Direct Dyes Blue 106 for Paper Dyeing

Model NO.: 51300
C.I.No.: Direct Brill Blue Bl
Molecular Formula: C30h16cl2n4na2o8s2
Molecular Weight: 741.49
CAS No.: 6527-70-4
Related Name: Acdi Blue FF-2gl 200%
Light Fastness: 6-7
Washing Fatness: 3-4
Rubbing Fastness: 4-5
Trademark: emperor
Transport Package: Bag
Origin: China
HS Code: 3204140000
Direct Dyes Blue 106 for Paper Dyeing
 
Product Name: Direct Blue 106
C.I. No.: 51300
CAS No.: 6527-70-4
Molecular Formula:C30H16Cl2N4Na2O8S2
Molecular Weight: 741.49
Relatived Names:
ACDI Blue FF-2GL 200%; Anadurm Sky Blue D-F2G;Chrochem Direct Blue FF2GL; Dinamine Blue FF 2GL; Direct Brill Blue BL;Direct Brilliant Blue BL; Direct Fast Blue FF2GL; Direct Fast Sky Blue GD;Fast Blue BL; Intralite Brilliant Blue 2GLL; Permalite B rill Blue BL;Simrect Blue 24947; Tertrodirect Light Brilliant Blue 2GLN; Triacor Blue VLS.
 
Shade: bright blue powder
 
Direct Blue 106 Physical Properties and light fastness, solubility.
                                             Direct Blue 106
Density 1.31
Dyeing Depth % 2
Light Fastness 6-7
Washing Fatness 3-4
Rubbing fastness(dry) 4-5
Rubbing fastness(wet) 3
 
Direct Blue 106 application: Mainly used for cotton, viscose, silk, polyamide fiber fabric dyeing and printing, also can be used for leather dyeing.
 
 
Note: The data contained here are based on our current knowledge and experience. It is the responsibility of user to test our products before the final application.

EXHIBITIONS PHOTOS:
Direct Dyes Blue 106 for Paper Dyeing




FACTORY PHOTOS:
Direct Dyes Blue 106 for Paper Dyeing
Direct Dyes Blue 106 for Paper Dyeing
Direct Dyes Blue 106 for Paper Dyeing
Direct Dyes Blue 106 for Paper Dyeing

A treatment plant for lake Kinneret water, comprising treatment by two filtration steps, flocculation and disinfection with chlorine dioxide, was studied with a view to evaluating the effect of ClO2 disinfection on drinking water quality and determining the optimal mode of operation for the treatment plant. Four modes of operation were studied and the optimal mode was defined as that in which the flocculant (aluminium sulphate) was introduced before the first, and ClO2 after the second, filtration. The finished water contained a residue of approx. 0.2 mgl−1 ClO2, approx. 0.35 mgl−1ClO2− and low concentrations of suspended matter (1.5 mgl−1) and of chlorophyll (0.1 μgl−1). Trihalomethane concentrations were negligible, and the bacteriological quality of the water was within the health authorities' requirements. It was shown that disinfection of treated water (after flocculation and filtration) was much more effective than that of raw water. Furthermore, disinfection in the optimal mode prevents accumulation of high chlorite concentrations leaving a residue of ClO2.

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Industrial Water Disinfection

Chlorine Dioxide For Brewery Factory, Chlorine Dioxide For Paper Bleach, Chlorine Dioxide For Beverage Factory, Cooling Water Treatment

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