This paper aims the use of enzymatic methods to address two
key factors of fibres which influence the performance in oil palm
biomass reinforced PLA composites. First, this approach has been
used to help separate the fibre bundles into the fibre components.
Second, this methodology has been employed to alter the surface
characteristics of the fibres with the aim to improve the interaction
with a resin matrix and, simultaneously, remove any loosely
bonded materials that would otherwise influence the fibre to matrix bond, and, hence also, the composite properties.
This paper aims the use of enzymatic methods to address twokey factors of fibres which influence the performance in oil palmbiomass reinforced PLA composites. First, this approach has beenused to help separate the fibre bundles into the fibre components.Second, this methodology has been employed to alter the surfacecharacteristics of the fibres with the aim to improve the interactionwith a resin matrix and, simultaneously, remove any looselybonded materials that would otherwise influence the fibre to matrix bond, and, hence also, the composite properties.
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