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Polyhexamethylene oxide

A comparison of the thermal stability of polyethylene oxide, polypropylene oxide, polyethylene and polypropylene has been presented by Madorsky and Straus [230]. More recently, studies on the thermal degradation of polytetramethylene oxide (I), polyhexamethylene oxide (II) and polydioxolane (III)... [Pg.109]

Poly(dimethyl siloxane) (PDMS) provides good thermal and oxidative stability and was incorporated into a PUR backbone in the presence of polyhexamethylene oxide (PHMO), a compatibiUzer that facilitates the incorporation of the nonpolar PDMS macrodiol. Long-term stability was danonstrated for PDMS-based PUR synthesized using 20% PHMO and 80% PDMS (Dabagh et al, 2005 Simmons et al, 2004). [Pg.391]

Polyhexamethylene Biguanide [II, 18.3.3.] Pool/Spa Sanitizer/Algistat 6.0-10.Oppm as active Easy to handle Completely water soluble Does not effect water balance Stable to sunlight Effective over wide pH range Shelf-life stable Effective in presence of high organic load Requires a separate oxidizer Increases maintenance of filter More expensive than chlorine products... [Pg.143]

ClnH2flNNaOi7, Sodium hyaluronate tetrahydrate, 41B, 496 Ci H26N202f Poly(heptamethylene pimelamide), 23, 629 C16H30N2O2, Polyhexamethylene sebacamide (nylon 6.10), 11, 594 C18H12O, Poly(2,6-diphenyl p-phenylene oxide), 35B, 886 C20H18O6S2, Poly(1,2-bis(p-tolylsulphonyloxymethylene)-1-buten-3-ynylene), 43B, 111... [Pg.661]


See other pages where Polyhexamethylene oxide is mentioned: [Pg.484]   
See also in sourсe #XX -- [ Pg.13 , Pg.391 ]

See also in sourсe #XX -- [ Pg.13 , Pg.391 ]




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