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Dynamic control of selective non-catalytic reduction system for semibatch-fed stoker-based urban waste incineration
Dynamic control of selective non-catalytic reduction system for semibatch-fed stoker-based urban waste incineration
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机译:半间歇喂入式排烟机城市垃圾焚烧选择性非催化还原系统的动态控制
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摘要
The present invention controls reagent flow levels in a selective non-catalytic reduction (SNCR) system by more accurately predicting Nitrogen Oxides (NOx) production with a municipal waste combustor. In one embodiment, the reagent levels correspond with measured furnace temperatures. The reagent levels may have a baseline level from prior measured NOx that is then modified according to temperatures measurements. A slow controller may use NOx measurements over an extended period to define a base regent level, and a fast controller may use additional information such as the furnace temperature to modify the base regent level. The fast controller may further receive two additional signals that are added individually or together to maximize NOx control while minimizing ammonia slip from the reagent. The two signals are a feed-forward signal from the combustion controller and a feedback signal from an ammonia analyzer downstream of the combustion zone.
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