Lignins from a steam explosion process in crude and purified forms and modified sulphur-free commercial lignin (Protobind 3000®) were characterised to establish their chemical compositions. Then, the lignins were tested again after treatment with hexamethylenetetramine (HMT). The resulting products were used to make rubber composites, and their mechanical properties were compared to rubber composites made with carbon black to test the possibility of using HMT-treated lignins as a partial replacement for carbon black in the production of rubber composites. In the crude lignin, a significant amount of impurities were detected, such as ash and residual polysaccharides, and these substances interfered in filler-elastomer interactions. The purif...
The pursuit of high volume and high value-added applications for lignin has been a long-term challen...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Native lignin is an abundant biopolymer on earth and represents 15-30% by weight of the lignocellulo...
Lignins from a steam explosion process in crude and purified forms and modified sulphur-free commerc...
The aim of this work was related to development of economically viable method of extraction of ligni...
In this work, the possibility to conveniently exploit lignin as a functional additive for natural ru...
From an environmental and economic viewpoint, it is a win-win strategy to use materials obtained fro...
The development of hydrothermally treated (HTT) lignin as a promising reinforcing filler for elastom...
Abstract — Carbon, silica etc are added to natural rubber as filler to improve the mechanical proper...
The purpose of this research was to study the feasibility of lignin as an antioxidant for tire tread...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
Lignin is an abundantly occurring aromatic biopolymer that receives increasing attention as, e.g., a...
The work deals with the application of biopolymer fillers in rubber formulations. Calcium lignosulfo...
The aromatic biopolymer lignin, present in lignocellulosic material, can act as an antioxidant and h...
This study investigated the role of polybutadiene-g-polypentafluorostyrene (PB-g-PPFS) as a coupling...
The pursuit of high volume and high value-added applications for lignin has been a long-term challen...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Native lignin is an abundant biopolymer on earth and represents 15-30% by weight of the lignocellulo...
Lignins from a steam explosion process in crude and purified forms and modified sulphur-free commerc...
The aim of this work was related to development of economically viable method of extraction of ligni...
In this work, the possibility to conveniently exploit lignin as a functional additive for natural ru...
From an environmental and economic viewpoint, it is a win-win strategy to use materials obtained fro...
The development of hydrothermally treated (HTT) lignin as a promising reinforcing filler for elastom...
Abstract — Carbon, silica etc are added to natural rubber as filler to improve the mechanical proper...
The purpose of this research was to study the feasibility of lignin as an antioxidant for tire tread...
Lignin is one of the most abundant biopolymers on earth, constituting approximately 30% of the dry w...
Lignin is an abundantly occurring aromatic biopolymer that receives increasing attention as, e.g., a...
The work deals with the application of biopolymer fillers in rubber formulations. Calcium lignosulfo...
The aromatic biopolymer lignin, present in lignocellulosic material, can act as an antioxidant and h...
This study investigated the role of polybutadiene-g-polypentafluorostyrene (PB-g-PPFS) as a coupling...
The pursuit of high volume and high value-added applications for lignin has been a long-term challen...
The scope of this work is to introduce the by-product material lignin of the industrial pulping proc...
Native lignin is an abundant biopolymer on earth and represents 15-30% by weight of the lignocellulo...