C07C69/66

Ultraviolet radiation absorbing polymer composition

The present invention includes an ultraviolet radiation absorbing polymer composition comprising the polymer compound of formula ##STR00001##
and compositions containing such an ultraviolet radiation absorbing polymer composition.

ULTRAVIOLET RADIATION ABSORBING POLYMER COMPOSITION
20200155432 · 2020-05-21 ·

The present invention includes an ultraviolet radiation absorbing polymer composition comprising the polymer compound of formula

##STR00001##

and compositions containing such an ultraviolet radiation absorbing polymer composition.

ULTRAVIOLET RADIATION ABSORBING POLYMER COMPOSITION
20200155432 · 2020-05-21 ·

The present invention includes an ultraviolet radiation absorbing polymer composition comprising the polymer compound of formula

##STR00001##

and compositions containing such an ultraviolet radiation absorbing polymer composition.

Biomass-resource-derived polyurethane, method for producing same, and biomass-resource-derived polyester polyol

The invention relates to a method for producing a biomass-resource-derived polyurethane, which comprises: reacting a dicarboxylic acid and an aliphatic diol to produce a polyester polyol; and reacting the polyester polyol and a polyisocyanate compound, wherein the dicarboxylic acid contains at least one component derived from biomass resources, a content of an organic acid in the dicarboxylic acid is more than 0 ppm and not more than 1,000 ppm relative to the dicarboxylic acid, and a pKa value of the organic acid at 25 C. is not more than 3.7.

Biomass-resource-derived polyurethane, method for producing same, and biomass-resource-derived polyester polyol

The invention relates to a method for producing a biomass-resource-derived polyurethane, which comprises: reacting a dicarboxylic acid and an aliphatic diol to produce a polyester polyol; and reacting the polyester polyol and a polyisocyanate compound, wherein the dicarboxylic acid contains at least one component derived from biomass resources, a content of an organic acid in the dicarboxylic acid is more than 0 ppm and not more than 1,000 ppm relative to the dicarboxylic acid, and a pKa value of the organic acid at 25 C. is not more than 3.7.

Ultraviolet radiation absorbing polymer composition

The present invention includes an ultraviolet radiation absorbing polymer composition comprising the polymer compound of formula ##STR00001##
and compositions containing such an ultraviolet radiation absorbing polymer composition.

Ultraviolet radiation absorbing polymer composition

The present invention includes an ultraviolet radiation absorbing polymer composition comprising the polymer compound of formula ##STR00001##
and compositions containing such an ultraviolet radiation absorbing polymer composition.

USE OF RENEWABLE OIL IN HYDROTREATMENT PROCESS
20190322947 · 2019-10-24 · ·

The use of bio oil from at least one renewable source in a hydrotreatment process, in which process hydrocarbons are formed from said glyceride oil in a catalytic reaction, and the iron content of said bio oil is less than 1 w-ppm calculated as elemental iron. A bio oil intermediate including bio oil from at least one renewable source and the iron content of said bio oil is less than 1 w-ppm calculated as elemental iron.

USE OF RENEWABLE OIL IN HYDROTREATMENT PROCESS
20190322947 · 2019-10-24 · ·

The use of bio oil from at least one renewable source in a hydrotreatment process, in which process hydrocarbons are formed from said glyceride oil in a catalytic reaction, and the iron content of said bio oil is less than 1 w-ppm calculated as elemental iron. A bio oil intermediate including bio oil from at least one renewable source and the iron content of said bio oil is less than 1 w-ppm calculated as elemental iron.

BIOMASS-RESOURCE-DERIVED POLYURETHANE, METHOD FOR PRODUCING SAME, AND BIOMASS-RESOURCE-DERIVED POLYESTER POLYOL

The invention relates to a method for producing a biomass-resource-derived polyurethane, which comprises: reacting a dicarboxylic acid and an aliphatic diol to produce a polyester polyol; and reacting the polyester polyol and a polyisocyanate compound, wherein the dicarboxylic acid contains at least one component derived from biomass resources, a content of an organic acid in the dicarboxylic acid is more than 0 ppm and not more than 1,000 ppm relative to the dicarboxylic acid, and a pKa value of the organic acid at 25 C. is not more than 3.7.