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Rigid PU foam<br />

Advantages of <strong>Exolit</strong> AP:<br />

> Enables non-halogenated,<br />

pentane based DIN 4102 B2<br />

formulations<br />

> Easily dispersible in polyols<br />

> Perfectly incorporated<br />

> No migration, no emissions<br />

> Only slight influence on<br />

mechanical foam properties<br />

> Reduced smoke values<br />

10<br />

(DS) Flaming conditions<br />

250<br />

200<br />

150<br />

100<br />

50<br />

0<br />

1 2 3 4 5 6<br />

Time [min]<br />

halogenated FR <strong>Exolit</strong> AP 422 no FR<br />

CO HCI HCN<br />

Advantages of <strong>Exolit</strong> RP:<br />

> Highly efficient<br />

> Meet high requirements<br />

halogenated FR<br />

no Fr<br />

<strong>Exolit</strong> AP 422<br />

Figure 5: NBS Smoke chamber (ASTM-E 662): Specific optical smoke densities of burning rigid, n-pentane based DIN 4102 B2 foams<br />

(ppm) Smoke gas analysis<br />

200<br />

180<br />

160<br />

140<br />

120<br />

100<br />

80<br />

60<br />

40<br />

20<br />

0<br />

Figure 6: NBS Smoke chamber (ASTM-E 662): Combustion gas analysis of burning rigid,<br />

n-pentane based DIN 4102 B2 foams (flaming conditions)<br />

(DS) Smoldering conditions<br />

100<br />

80<br />

60<br />

40<br />

20<br />

0<br />

Advantages of <strong>Exolit</strong> OP:<br />

> Liquid, reactive (graftable)<br />

phosphorus polyol<br />

> Compatible with conventional<br />

production equipment by adding<br />

directly into the mixing head<br />

halogenated FR<br />

1 2 3 4 5 6<br />

Time [min]<br />

no Fr<br />

<strong>Exolit</strong> AP 422

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