In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to modify its characteristics for biocomposite applications. Treatment was conducted at temperatures 190–230 °C for 1, 2 and 3 h. SHS-treated OPMF was evaluated for its chemical composition, thermal stability, morphology and crystallinity. OPMF treated at 230 °C exhibited lower hemicellulose content (9%) compared to the untreated OPMF (33%). Improved thermal stability of OPMF was found after the SHS treatment. Moreover, SEM and ICP analyses of SHS-treated OPMF showed that silica bodies were removed from OPMF after the SHS treatment. XRD results exhibited that OPMF crystallinity increased after SHS treatment, indicating tougher fiber properties. H...
High-pressure steam treatment (HPST) is a potential alternative method for the modification of ligno...
Natural fiber is incompatible with hydrophobic polymer due to its hydrophilic nature. Therefore, sur...
Degradation of hemicellulose, low molecular weight lignin and some amount of cellulose during pretre...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
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 ...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
Surface modification of lignocellulose material is crucial in order to improve compatibility betwe...
Superheated steam (SHS) treatment is an effective method for hemicellulose removal from oil palm bio...
Superheated steam (SHS) pretreatment is an effective method for hemicellulose removal from oil palm ...
Superheated steam (SHS) pretreatment is an effective method for hemicellulose removal from oil palm ...
The effectiveness of superheated steam pretreatment on the enzymatic saccharification of oil palm me...
Abstract: In this paper, superheated steam (SHS) was used as cost effective and green processing tec...
High-pressure steam treatment (HPST) is a potential alternative method for the modification of ligno...
Natural fiber is incompatible with hydrophobic polymer due to its hydrophilic nature. Therefore, sur...
Degradation of hemicellulose, low molecular weight lignin and some amount of cellulose during pretre...
In this study, oil palm mesocarp fiber (OPMF) was treated with superheated steam (SHS) in order to m...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
In this work, surface modifications of oil palm mesocarp fiber were carried out by using superheated...
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 ...
In this paper, superheated steam (SHS) was used as cost effective and green processing technique to ...
Surface modification of lignocellulose material is crucial in order to improve compatibility betwe...
Superheated steam (SHS) treatment is an effective method for hemicellulose removal from oil palm bio...
Superheated steam (SHS) pretreatment is an effective method for hemicellulose removal from oil palm ...
Superheated steam (SHS) pretreatment is an effective method for hemicellulose removal from oil palm ...
The effectiveness of superheated steam pretreatment on the enzymatic saccharification of oil palm me...
Abstract: In this paper, superheated steam (SHS) was used as cost effective and green processing tec...
High-pressure steam treatment (HPST) is a potential alternative method for the modification of ligno...
Natural fiber is incompatible with hydrophobic polymer due to its hydrophilic nature. Therefore, sur...
Degradation of hemicellulose, low molecular weight lignin and some amount of cellulose during pretre...