Process for the flame-retardant treatment of fiber products
In the case of fiber products which contain from 20 to 100% by weight of cellulose fibers, flame-retardant properties can be achieved by applying a polyethylenimine and a phosphonic acid to the fiber products or to precursors thereof. The precursors of the fiber products may be aqueous fiber suspensions which are further processed to give paper or fiberboards.
1 . A process for the flame-retardant treatment of a fiber product which contains from 20 to 100% by weight of cellulose fibers, based on the weight of the anhydrous fiber product, the fiber product or a precursor thereof being treated in succession or simultaneously with a component A and a component B, component A being a branched polyethylenimine which contains primary, secondary and tertiary amino groups and which has a weight average molecular weight in the range from 5000 to 1 500 000, and in which the numerical ratio of secondary amino groups to primary amino groups is in the range from 1.00:1 to 2.50:1 and the numerical ratio of secondary amino groups to tertiary amino groups is in the range from 1.20:1 to 2.00:1,
or component A being a mixture of such polyethylenimines,
component B being a phosphonic acid of the formula (I), (II) or of the formula (III)
in which, in the formulae (I), (II) or (III), in up to 50% of the OH groups bonded to phosphorus the hydrogen atom may be substituted by an alkali metal or an ammonium group,
or component B being a mixture of compounds which are selected from compounds of the formulae (I), (II) or (III),
in which
y may assume the values 0, 1 or 2
R 1 is H or OH,
R is a linear or branched alkyl radical which contains 1 to 7 carbon atoms when R 1 is OH and 3 to 7
carbon atoms when R 1 is H,
R 2 being
R 3 being H or R 2 , and
all radicals R 4 independently of one another, being H or
or being a radical of the formula (IV)
t being 0 or a number from 1 to 10.
2 . The process as claimed in claim 1 , wherein component B is a mixture of phosphonic acids of the formula (I) and of the formula (II), both of which are present in completely unneutralized form.
3 . The process as claimed in claim 1 , wherein component A is a polyethylenimine which is formed by polymerization of ethylenimine and which has the structure (V)
the polymerization optionally being acid-catalyzed,
it being possible for the individual units which contain tertiary amino groups and the individual units which contain secondary amino groups to be arbitrarily distributed over the polymer chain,
b being greater than a and a and b having values such that the conditions, mentioned in claim 1 , for the molecular weight and for the numerical ratios of the amino groups to one another are fulfilled or component A being a mixture of such polyethylenimines.
4 . The process as claimed in claim 1 , wherein the weight ratio of the amount of component A applied to the fiber product or to the precursor thereof to the amount of component B applied is in the range from 1:1.3 to 1:4.0.
5 . The process as claimed in claim 1 , wherein component A and/or component B are applied in the form of a mixture with water to the fiber product or to a precursor thereof.
6 . The process as claimed in claim 1 , wherein the precursor of the fiber product is present as an aqueous suspension of fibers.
7 . The process as claimed in 1 , wherein neither component A nor component B contains metals or metal compounds.
8 . The process as claimed in claim 1 , wherein, in addition to the components A and B, polymaleic acid or partly neutralized polymaleic acid and/or a partial ester of orthophosphoric acid is also applied to the fiber product or the precursor thereof.
9 . The process as claimed in claim 1 , wherein a precursor of the fiber product is treated simultaneously or in succession with a component A and a component B, and this precursor is then further processed under the action of heat and pressure to give a fiberboard or pressboard, this fiberboard or pressboard is then comminuted and is washed with water which contains one or more inorganic salts, then treated again with a component B and further processed under the action of heat and pressure to give a fiberboard and pressboard.
10 . The process as claimed in claim 1 , wherein component B is a phosphonic acid in which 100% of the OH groups bonded to phosphorus are present in unneutralized form.
11 . The process as claimed in claim 1 , wherein y has the value 0.
12 . The process as claimed in claim 1 , wherein R 3 is R 2 .
13 . The process as claimed in claim 1 , wherein 50 to 100% of all radicals R 4 present are
14 . The process as claimed in claim 9 , wherein component A is applied earlier than the component B.