Appropriately increase the height of the carbon layer in order to adapt to the high load of the high-pressure head fan

The effective measures to solve the high-diameter ratio of the gas stove solve the problem that the upward exit restricts the improvement of the carbon layer when the side is out. The upward exit side is modified and ejected, which has certain advantages from the working principle of the gas stove. First, by increasing the carbon layer without adding a high furnace body, the high-diameter ratio contradiction caused by the increase of the carbon layer caused by the upward exit of the side outlet is effectively solved. Appropriately increase the height of the carbon layer in order to adapt to the high load of the high-pressure head fan.

In order to increase the gas load, the single furnace output is increased. The second is to solve the high-diameter ratio problem by using this technical modification method. Compared with the method of raising the furnace body, the former makes the upper space smaller because the height of the furnace body is constant and the height of the carbon layer is increased. In the latter case, due to the heightening of the furnace body, there is no change in the space on the furnace after the carbon layer is raised, and some plants increase the space on the furnace. A small space on the furnace is advantageous for the gasification reaction. It also reduces the loss of gas and steam during phase shifts.

In the upper blowing gas phase, the updraft gas and the undecomposed steam reduce the residence time in the furnace space and are quickly pressed into the ascending system into the scrubber tower. The Hebei plate and frame filter press washes the undecomposed steam in the gas. If the space on the furnace is relatively large, the time for the upward gas to stay in the space is relatively extended. The carbon monoxide and undecomposed steam in the semi-water gas are generated by the space and temperature of the furnace, and the Co-play 0=CO:+ play reaction is made. The content of carbon monoxide in the semi-water gas decreases.

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