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ENSACO

Ensaco A process for making carbon black by the incomplete combustion of used car tires. Developed and commercialized by IMM, Belgium. [Pg.99]

Battery grade carbon blacks produced by a specially designed partial combustion process include the ENSACO/SUPER P carbon black and the by-products of the Shell gasification process, known as Ketjen Black.74 78... [Pg.274]

ENSACO 350G 800 Very high 320 Very high +++++ ++ +++... [Pg.275]

FIGURE 9.9 Few aggregates of carbon black Ensaco 250G. (Grivei, E., TIMCAL Belgium, e.grivei be. timcal.com, personal communication.)... [Pg.396]

Figure 12.5a shows the effect of filler loading on the volume resistivity of MWNTs and CB (CB Ensaco 250G from Timcal) filled composites based on insulating styrene-butadiene rubber. The styrene-butadiene rubber contains 25 w% of styrene units. The microstructure of the butadiene phase is the following 10% cis, 17% trans, 73% 1,2. It was compounded with sulfur (1.1 phr), cyclohexyl benzothiazole sulfenamide (1.3 phr), diphenyl guanidine (1.45 phr), stearic acid (1.1 phr), zinc oxide (1.82 phr) (phr = parts per hundred parts of rubber). The unfilled and filled samples are cured into films (around 200 pm thick) at 170°C during 10 min under a pressure of 150 bar in a standard hot press. [Pg.351]

Figure 12.5. Volume resistivity against filler loading for SBR composites filled with carbon black (CB Ensaco 250G from Timcal) and MWNTs. [Figure 5A is reprinted from L. Bokobza, M. Rahmani, C. Belin, J.-L. Bruneel, N.-E. El Bounia "Blends of carbon blacks and multwall carbon nanotubes as reinforcing fillers for hydrocarbon rubbers", Journal of Polymer Science Part B Polymer Physics, 46,1939, 2008, permission from John Wiley and Sons]. Figure 12.5. Volume resistivity against filler loading for SBR composites filled with carbon black (CB Ensaco 250G from Timcal) and MWNTs. [Figure 5A is reprinted from L. Bokobza, M. Rahmani, C. Belin, J.-L. Bruneel, N.-E. El Bounia "Blends of carbon blacks and multwall carbon nanotubes as reinforcing fillers for hydrocarbon rubbers", Journal of Polymer Science Part B Polymer Physics, 46,1939, 2008, permission from John Wiley and Sons].
Ensaco 150,200,250 - carbon black produced in form of powder and granules in process similar to fiimace black but differing in aerodynamic and thermodynamic conditions. No water quenching is used in the process. The resultant material is closer to acetylene black than furnace black. Unique properties of this carbon black are utilized in dry-cell batteries, paint, plastics, and rubber markets. Sid Richardson Carbon Black Company, Fort Worth, TX, USA... [Pg.63]

Elftex 675 [Cabot Europe/Special Blacks] Elftex Oil Pellets [Cabot/Special Blacks] Elftex Pellets 115 [Cabot/Special Blacks] Ensaco 150 [R.T. Vanderbilt http //www.rtvanderbiltcom], Ensaco 200 [R.T. Vanderbilt http //www.rtvanderbiH.com]... [Pg.762]

Enocianina Enocyanin. See Grape skin extract Enoxolone. See Glycyrrhetinic acid ENR 25, ENR 50. See Natural rubber Ensaco 150, Ensaco 200, Ensaco 250. See Carbon black... [Pg.1620]

The carbon black structure describes the pattern of how the primary particles are fused together into aggregates. Carbon black aggregates can vary in shape from individual spheroidal particles to more clustered and fibrous aggregate types. Figure 5.16 shows the highly structured aggregate of ENSACO 250. [Pg.141]

Fig. 5.16 TEM picture of ENSACO 250 showing a highly structured aggregate of fused primary particles ... Fig. 5.16 TEM picture of ENSACO 250 showing a highly structured aggregate of fused primary particles ...
ENSACO 50G SUPER S ENSACO 210G Acetylene black Supraconductive furnace black N-472... [Pg.142]

ENSACO 250G SUPER P Li ENSACO 260G ENSACO 350G/ Ketjenblack EC300 Ketjenblack EC-600 JD... [Pg.142]

Fig. 5.18 Transition electron nucroscope picture of ENSACO 350G ... Fig. 5.18 Transition electron nucroscope picture of ENSACO 350G ...
In the upper set of uptake versus pH curves in Figure 13.11, a set of three activated carbons (Norit SX2, SX4, and SXU) and three carbon blacks (Ensaco 250,... [Pg.309]

FIGURE 12.13 XRD patterns for the different catalysts synthesised on Vulcan XC72 (a) and Ensaco 350G (b). [Pg.364]


See other pages where ENSACO is mentioned: [Pg.424]    [Pg.275]    [Pg.275]    [Pg.278]    [Pg.214]    [Pg.762]    [Pg.6179]    [Pg.6179]    [Pg.6179]    [Pg.6813]    [Pg.144]    [Pg.145]    [Pg.146]    [Pg.148]    [Pg.310]    [Pg.500]    [Pg.363]    [Pg.363]    [Pg.363]    [Pg.363]    [Pg.113]    [Pg.250]    [Pg.250]    [Pg.251]    [Pg.252]    [Pg.252]    [Pg.253]    [Pg.254]    [Pg.254]    [Pg.255]   
See also in sourсe #XX -- [ Pg.145 ]




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