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Spray Technology is Critical in Helping a Plant Achieve Optimal Performance

机译:喷涂技术对于帮助工厂实现最佳性能至关重要

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Spray nozzles are used m several locations inside a powerplant and have intimate contact with the processes in the plant. Nozzles are used for inlet fogging, humidification, Wet and Semi-Dry FGD (Flue Gas Desulphurization) applications using open spray towers, CFB (Circulating Fluidized Bed) and SDA (Spray Dry Absorber) scrubbers, Nox using SCR (Selective Catalytic Reduction) and SNCR (Selective Non-catalytic Reduction) technologies. As plants try to achieve optimum efficiency, spray nozzles need to be designed, installed, and maintained properly. In addition, operators and designers need to be aware when a spray nozzle needs to be cleaned or replaced. A defective spray nozzle will have an adverse affect on plant performance. Several factors are to be considered in selecting the proper nozzle. These include material of construction, flowrate, spray angle, operating pressure, placement, droplet size, maximum free passage, spray angle, and many more. New developments in spray nozzle technology are allowing powerplants to have better control and achieve/maintain the tighter regulations on key emissions in the plants. Examples of nozzle type, their application, and recent installations/retrofits will be discussed.
机译:喷嘴用于发电厂内部的多个位置,并与发电厂中的过程紧密接触。喷嘴用于进气雾化,加湿,湿式和半干式FGD(烟气脱硫)应用,使用开放式喷雾塔,CFB(循环流化床)和SDA(喷雾干式吸收塔)洗涤塔,NOx使用SCR(选择性催化还原)和SNCR(选择性非催化还原)技术。当工厂试图实现最佳效率时,需要正确设计,安装和维护喷嘴。另外,操作人员和设计人员需要注意何时需要清洁或更换喷嘴。喷嘴故障将对设备性能产生不利影响。选择合适的喷嘴时要考虑几个因素。这些包括结构材料,流量,喷雾角度,工作压力,位置,液滴大小,最大自由通过量,喷雾角度等等。喷嘴技术的新发展使发电厂可以更好地控制并实现/维持有关发电厂关键排放的更严格规定。将讨论喷嘴类型,其应用以及最近安装/改造的示例。

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