The present disclosure provides for a metal chelated polyol liquid and/or a metal chelated polyether polyol liquid that can be used in an isocyanate-reactive composition and a reaction mixture for forming a polyurethane polymer. The metal chelated polyester polyol liquid is a reaction product of a chelating polyester polyol having a chelating moiety and a metal compound having a metal ion. The metal chelated polyether polyol liquid is a reaction product of a chelating polyether polyol having a chelating moiety and a metal compound having a metal ion. The chelating moiety of the chelating polyester polyol or the chelating polyether polyol chelates the metal ion to form the metal chelated polyester polyol liquid or the metal chelated polyether polyol liquid, respectively, having a mole ratio of the metal ion to the chelating moiety of 0.05:1 to 2:1.
Polar Polyolefin Dispersion Based Seed Coating Composition
- Midland MI, US Xue Chen - Manvel TX, US Peng Gao - Shanghai, CN
International Classification:
A01N 25/10 A01N 25/24
Abstract:
A coated seed comprises a seed, and a coating composition coated on the seed comprising a polar polyolefin dispersion, which comprises: 1) a polar polyolefin; and 2) a neutralizing base; wherein the polar polyolefin is an olefin copolymer that contains one or more polar groups, wherein the polar groups are selected from the group consisting of a carboxylic acid group, a carboxylic acid anhydride group or a carboxylic acid salt moiety; wherein the neutralizing base is abase that modifies at least a portion of the carboxylic acid group, carboxylic acid anhydride group or carboxylic acid salt moiety of the polymer to form a stable aqueous dispersion with the polar polyolefin.
Embodiments of the present disclosure are directed towards water-based compositions that include a reaction product formed by reacting a polyol and an aminopolycarboxylic compound.
- Midland MI, US Xue Chen - Manvel TX, US Stephen W. King - Galveson TX, US
Assignee:
Dow Global Technologies LLC - Midland MI
International Classification:
C08G 18/78 C08G 18/40
Abstract:
Embodiments of the present disclosure are directed towards solventless compositions that include a reaction product formed by reacting a polyol and an aminopolycarboxylic compound.
- Midland MI, US Xue Chen - Manvel TX, US Stephen W. King - Galveson TX, US
Assignee:
Dow Global Technologies LLC - Midland MI
International Classification:
C08G 18/08 C08G 18/38
Abstract:
Embodiments of the present disclosure are directed towards solvent-based compositions that include a reaction product formed by reacting a polyol and an aminopolycarboxylic compound.
Xue Chen - Manvel TX, US Stephen King - League City TX, US
International Classification:
C08L 97/02 C08L 63/00 B27K 3/15 B27K 3/34
Abstract:
A treated cellulosic material comprising a cellulosic material having a porous structure defining a plurality of pores, the cellulosic material comprising wood including wood or wood composite materials, at least a portion of the pores containing the reaction product of one or more of the following: a water soluble polyol, an epoxy-containing resin, a catalyst or curing agent, and the cellulosic material. A method for preparing a treated cellulosic material comprising providing a cellulosic material; a first treatment protocol comprising impregnating the cellulosic material with a water-soluble polyol; and a second treatment protocol comprising impregnating the cellulosic material with an epoxy-containing resin.
A method for preparing a treated cellulosic material comprising: providing a cellulosic material; a first treatment protocol comprising impregnating the cellulosic material with an aqueous solution comprising a polymer, the polymer comprising a water-soluble polyetheramine; and a second treatment protocol comprising impregnating the cellulosic material with a modifying agent, the modifying agent comprising an aqueous dispersion comprising an epoxy-containing resin.
The present disclosure describes a treated cellulosic material comprising a cellulosic material having a porous structure defining a plurality of pores, at least a portion of the pores containing a treating agent comprising a polymer, the polymer comprising a polyurethane polymer. The present disclosure further describes a method for preparing a treated cellulosic material comprising providing a cellulosic material; and a first treatment protocol comprising impregnating the cellulosic material with an aqueous dispersion comprising a polymer, the polymer comprising a polyurethane polymer; and a second treatment protocol comprising impregnating the cellulosic material with a modifying agent, the modifying agent comprising a hydrophobic amine.
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