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- W4298006504 abstract "Rankine cycle based on pulverized coal-fired boilers is the major power producing system all over the world. Some specific negative characteristics of PFF systems are; (1) it is fuel specific, (2) environmental pollution and (3) high power required in pulverizing coal. In the last few years, world has become conscious about pollution and technology has gone through vast changes. Fluidized bed combustion is imminent to replace suspension burning (PFF/PFC). However, combusting technology gets an askance look. Green energy is seen as the panache for all problems of power with solar energy and wind energy as prime alternatives. However, the possibility of green technology altogether replacing conventional power plant is at distant yonder. Thermal power plants based on Rankine cycle still have to bear the brunt of power generation for a reasonable period. The suggested model recommends a distributed power generation, with smaller power plants based on FBC / CFBC, while burning local rejects. Solar and wind energy will supplement power production. Circulating fluidized bed combustion (CFBC) has definite edge over pulverized fuel firing which had been in vogue almost all over the world for more than a century. CFBC is more flexible with fuels, can reduce NOx emission and needs less fuel preparation. Just like PFF it can be made in mammoth size, but unlike PFF, FBC/CFBC can be in smaller size too. It is suggested that FBC/CFBC boilers are designed to combust specific locally available rejects for power generation. All modes of power generation should be used to the optimum level, with local waste or rejects being the key source of power. Such power plants will cater the local power needs and extra power can be fed to the grid, as the country is now well connected with the grid. Thus, a distributed model has been envisaged." @default.
- W4298006504 created "2022-10-01" @default.
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- W4298006504 date "2022-09-30" @default.
- W4298006504 modified "2023-09-23" @default.
- W4298006504 title "Sustainable Power Generation with Fluidized Bed Combustion" @default.
- W4298006504 cites W2027464891 @default.
- W4298006504 doi "https://doi.org/10.1007/978-981-19-3467-4_38" @default.
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