Features Fiber length (95 %) 2&ndash20 &mum, average degree of polymerization 400&ndash500 specific surface acc. to Blaine 15000 cm 2 /g &le 20 ppm Fe, 6 ppm Cu, 7 ppm P dichloromethane extract &le 0.
Features Fiber length (95 %) 2&ndash20 &mum, average degree of polymerization 400&ndash500 specific surface acc. to Blaine 15000 cm 2 /g &le 20 ppm Fe, 6 ppm Cu, 7 ppm P dichloromethane extract &le 0.
Silica 60, specific surface (BET) ~ 500 m 2 /g, mean pore size 60 Å, specific pore volume 0.75 mL/g, particle size 5&ndash17 µm standard grade Thickness of layer for analytical plates 0.
Silica 60, specific surface (BET) ~ 500 m 2 /g, mean pore size 60 Å, specific pore volume 0.75 mL/g, particle size 5&ndash17 µm standard grade Thickness of layer for analytical plates 0.
Polyamide 6 = Nylon 6 = perlon = &epsilon-Polycaprolactame separation mechanism based on hydrogen bonds to amide groups of the polymer matrix as well as on ionic, dipol and electron donor/acceptor interactions available as POLYGRAM® polyester sh
Polyamide 6 = Nylon 6 = perlon = &epsilon-Polycaprolactame separation mechanism based on hydrogen bonds to amide groups of the polymer matrix as well as on ionic, dipol and electron donor/acceptor interactions available as POLYGRAM® polyester sh
Features Fiber length (95 %) 2&ndash20 &mum, average degree of polymerization 400&ndash500 specific surface acc. to Blaine 15000 cm 2 /g &le 20 ppm Fe, 6 ppm Cu, 7 ppm P dichloromethane extract &le 0.
Features Fiber length (95 %) 2&ndash20 &mum, average degree of polymerization 400&ndash500 specific surface acc. to Blaine 15000 cm 2 /g &le 20 ppm Fe, 6 ppm Cu, 7 ppm P dichloromethane extract &le 0.
Silica 60, specific surface (BET) ~ 500 m 2 /g, mean pore size 60 Å, specific pore volume 0.75 mL/g, particle size 5&ndash17 µm standard grade Thickness of layer for analytical plates 0.
Silica 60, specific surface (BET) ~ 500 m 2 /g, mean pore size 60 Å, specific pore volume 0.75 mL/g, particle size 5&ndash17 µm standard grade Thickness of layer for analytical plates 0.