Thread Content
This post was last edited by Yan Xiangsi on 2012-10-17 at 13:41. What is the impact of desulfurization solution temperature on desulfurization? What impact will it have if the temperature of the desulfurization liquid is similar to that temperature?
The temperature of the desulfurization liquid primarily affects its ammonia content; in current desulfurization methods, ammonia is used to react with H2S in order to reduce its concentration. Each method has its own optimal absorption temperature.
The temperature of the desulfurization liquid is too high, and its ammonia content is low, which reduces the desulfurization efficiency; Too low, the desulfurization reaction is slow
The temperature of the desulfurization solution mainly affects hydrogen sulfide absorption, catalyst regeneration, and the contents of primary and secondary reaction products
The temperature of the desulfurization solution primarily affects hydrogen sulfide absorption, catalyst regeneration, and the products of primary and secondary reactions
The temperature of the desulfurization solution primarily affects hydrogen sulfide absorption, catalyst regeneration, and the products of primary and secondary reactions
In fact, each ammonia-based desulfurization process has its own optimal reaction temperature. If the temperature is too high, the ammonia concentration is low and the desulfurization efficiency is insufficient; if the temperature is too low, the reaction rate is slow. Due to issues related to the flow rate of gas, the required production standards cannot be met either.
Do you not even know the temperature of the desulfurization fluid in the PDS desulfurization method? ? ? ? ? ? ? ? ? ?
The temperature of the desulfurization solution mainly affects hydrogen sulfide absorption, catalyst regeneration, and the products of primary and secondary reactions
The temperature of our PDS desulfurization solution is around 40