Due to thermal and flame/fire sensitivity of biopolymers especially in plant-based biopolymer fillers, it is extremely and necessary to improve the reaction to flame. The bio-polymers currently are used in many applications and daily life products and due to the potential risks of its tendency to burn and widespread the flames. To overcome these risks, an introduction of flame retardant (FR) compounds, additives, or fillers based on organic and inorganic approaches such as nitrogen-based FRs, halogenated-based FRs, and nano fillers have becoming significant incorporated into biopolymers. Most traditional uses of FRs that involve halogenated and inorganic FRs are toxic and non-biodegradable during disposal. Thus, the need to look for more en...
Environmental issues, such as global warming, have been increasing, due to the rapid consumption of ...
The field of flame retardancy for polymeric materials (i.e. plastics, foams and in particular textil...
Recently, the potential use of biomacromolecules as low environmental impact flame retardants for di...
Recent advancements in natural fiber-reinforced polymer composites have engineered the need to procu...
The development of science and technology provides the availability of sophisticated products but co...
It would be difficult to imagine how modern life across the globe would operate in the absence of sy...
Due to environmental concerns, some of the conventional halogenated flame retardants have been banne...
Both in the academic and industrial worlds, the field of flame retardance of plastics and textile ma...
Lignin is a highly abundant bio-polymeric material that constitutes cellulose one of major component...
Biocomposites reinforced with natural fibers represent an eco-friendly and inexpensive alternative t...
Polymeric materials play an important role in our daily life due to their vast application range. Ho...
It is well-known that textiles, if not intrinsically flame retarded, burn vigorously and quickly whe...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
The objective of this study is to assess the efficiency of biobased carbonization agent in intumesce...
Biocomposites are made of natural fibers which are an attractive alternative to conventional synthet...
Environmental issues, such as global warming, have been increasing, due to the rapid consumption of ...
The field of flame retardancy for polymeric materials (i.e. plastics, foams and in particular textil...
Recently, the potential use of biomacromolecules as low environmental impact flame retardants for di...
Recent advancements in natural fiber-reinforced polymer composites have engineered the need to procu...
The development of science and technology provides the availability of sophisticated products but co...
It would be difficult to imagine how modern life across the globe would operate in the absence of sy...
Due to environmental concerns, some of the conventional halogenated flame retardants have been banne...
Both in the academic and industrial worlds, the field of flame retardance of plastics and textile ma...
Lignin is a highly abundant bio-polymeric material that constitutes cellulose one of major component...
Biocomposites reinforced with natural fibers represent an eco-friendly and inexpensive alternative t...
Polymeric materials play an important role in our daily life due to their vast application range. Ho...
It is well-known that textiles, if not intrinsically flame retarded, burn vigorously and quickly whe...
PLA has become a commodity polymer with wide applications in a number of fields. However, its high f...
The objective of this study is to assess the efficiency of biobased carbonization agent in intumesce...
Biocomposites are made of natural fibers which are an attractive alternative to conventional synthet...
Environmental issues, such as global warming, have been increasing, due to the rapid consumption of ...
The field of flame retardancy for polymeric materials (i.e. plastics, foams and in particular textil...
Recently, the potential use of biomacromolecules as low environmental impact flame retardants for di...