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Downstream fine chemicals made from acrylonitrile hold market potential and involve relatively simple production processes; please share your opinions. Those who are familiar with market and technical information are encouraged to exchange ideas more frequently. I will do my best, within the scope of this topic, to outline the market and technologies related to the fine chemicals produced from acrylonitrile; I also welcome friends to join in this effort. J-type modified acrylic resin emulsion --> Chlorpyrifos EC --> Rubber paste 202BA --> 1,4-Bis(3-aminopropyl)piperazine --> Adhesive BA --> Dodecyl thiodipropionate --> Nitrile rubber NBR --> N-Hydroxymethylacrylamide --> Coating printing adhesive --> N,N-Dicyanoylethylaniline --> 2-Chloro-2-trichloroethyl-3,3-dimethylcyclobutane --> Coupling agent NBC-1 --> Fixing and crosslinking agent P, Crosslinking agent P, Crosslinking agent H, Crosslinking agent 101 --> Dimethylaminonitrile --> Diethyl 2-(2-cyanoethyl)malonate --> 1,2-Dibromo-2,4-dicyanobutane --> Leather brightener --> N,N-Diethylethylenediamine --> 2-Oxo-3-**ethanoate --> 1-(3-Aminopropyl)imidazole --> Non-ionic polyacrylamide --> Cationic polyacrylamide --> Furazanthiamine --> FX-1 acrylic resin emulsion --> Cimetridin --> 3-(Piperazin-1-yl)cyanopropene --> Dithioacetic acid --> N-2-Cyanoethylpyrrole --> 2,3-Dichloropropionitrile --> N-(2-Cyanoethyl)glycine --> 3-Diethylaminopropylamine --> Interpenetrating ion-exchange resin --> Sodium carboxymethyl starch --> 2,3-Dibromopropionitrile --> Tebuconazole --> Copolymer of acrylamide and sodium acrylate --> 3-Chloropropionitrile --> N,N-Dibenzylhydroxylamine
We use acrylonitrile to make polymer polyols