Document details

Polymerization of lignosulfonates by the laccase-HBT (1-hydroxybenzotriazole) s...

Author(s): Prasetyo, E. N. cv logo 1 ; Kudanga, T. cv logo 2 ; Østergaard, L. cv logo 3 ; Rencoret, J. cv logo 4 ; Gutiérrez, A. cv logo 5 ; Río, J. C. del cv logo 6 ; Santos, J. I. cv logo 7 ; Nieto, L. cv logo 8 ; Jiménez-Barbero, Jesús cv logo 9 ; Martínez, Angel T. cv logo 10 ; Li, J. cv logo 11 ; Gellerstedt, G. cv logo 12 ; Lepifre, S. cv logo 13 ; Silva, Carla Manuela cv logo 14 ; Kim, S cv logo 15 ; Paulo, Artur Cavaco cv logo 16 ; Klausen, B. S. cv logo 17 ; Lutnaes, B. F. cv logo 18 ; Nyanhongo, Gibson S. cv logo 19 ; Guebitz, G. M. cv logo 20

Date: 2010

Persistent ID: http://hdl.handle.net/1822/14756

Origin: RepositóriUM - Universidade do Minho

Subject(s): Calcium lignosulfonates; Laccase; Enzymatic modification; Dispersion; Polymerization


Description
The ability of laccases from Trametes villosa (TvL), Myceliophthora thermophila (MtL), Trametes hirsuta (ThL) and Bacillus subtilis (BsL) to improve the dispersion properties of calcium lignosulfonates 398 in the presence of HBT as a mediator was investigated. Size exclusion chromatography showed an extensive increase in molecular weight of the samples incubated with TvL and ThL by 107% and 572% from 28400 Da after 17 h of incubation, respectively. Interestingly, FTIR spectroscopy, 13C NMR and Py-GC/MS analysis of the treated samples suggested no substantial changes in the aromatic signal of the lignosulfonates, a good indication of the ability of TvL/ThL-HBT systems to limit their effect on functional groups without degrading the lignin backbone. Further, the enzymatic treatments led to a general increase in the dispersion properties, indeed a welcome development for its application in polymer blends.
Document Type Article
Language English
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