A solid fuel burner using a low oxygen concentration gas as a transporting
gas of a low grade solid fuel such as brown coal or the like and a
combustion method using the solid fuel burner are provided. The solid
fuel burner comprises a means for accelerating ignition of the fuel and a
means for preventing slugging caused by combustion ash from occurring.
Mixing of fuel and air inside a fuel nozzle 11 is accelerated by that an
additional air nozzle 12 and a separator 35 for separating a flow passage
are arranged in the fuel nozzle 11, and the exit of the additional air
nozzle 12 is set at a position so as to overlap with the separator 35
when seeing from a direction perpendicular to a burner axis, and
additional air is ejected in a direction nearly perpendicular to a flow
direction of a fuel jet flowing through the fuel nozzle 11. An amount of
air from the additional air nozzle 12 is varied corresponding to a
combustion load. By increasing the amount of air from the additional air
nozzle 12 at a low load operation, an oxygen concentration of a
circulation flow 19 formed in a downstream portion outside the exit of
the fuel nozzle 11 is increased to stably burn the fuel. By decreasing
the amount of air from the additional air nozzle 12 at a high load
operation, a flame is formed at a position distant from the fuel nozzle
11 to suppress radiant heat received by structures of the solid fuel
burner and walls of the furnace.