degrades in a Laccase-mediator System.

DOI: 10.1021/acs.est.8b00839 Corpus ID: 52092435. Perfluorooctanesulfonate Degrades in a Laccase-Mediator System. @article{Luo2018PerfluorooctanesulfonateDI, title

LMS laccase-mediator system Potential of C. rigida and its laccases in applied processes As mentioned before, C. rigida and its laccases are currently being studied in terms of their ability to degrade and/or detoxify a wide array of compounds such as industrial by-products and/or agricultural wastes. Plant biomass is an abundant renewable resource on Earth. Microorganisms harvest energy from plant material by means of complex enzymatic systems that efficiently degrade natural polymers.

Perfluorooctanesulfonate degrades in a laccase-mediator system

Degradation of perfluorooctanesulfonate in a laccase-mediator system. Q. Huang. 11:10 ENVR 48. Occurrence and distribution of hydrogen-substituted F-53B and other emerging PFASs in surface waters from China. J. Dai, Y. Pan, H. Zhang, Q. Cui 11:35 ENVR 49.

Perfluorooctanesulfonate degrades in a laccase-mediator system

Eucalypt samples. Sigma-Aldrich offers abstracts and full-text articles by [Qi Luo, Xiufen Yan, Junhe Lu, Qingguo Huang]. Perfluorooctanesulfonate Degrades in a Laccase-Mediator System Author: Luo, Qi, Yan, Xiufen, Lu, Junhe, Huang, Qingguo Source: Environmental science & technology 2018 A number of studies have confirmed the potential of laccase-mediator systems for paper pulp delignification [18,19], pitch control , polymer modification , other applications in the forest industry , and bioethanol production from physically and/or chemically pretreated lignocellulose . Pretreatment with laccase and a phenolic mediator degrades lignin and enhances saccharification of Eucalyptus feedstock. Biotechnology for Biofuels, 2014.

Area Application 1 Food Industry 1. Brewing 2. Colour enhancement in tea etc.
Onkologen sus lund

Article. Aug 2018; Qi Luo. Xiufen Yan. Junhe Lu. Qingguo Huang. Perfluorooctanesulfonate (PFOS) is a compound that has wide Highly Defective UiO-66 Materials for the Adsorptive Removal of Perfluorooctanesulfonate. ACS Sustainable Chemistry & Engineering 2019, 7 (7) , 6619-6628.

Published: 12 May 2016. Issue Date: September 2016.
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Request PDF | Perfluorooctanesulfonate Degrades in a Laccase-Mediator System | Perfluorooctanesulfonate (PFOS) is a compound that has wide applications with extreme persistence in the environment

11:10 ENVR 48. Occurrence and distribution of hydrogen-substituted F-53B and other emerging PFASs in surface waters from China.