Fig. 1. Schematic diagram of the 9.2 MWe CFBC boiler.
Fig. 2. Location of borax solution injection.
Fig. 3. Diagram of fine particle sampling apparatus.
Fig. 4. Size distribution of the collected fine particles according to the use of chemicals : (a) between cyclone outlet and convection pass inlet under 1,000 μm, (b) between cyclone outlet and convection pass inlet under 10 μm, (c) in the electric precipitator under 1,000 μm, and (d) in the electric precipitator under 10 μm.
Fig. 5. Result of the collected fine particle analysis according to the use of chemicals: (a) under 10 μm, (b) under 2.5 μm.
Fig. 6. Reduction ratio of the collected fine particles according to the use of chemicals: (a) under 10 μm, (b) under 2.5 μm.
Fig. 7. Na, K, S and Cl contents of fine particles collected in (a) between cyclone outlet and convection pass inlet, and (b) the electric precipitator.
Fig. 8. SEM (scanning electron microscopy) images of fine particle sampled: (a) at convection pass inlet in the absence of chemical addition, (b) at electric precipitator in the absence of chemical addition, (c) at convection pass inlet after borax solution was injected, and (d) at electric precipitator after borax solution was injected.
Table 1. CFBC operation condition
Table 2. Physical properties of fuel
Table 3. Borax solution compositions
Table 4. Result of fine particle analysis
Table 5. Portion of fine particle (under 2.5 μm and 10 μm) after borax solution (1200:1 and 800:1) used
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