In this report, we focus our effort to extract cellulose nanomaterials (CNs) from an agricultural cellulosic waste, Dragon Fruit foliage (DFF). DFF was first pretreated by several mechanical treatments and then bleached by chemical treatment to obtain bleached DFF. CNs were then produced from the hydrolysis of the bleached DFF catalyzed by sulfuric acid. We obtained CNs with a small diameter (50 to 130 nm) and length (100 to 500 nm) and a height of 3 to 10 nm. The CNs have a high crystallinity (crystallinity index 84.8%), high −COOH content (0.74 mmol·g−1), good thermal stability and a good Cu (II) adsorption capacity with an adsorption maximum of ~103 mg·g−1. These findings demonstrated the great potential of converting many agricultural c...
Introduction: Agriculture fields such as wood, bast fibers, gasses, along with aquatic animals, alga...
Cellulose is the most abundant biopolymer on earth and is the chain of glucose residues that can be ...
Recently, considerable interest has been focused on developing greener and biodegradable materials d...
Cellulose, microcrystalline cellulose and nanocellulose were prepared from three agricultural waste ...
International audienceCellulose nanocrystals (CNCs) have long been an interest of researchers becaus...
Cellulose nanocrystals with various functionalities have received significant interest in recent yea...
International audienceCellulose nanospheres (CN) have been considered a leading type of nanomaterial...
Valorization of lotus leaf stalks (LLS) produced as an abundantly available agro-waste was achieved ...
Cellulose is a very widely available biomass found in nature. Cellulose can be isolated from regular...
The isolation of nanocellulose from different agricultural residues is becoming an important researc...
The increase of agri-food wastes by agriculture and industries is one of the main causes of environm...
Pineapple crown leaf fiber (PCLF) is one of the major biomass wastes from pineapple processing plant...
Two very different types of cellulosic materials that may be isolated from plant-based sources are h...
Over the past few decades, enormous interest has been manifested in using biomass as a source of re...
Nanomaterial is one of the recent technological advancements that attracts the attention of many sci...
Introduction: Agriculture fields such as wood, bast fibers, gasses, along with aquatic animals, alga...
Cellulose is the most abundant biopolymer on earth and is the chain of glucose residues that can be ...
Recently, considerable interest has been focused on developing greener and biodegradable materials d...
Cellulose, microcrystalline cellulose and nanocellulose were prepared from three agricultural waste ...
International audienceCellulose nanocrystals (CNCs) have long been an interest of researchers becaus...
Cellulose nanocrystals with various functionalities have received significant interest in recent yea...
International audienceCellulose nanospheres (CN) have been considered a leading type of nanomaterial...
Valorization of lotus leaf stalks (LLS) produced as an abundantly available agro-waste was achieved ...
Cellulose is a very widely available biomass found in nature. Cellulose can be isolated from regular...
The isolation of nanocellulose from different agricultural residues is becoming an important researc...
The increase of agri-food wastes by agriculture and industries is one of the main causes of environm...
Pineapple crown leaf fiber (PCLF) is one of the major biomass wastes from pineapple processing plant...
Two very different types of cellulosic materials that may be isolated from plant-based sources are h...
Over the past few decades, enormous interest has been manifested in using biomass as a source of re...
Nanomaterial is one of the recent technological advancements that attracts the attention of many sci...
Introduction: Agriculture fields such as wood, bast fibers, gasses, along with aquatic animals, alga...
Cellulose is the most abundant biopolymer on earth and is the chain of glucose residues that can be ...
Recently, considerable interest has been focused on developing greener and biodegradable materials d...