The effectiveness of superheated steam (SHS) as an alternative, eco-friendly treatment method to modify the surface of pineapple leaf fiber (PALF) for biocomposite applications was investigated. The aim of this treatment was to improve the interfacial adhesion between the fiber and the polymer. The treatment was carried out in an SHS oven for different temperatures (190–230 °C) and times (30–120 min). Biocomposites fabricated from SHS-treated PALFs and polylactic acid (PLA) at a weight ratio of 30:70 were prepared via melt-blending techniques. The mechanical properties, dimensional stability, scanning electron microscopy (SEM), and X-ray diffraction (XRD) for the biocomposites were evaluated. Results showed that treatment at...
In this study, three types of oil palm biomass (OPB) namely, oil palm mesocarp fiber (OPMF), oil pal...
In this study, biocomposites were fabricated through a compression moulding technique that used untr...
Natural fibres play a significant role in mass industries such as automotive, construction and sport...
In this work, biocomposite from Polylactic acid (PLA) and Pineapple leaf fiber (PALF) was prepared w...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
The effect of fiber surface modification by superheated steam (SHS) treatment and fiber content (30 ...
Abstract: In this paper, superheated steam (SHS) was used as cost effective and green processing tec...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
Superheated steam (SHS) treatment is an effective method for hemicellulose removal from oil palm bio...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
Surface modification of lignocellulose material is crucial in order to improve compatibility betwe...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
The objective of this study was to investigate the physical, mechanical, and thermal properties of p...
In this study, three types of oil palm biomass (OPB) namely, oil palm mesocarp fiber (OPMF), oil pal...
In this study, biocomposites were fabricated through a compression moulding technique that used untr...
Natural fibres play a significant role in mass industries such as automotive, construction and sport...
In this work, biocomposite from Polylactic acid (PLA) and Pineapple leaf fiber (PALF) was prepared w...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
The effect of fiber surface modification by superheated steam (SHS) treatment and fiber content (30 ...
Abstract: In this paper, superheated steam (SHS) was used as cost effective and green processing tec...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
Superheated steam (SHS) treatment is an effective method for hemicellulose removal from oil palm bio...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
Surface modification of lignocellulose material is crucial in order to improve compatibility betwe...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
The objective of this study was to investigate the physical, mechanical, and thermal properties of p...
In this study, three types of oil palm biomass (OPB) namely, oil palm mesocarp fiber (OPMF), oil pal...
In this study, biocomposites were fabricated through a compression moulding technique that used untr...
Natural fibres play a significant role in mass industries such as automotive, construction and sport...