Abstract:
The invention relates to a method for producing a metalized textile surface, characterized in that (A) a formulation is applied in a pattern or laminarly, containing at least one metal powder (a) as a component, (B) a further metal is deposited on the textile surface, (C) a further layer is applied, containing carbon in the modification as soot or carbon nanotubes or graphene.
Abstract:
Disclosed are microcapsules comprising: (A) 50 to 95 parts by weight of lipophilic core material that has a solid/liquid phase transition at a temperature ranging from -20 to 120°C; (B) 4 to 50 parts by weight of capsule wall; and (C) 0.01 to 10 parts by weight of at least one color or coloring matter selected from oil-soluble colors and oil-soluble whitening agents, the parts by weight being in relation to the total weight of the respective microcapsule.
Abstract:
Products, obtained by reacting of at least one compound of the common formula I with at least one compound of the common formula II under acidic conditions, wherein the variables are defined as follows: a is selected from whole numbers in the range from 0 to 2, n is chosen from whole numbers in the range from 1 to 4, R1 is chosen from C1-C4-alkyl, R2, R3 and R4 are identical or different and are selected from hydrogen and C1-C8-alkyl.
Abstract:
Microcápsulas, que incluyen (A) en el rango de 50 a 95 partes en peso de material núcleo lipófilo, que exhibe una transición de fasessólido/líquido en el rango de temperatura de -20 a 120°C, (B) en el rango de 4 a 50 partes en peso de pared de cápsula, y (C) en el rango de 0,01 a 10 partes en peso de por lo menos un material coloreado o que aporta color,elegido de entre colorantes solubles en aceite y aclaradores solubles en aceite,donde los datos en partes en peso se refieren al peso total de las microcápsulas en cuestión,donde la pared de cápsula (B) es un (co)polímero, que está construido de30 a 100 % en peso de por lo menos un monómero (monómero I), elegido de entre ácido acrílico, ácidometacrílico, ácido maleico y alquilésteres C1-C24 del ácido (met)acrílico, 0 a 70 % en peso de uno o varios monómeros bi- o polifuncionales (monómero II), el (los) cual(es) es o bien sonno solubles en agua o difícilmente solubles en agua y 0 a 40 % en peso de uno o varios otros monómeros (monómero III),donde los datos en % en peso se refieren al peso total de la pared de cápsula (B).
Abstract:
Método para tratar sustratos textiles, caracterizado porque se emplea al menos una formulación acuosa que contiene (A) al menos un aglutinante a base de acrilato que no contiene incorporados al polímero comonómeros que pueden disociar por mol un equivalente de formaldehído bajo el efecto de temperaturas en el rango de 100 hasta 250°C, (B) al menos un producto de reacción de al menos una carbodiimida polimérica (C) con al menos un diol, triol o poliol (D), o (C) al menos una carbodiimida polimérica y (D) al menos un diol, triol o poliol.
Abstract:
The invention relates to a method for producing a metalized textile surface, characterized in that (A) a formulation is applied in a pattern or laminarly, containing at least one metal powder (a) as a component, (B) a further metal is deposited on the textile surface, (C) a further layer is applied, containing carbon in the modification as soot or carbon nanotubes or graphene.
Abstract:
The invention relates to the use of an enzyme preparation which catalyzes the degradation of formaldehyde for reducing the formaldehyde content in a formaldehyde-containing formulation. In a preferred embodiment, the enzyme preparation contains a formaldehyde dismutase from a Pseudomonas putida strain. Further, the invention refers to a process for reducing the formal dehyde content in cross-linking agents for textile finishing or in polymer dispersions used, e.g. in construction chemistry. Further the invention relates to the use of an enzyme preparation which catalyzes the degradation of aldehydes for reducing the formaldehyde content in an aldehyde-containing formulation. Furthermore, the invention relates to a novel variant of the formaldehyde dismutase from Pseudomonas putida.
Abstract:
The invention relates to the use of an enzyme preparation which catalyzes the degradation of formaldehyde for reducing the formaldehyde content in a formaldehyde-containing formulation. In a preferred embodiment, the enzyme preparation contains a formaldehyde dismutase from a Pseudomonas putida strain. Further, the invention refers to a process for reducing the formal dehyde content in cross-linking agents for textile finishing or in polymer dispersions used, e.g. in construction chemistry. Further the invention relates to the use of an enzyme preparation which catalyzes the degradation of aldehydes for reducing the formaldehyde content in an aldehyde-containing formulation. Furthermore, the invention relates to a novel variant of the formaldehyde dismutase from Pseudomonas putida.
Abstract:
A process for treating a substrate comprises utilizing at least one aqueous formulation comprising (A) at least one acrylate-based binder without interpolymerization of any comonomer capable of detaching, per mole, one equivalent of formaldehyde on exposure to a temperature in the range from 100 to 250° C., (B) at least one carbodiimide, (C) at least one diol, triol or polyol.