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Shell flow diagram

Fic. 18. Schematic flow diagram of residuum hydroprocessing unit utilizing Shell bunker reactor upstream of fixed-bed reactor (Speight, 1981). [Pg.151]

Fig. 6. Flow diagram for the Shell Chemical alcohol-olefin complex, Geismar, Louisiana, and Stanlow, United Kingdom. Fig. 6. Flow diagram for the Shell Chemical alcohol-olefin complex, Geismar, Louisiana, and Stanlow, United Kingdom.
Figure 115. Flow diagrams of ammonia production from fuel oil or heavy residues by the Shell (A) and the Texaco (B) process (standard configuration)... Figure 115. Flow diagrams of ammonia production from fuel oil or heavy residues by the Shell (A) and the Texaco (B) process (standard configuration)...
The third liquid-phase butane-isomerization process was developed by Shell Oil Company (16) as an improvement over the original intermittent vapor-phase process. The simplified flow diagram is shown in Figure 18. The aluminum chloride is handled, in this case, as an approximately 9% solution in relatively inert molten antimony trichloride the... [Pg.221]

Figure 5. Simplified flow diagrams for biphasic catalyses [16] (a) product(s) P is completely insoluble in the catalyst containing medium C - e. g., Ruhrchemie/Rhone-Poulenc s 0X0 process (b) P is soluble or partly soluble in C (c) the second phase is formed during the catalytic process - e. g.. Shell s SHOP process. Figure 5. Simplified flow diagrams for biphasic catalyses [16] (a) product(s) P is completely insoluble in the catalyst containing medium C - e. g., Ruhrchemie/Rhone-Poulenc s 0X0 process (b) P is soluble or partly soluble in C (c) the second phase is formed during the catalytic process - e. g.. Shell s SHOP process.
The Sullinol process, developed by Shell in the early 1960s, is a combination process that uses a mixture of amines and a physical solvent. The Shell Sulfinol process is a regenerable amine process for acid gas removal. As the process uses a mixture of water, sulfolane, and one or more alkanolamine, removal capacity of COS, mercaptan s, and organic sulfides from gas streams is excellent by virtue of the improved physical solubility of these compounds in the solvent. A typical flow diagram of sulfinol process is shown in Figure 5.29.196... [Pg.288]

Acceptor Studies in Continuous Unit. The schematic flow diagram of the hot continuous unit is the same as for the model shown in Figure 5. The generator and gasifier had the same dimensions as the model. A pressure balanced construction was used in which the vessels, electric heaters, and insulation were all contained in a pressure shell. Carbon dioxide was used as a balance gas. [Pg.158]

Fio. 13-7. Flow diagram of Shell process for manufacture of ethanol. [Petroleum Refiner, 34 (12), 145 (1955), by permiseion.]... [Pg.789]

Figure 14 Shell partial oxidation process flow diagram. Figure 14 Shell partial oxidation process flow diagram.
The flow diagram of RVCS is shown in Fig 2 The system consists of a RPV recuperator(RVR), a RPV cooler(RVC), orifices and valves As illustrated in Fig 1 and Fig 2, a bypass flow is extracted from the blower outlet and flows downward through the tube side of the RVR, which is installed in the annular region outside the IHX, and is cooled down from 550t to 250 Then the cold bypass flow enters an annular channel outside the RVR and flows upward into the shell side of a little cooler (RVC) and is cooled form 250°c to 190 t , the 190 c cold gas enters the gap between the RPV and core vessel and is heated by the two vessel from 190 to 220x At last, the 220 X bypass gas flows upward through some vertical pipes and comes into the RVR shell side and returns to the blower inlet The main technical data of the RVCS is given in table 4... [Pg.90]

Texaco processes are generally similar. The Shell gasifier operates at 3.5-6 MPa, and the Texaco gasifier operates up to 9 MPa, Figure 6.19 is a flow diagram of the partial oxidation process. [Pg.183]

Figure 18.11 Top SEM images of different poly of droplets with various morphologies. Qw, Q m, (TPCDA) core-shell particles after removing SO Q oand Qtot are the water, monomer, oil andtotal cores (a, b, c, d) cross-section of a core-shell flow rates, respectively. Letters in the diagram particle containing one (e, inset) or three (f) SO correspond to core-shell structures revealed in cores. Bottom ternary phase-like diagram of the images on top. From Ref. [16]. hydrodynamic conditions used in the production... Figure 18.11 Top SEM images of different poly of droplets with various morphologies. Qw, Q m, (TPCDA) core-shell particles after removing SO Q oand Qtot are the water, monomer, oil andtotal cores (a, b, c, d) cross-section of a core-shell flow rates, respectively. Letters in the diagram particle containing one (e, inset) or three (f) SO correspond to core-shell structures revealed in cores. Bottom ternary phase-like diagram of the images on top. From Ref. [16]. hydrodynamic conditions used in the production...
Fig. 6. Flow diagram of a microencapsulation process that utilizes acid-catalyzed in situ polymerization of melamine or urea with formaldehyde to form a capsule shell (see Fig. 4d). Fig. 6. Flow diagram of a microencapsulation process that utilizes acid-catalyzed in situ polymerization of melamine or urea with formaldehyde to form a capsule shell (see Fig. 4d).
Heat exchangers are commonly of the shell and tube design. One liquid passes through a bank of parallel tubes. The other liquid flows around the tubes countercurrent to the flow in the tubes contained by the outer shell, as diagrammed in Figure 5.23. [Pg.273]

Figure 6.1 Process flow diagram of the Shell coal gasification process (HP - high pressure,... Figure 6.1 Process flow diagram of the Shell coal gasification process (HP - high pressure,...

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See also in sourсe #XX -- [ Pg.74 ]




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