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- W61298173 abstract "In 1986 Stearns Catalytic performed a study for the US Department of Energy to investigate methodology for improving the economics of atmospheric fluidized bed combustion (AFBC). This report is a result of Phase 1 of this program. The scope of this work involved reviewing the four unit sizes listed: 10,000, 50,000, 100,000, and 200,000 lbs/h. The design conditions and plant application were established at 350 psig saturated steam, with no electric power generation. The approach of the study was to first review AFBC concepts and to compare the various options available. A complete plant description was developed using a system by system breakdown. This Phase 1 report includes a review of the basic technology of fluidized bed combustion and discusses the various regimes of fluidization. There are generally two accepted types of fluidized bed boilers for burning solid fuels, namely, the Bubbling Fluidized Bed (BFB) and the Circulating Fluidized Bed (CFB). Both of these technologies have found popular use for industrial steam generation. This report includes information on design, cost, and economics throughout the size range for both of these technologies. The results of the study, including the performance and cost of an industrial fluidized bed combustion steam generator alongmore » with support data and information, are presented in fourteen sections. The costs developed are not absolute due to the budgetary approach manufacturers used for their pricing development. However, they are within a plus or minus 20% range and should be useful for comparisons. Numerous trend curves as well as sensitivity analyses have been used to compare technology and fuel variations. 160 refs., 53 figs., 64 tabs.« less" @default.
- W61298173 created "2016-06-24" @default.
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- W61298173 date "1986-05-01" @default.
- W61298173 modified "2023-09-27" @default.
- W61298173 title "Fluidized-bed combustion development: Volume 1, Industrial steam generation: Final report" @default.
- W61298173 hasPublicationYear "1986" @default.
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