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Pumps - 2 per each train Reboilers - 4 per each train Special cases: 1. Each train need not have a separate installation of the solvent processing area, CO2 transport facility and CO2 disposal facility, and they will be installed for the whole CO2 capture unit. Hence “En” in this case, may be considered as (1/Nt) per train, where Nt is the total number of trains installed. 2. In case of CO2 compressors, which have higher capacity (~ 7200 tpd CO2), the number of compressors required is calculated accordingly. If Nc is the total number of CO2 compressors installed, then the number of compressors installed per train may be stated as (Nc/Nt). Different components of this system (Absorber, Regenerator, Flue gas blower etc.) are scaled, based on the flow ate of the material being handled by that particular device, using 0.6 power law e.g., the cost of absorber and flue gas blower is scaled on the basis of flue gas flow ate entering the CO2 system. The data obtained from the Fluor Daniel report serve as reference numbers for this scaling exercise. Actual value of scaling parameter per train (X) is calculated by dividing the magnitude of the scaling parameter (obtained from the performance model) by the minimum number of equipments required (i.e. product of minimum number of trains required and minimum number of equipments per train). e.g. if V is the value of a parameter, then X is given as X=V En,i •Nmin So, different process areas using the same scaling parameter may have different value of X, depending upon the value of En. Each process area has a reference cost (Cref) based on the source sited before, and the corresponding value of the scaling parameter (Xref). The cost of the equipment is calculated using the reference values and the actual value of scaling parameter (X), based on the 6/10th rule which is commonly used in chemical engineering costing. For example, in case of a particular process area (say, area 10), we have the following cost: C10, ref = Cost of equipment (area 10) Scaling parameter = X10,ref From the performance model, we have:the total quantity of the scaling parameter, Y. Now, as discussed above, Nmin = Minimum number of trains En,10 = Number of equipment (10) per train Minimum number of equipment installed, Z10,min = Nmin En,10 Total number of equipment installed, Z10 = Nt En,10 where, Nt is the actual number of trains installed (including spares) So, the actual flue gas flow rate per train, X10 = Y/ Z10,min Integrated Environmental Control Model - Technical Documentation • 29PDF Image | Amine Based CO2 Capture
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