Herein, this study extracted nanocrystalline cellulose (NC) and silica (SiO2) from raw oil palm leaves (OPL), and employed as nanofillers in polyethersulfone (PES) to produce NC-SiO2-PES as support to immobilize Candida rugosa lipase (CRL) (NC-SiO2-PES/CRL). XRD, TGA-DTG and FTIR-ATR data affirmed that NC and SiO2 were isolated from OPL with corresponding crystallinity indices of 68 % and 70 %. A 0.02 cm membrane size with 5% (w/v) of NC-SiO2 without PVP K30 was optimal for membrane fabrication. CRL immobilized on the Glut-AP-NC-SiO2-PES membrane gave a higher conversion of pentyl valerate (PeVa) (91.3 %, p < 0.05) compared to Glut-NC-SiO2-PES (73.9 %) (p < 0.05). Characterization of the NC-SiO2-PES/CRL biocatalyst verified the presence of ...
Hydrophobic wrinkled silica nanoparticles (WSNs) were obtained by surface functionalization with per...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
A greener processing route to replace the current environmentally-unfriendly esterification techniqu...
The present study reports the groundwork for preparing a greener catalyst, Candida rugosa lipase (CR...
An alternative environmentally benign support was prepared from nanocrystalline silica (SiO2), and c...
The contribution of chitosan/nanocellulose (CS-NC) to the enzymatic activity of Candida rugosa lipas...
Till date, studies that investigated the effect of glutaraldehyde concentration on catalytic efficac...
Till date, studies that investigated the effect of glutaraldehyde concentration on catalytic efficac...
Strategies to immobilize the individual enzymes are crucial for enhancing catalytic applicability an...
Herein, silica (SiO2) extracted from treated oil palm leaves ash (TOPLA) was coated over Fe3O4 (SiO2...
Lipases are ubiquitous enzymes whose physiological role is the hydrolysis of triacylglycerol into fa...
The study reports the preparation of a composite consisting of magnetite coated with nanosilica extr...
Oil palm leaves (OPL) silica (SiO2) can replace the energy-intensive, commercially produced SiO2. Mo...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
Hydrophobic wrinkled silica nanoparticles (WSNs) were obtained by surface functionalization with per...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
A greener processing route to replace the current environmentally-unfriendly esterification techniqu...
The present study reports the groundwork for preparing a greener catalyst, Candida rugosa lipase (CR...
An alternative environmentally benign support was prepared from nanocrystalline silica (SiO2), and c...
The contribution of chitosan/nanocellulose (CS-NC) to the enzymatic activity of Candida rugosa lipas...
Till date, studies that investigated the effect of glutaraldehyde concentration on catalytic efficac...
Till date, studies that investigated the effect of glutaraldehyde concentration on catalytic efficac...
Strategies to immobilize the individual enzymes are crucial for enhancing catalytic applicability an...
Herein, silica (SiO2) extracted from treated oil palm leaves ash (TOPLA) was coated over Fe3O4 (SiO2...
Lipases are ubiquitous enzymes whose physiological role is the hydrolysis of triacylglycerol into fa...
The study reports the preparation of a composite consisting of magnetite coated with nanosilica extr...
Oil palm leaves (OPL) silica (SiO2) can replace the energy-intensive, commercially produced SiO2. Mo...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
Hydrophobic wrinkled silica nanoparticles (WSNs) were obtained by surface functionalization with per...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...
A novel greener MNC/PES membrane was developed through an electrospinning technique for lipase immob...