A kind of modified ammonium polyphosphate composite intumescent flame retardant and its preparation method and application
A technology of intumescent flame retardant and ammonium polyphosphate, which is applied in the field of modified ammonium polyphosphate composite intumescent flame retardant and its preparation, can solve the problems of complex production process, high hygroscopicity, low flame retardant efficiency, etc. The effect of flame retardant efficiency, improving hygroscopicity and increasing char formation rate
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[0029] The preparation method of the modified ammonium polyphosphate composite intumescent flame retardant described in the present application specifically includes the following steps:
[0030] Step 1. Disperse the ammonium polyphosphate powder with a degree of polymerization greater than 1000 in deionized water to obtain a dispersion A with a mass percentage concentration of 10-40 wt%, and stir the dispersion A at a constant temperature of 25-45 ° C and gradually increase it. Add the chitosan derivative aqueous solution dropwise to obtain the reaction solution A, continue to stir the reaction solution A at a constant temperature for 15-120min, then wash and filter with deionized water;
[0031] Step 2. Disperse the powder product obtained after the filtration in the step 1 in deionized water to obtain a dispersion B with a mass percentage concentration of 10-40 wt %, and stir the dispersion B at a constant temperature of 25-45 ° C and gradually increase it. Add phytic acid ...
Embodiment 1
[0037] Step 1. Take 10 g of ammonium polyphosphate powder with a degree of polymerization greater than 1000 and disperse it in 15 mL of deionized water to obtain a dispersion A with a mass percentage concentration of 40 wt%. A chitosan derivative aqueous solution with a pH value of 5.5 and a mass percentage concentration of 4 wt % prepared with a chitosan phosphate with a molecular weight of 50 kDa was 62.5 mL to obtain a reaction solution A, and in the reaction solution A, the ammonium polyphosphate powder and shell The mass ratio of the polysaccharide derivative was 4:1, and the reaction solution was continuously stirred at a constant temperature for A30min, then washed and filtered;
[0038]Step 2. Disperse the powder product obtained after the filtration in the step 1 in 15 mL of deionized water to obtain a dispersion B. Stir the dispersion B at a temperature of 25 ° C and gradually add dropwise to it with a pH value of 3.0 and a mass percent concentration. 25 mL of 8wt% p...
Embodiment 2
[0042] Step 1. Disperse 10 g of ammonium polyphosphate powder with a degree of polymerization greater than 1000 in 30 mL of deionized water to obtain a dispersion A with a mass percentage concentration of 25 wt%, stir the dispersion A at a temperature of 25 ° C, and gradually add dropwise to it 47.6 mL of an aqueous solution of chitosan derivatives with a pH value of 3.5 and a mass percentage concentration of 3 wt % prepared from chitosan polyphosphate with a molecular weight of 150 kDa to obtain a reaction solution A, and the ammonium polyphosphate powder in the reaction solution A The mass ratio to the chitosan derivative is 7:1, continue to stir the reaction solution at constant temperature for A30min, then wash and filter;
[0043] Step 2. Disperse the powder product obtained after the filtration in the step 1 in 30 mL of deionized water to obtain a dispersion B. Stir the dispersion B at a temperature of 25 ° C and gradually add dropwise to it with a pH value of 4.0 and a m...
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