This study addresses the modification and characterization of Conium maculatum fiber to enhance its usability as reinforcement in polymeric composite materials. The fibers were treated with alkali, silane, potassium permanganate, potassium dichromate and silicone oil, then surface chemistry (fourier transform spectroscopy and X-ray photoelectron spectroscopy), thermal stability (thermogravimetric analysis) and morpho-structure (X-ray diffraction and scanning electron microscopy) of the fibers were characterized by instrumentally. It was determined that the treatments increased hydrogen bond index and oxygen/carbon atomic ratio of the fibers. Alkali treatment had a positive impact on crystallinity index of the fiber by improving crystallite ...
Composite materials with natural fillers have been increasingly used as an alternative to synthetica...
The plant fibers are rich in cellulose and they are easily renewable source of fibers with the poten...
The aim was to explore the utilization of oil palm mesocarp fiber (OPMF) as a source for the product...
This study addresses the modification and characterization of Conium maculatum fiber to enhance its ...
The aim of the study is to evaluate the use of undervalued Conium maculatum plant fibersas a new pot...
This paper presents experimental results on the effect of alkalis such as Potassium Hydroxide (KOH) ...
A new class of leaf stalk fibers of the palm tree were extracted and treated with a 5% NaOH solution...
Cellulose is an environmentally friendly material which is obtainable in vast quantities, since it i...
The aim of this study is to look into the effect of chemical treatments on fibers extracted from the...
International audienceAlfa stems are rich in cellulose and they are an inexpensive, easily renewable...
This research is focused to fundamentally understand the benefits of using Agave Americana C. plant ...
International audienceThe use of cellulosic fibres as reinforcement in a mineral matrix (in our case...
Agro-residues fibers are inexpensive environmentally friendly alternatives to synthetic fibers in fi...
Oil palm fronds (OPF) are agricultural by product and economical natural fibers resources. Cellulose...
In this work, the surface of oil palm mesocarp fiber (OPMF) was modified via alkaline-peroxide treat...
Composite materials with natural fillers have been increasingly used as an alternative to synthetica...
The plant fibers are rich in cellulose and they are easily renewable source of fibers with the poten...
The aim was to explore the utilization of oil palm mesocarp fiber (OPMF) as a source for the product...
This study addresses the modification and characterization of Conium maculatum fiber to enhance its ...
The aim of the study is to evaluate the use of undervalued Conium maculatum plant fibersas a new pot...
This paper presents experimental results on the effect of alkalis such as Potassium Hydroxide (KOH) ...
A new class of leaf stalk fibers of the palm tree were extracted and treated with a 5% NaOH solution...
Cellulose is an environmentally friendly material which is obtainable in vast quantities, since it i...
The aim of this study is to look into the effect of chemical treatments on fibers extracted from the...
International audienceAlfa stems are rich in cellulose and they are an inexpensive, easily renewable...
This research is focused to fundamentally understand the benefits of using Agave Americana C. plant ...
International audienceThe use of cellulosic fibres as reinforcement in a mineral matrix (in our case...
Agro-residues fibers are inexpensive environmentally friendly alternatives to synthetic fibers in fi...
Oil palm fronds (OPF) are agricultural by product and economical natural fibers resources. Cellulose...
In this work, the surface of oil palm mesocarp fiber (OPMF) was modified via alkaline-peroxide treat...
Composite materials with natural fillers have been increasingly used as an alternative to synthetica...
The plant fibers are rich in cellulose and they are easily renewable source of fibers with the poten...
The aim was to explore the utilization of oil palm mesocarp fiber (OPMF) as a source for the product...