In this study, jackfruit cellulose was extracted by undergoing two stepsbleaching and alkaline treatment. The first step was the production of holocellulose by using bleaching method that removed the lignin from the jackfruit rind (JR). Next step was converting the holocellulose into cellulose by using alkaline treatment at room temperature. The percentage of cellulose extracted from JR in this study was 40% which was higher than the previous research. The characterizations of extracted JR cellulose were investigated by using Fourier Transform Infrared Spectrometer (FTIR) and Scanning Electron Microscopy (SEM). FTIR confirmed that the removal of non-cellulosic components in the jackfruit fibre and the micrograph by SEM displayed a rough sur...
In this work, we successfully extracted cellulose microfibrils from ficus leaves adopting the acidch...
The main objectives of this study were to develop jackfruit-based high fiber bread by utilizing jac...
Conocarpus fiber is an abundantly available and sustainable cellulosic biomass. With its richness in...
Pectin was extracted from jackfruit (Artocarpus heterophyllus) waste using three different extractio...
AbstractPectin was extracted from jackfruit (Artocarpus heterophyllus) waste using three different e...
Jackfruit plant (artocarpus heterophyllus lamk) is know as multipurpose tree. A chemical analysis of...
Considering the expected increasing demand for cellulose fibers in the near future and that its majo...
In this study, microcrystalline cellulose (MCC) was isolated from walnut and apricot shells (WS and ...
The effects of chlorite bleaching on the properties of cellulose derived from oil palm empty fruit b...
AbstractCellulose was extracted from durian rind using delignification with acidic sodium chlorite t...
Cellulose was extracted from durian rind using delignification with acidic sodium chlorite then foll...
Oil palm fronds (OPF) are agricultural by product and economical natural fibers resources. Cellulose...
The existing polymer microbeads for skin extraction ingredients have many disadvantages in environme...
In this study, microcrystalline cellulose (MCC) was extracted from empty fruit bunch (EFB) with alka...
The aim was to explore the utilization of oil palm mesocarp fiber (OPMF) as a source for the product...
In this work, we successfully extracted cellulose microfibrils from ficus leaves adopting the acidch...
The main objectives of this study were to develop jackfruit-based high fiber bread by utilizing jac...
Conocarpus fiber is an abundantly available and sustainable cellulosic biomass. With its richness in...
Pectin was extracted from jackfruit (Artocarpus heterophyllus) waste using three different extractio...
AbstractPectin was extracted from jackfruit (Artocarpus heterophyllus) waste using three different e...
Jackfruit plant (artocarpus heterophyllus lamk) is know as multipurpose tree. A chemical analysis of...
Considering the expected increasing demand for cellulose fibers in the near future and that its majo...
In this study, microcrystalline cellulose (MCC) was isolated from walnut and apricot shells (WS and ...
The effects of chlorite bleaching on the properties of cellulose derived from oil palm empty fruit b...
AbstractCellulose was extracted from durian rind using delignification with acidic sodium chlorite t...
Cellulose was extracted from durian rind using delignification with acidic sodium chlorite then foll...
Oil palm fronds (OPF) are agricultural by product and economical natural fibers resources. Cellulose...
The existing polymer microbeads for skin extraction ingredients have many disadvantages in environme...
In this study, microcrystalline cellulose (MCC) was extracted from empty fruit bunch (EFB) with alka...
The aim was to explore the utilization of oil palm mesocarp fiber (OPMF) as a source for the product...
In this work, we successfully extracted cellulose microfibrils from ficus leaves adopting the acidch...
The main objectives of this study were to develop jackfruit-based high fiber bread by utilizing jac...
Conocarpus fiber is an abundantly available and sustainable cellulosic biomass. With its richness in...