Abstract:
A process is disclosed for recovering pure cellulose from a cellulose-containing sludge, the process comprising treating a sludge cellulose source under conditions permitting dissolution of non-cellulose material and suspension of the cellulose, wherein said dissolution conditions do not alter cellulose morphology.
Abstract:
A process is disclosed for recovering pure cellulose from a cellulose-containing sludge, the process comprising treating a sludge cellulose source under conditions permitting dissolution of non-cellulose material and suspension of the cellulose, wherein said dissolution conditions do not alter cellulose morphology.
Abstract:
The present invention relates to methods for generation of high molecular ordered fibrilar structures. More particularly, the method of the invention utilizes CBD's (cellulose binding domain) ability to form dimers for directing ordered assembly of fibrous proteins such as silk proteins into super-molecular fibrilar structures. The invention further provides fibrilar structures such as fibers and articles comprising said fibrilar structures.
Abstract:
The present invention relates to methods for generation of high molecular ordered fibrilar structures. More particularly, the method of the invention utilizes CBD's (cellulose binding domain) ability to form dimers for directing ordered assembly of fibrous proteins such as silk proteins into super-molecular fibrilar structures. The invention further provides fibrilar structures such as fibers and articles comprising said fibrilar structures.
Abstract:
Isolated polypeptides are disclosed comprising an amino acid sequence encoding a monomer of a fibrous polypeptide attached to a heterologous polysaccharide binding domain. Composites comprising same, methods of generating same and uses thereof are all disclosed.
Abstract:
Isolated polypeptides are disclosed comprising an amino acid sequence encoding a monomer of a fibrous polypeptide attached to a heterologous polysaccharide binding domain. Composites comprising same, methods of generating same and uses thereof are all disclosed.
Abstract:
Provided herein are polymers having the general formula I as defined herein, A-L-B Formula I as well as crosslinked polymers having the general formula III: B′-L′-A′-A″-L″-B″ Formula III and methods of preparing the polymers, wherein A is a dihydroxyphenyl moiety; A′-A″ is a pair of crosslinked dihydroxyphenyl moieties; B, B′ and B″ are each a biopolymer; and L, L′ and L″ are each a linking moiety. Further provided are crosslinked adhesives prepared from the polymers, methods of generating same by oxidizing a polymer, and uses thereof. Further provided are kits comprising an adhesive and an oxidizing agent.
Abstract:
Provided herein are polymers having the general formula I as defined herein, A-L-B Formula I as well as crosslinked polymers having the general formula III: B′-L′-A′-A″-L″-B″ Formula III and methods of preparing the polymers, wherein A is a dihydroxyphenyl moiety; A′-A″ is a pair of crosslinked dihydroxyphenyl moieties; B, B′ and B″ are each a biopolymer; and L, L′ and L″ are each a linking moiety. Further provided are crosslinked adhesives prepared from the polymers, methods of generating same by oxidizing a polymer, and uses thereof. Further provided are kits comprising an adhesive and an oxidizing agent.