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Seawater Flue Gas Desulfurization with Parallel Flow Tray for Power Plant

机译:并联流盘法用于电厂海水烟气脱硫。

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Seawater flue gas desulfurization (SFGD) is a green technology to clean the exhaust gas of combustion of fossil fuels. It is an effective approach to reduce SO2 emission and control atmospheric pollution for seaside coal-fired power plant. It has a broad application prospect because coal plays a significant role for power generation in a long period in the future. In this work, a kind of new parallel flow tray was introduced to SFGD process, wet pressure drop and desulfurization efficiency were measured in different operating conditions including superficial linear velocity and liquid flux using parallel flow trays with dissimilar characteristic parameters including number of blade and turning angle of blade. The effects of various factors on wet pressure drop and desulfurization efficiency were studied. The results show that parallel flow tray has its advantages such as low energy consumption, high efficiency and large treatment capacity which are very suitable for SFGD process and drastically reduce equipment investment. Conclusion within the experimental limits of this paper, parallel flow tray with 12 blades and 600; turning angle of blade is better one considering SO2 removal efficiency and manufacturing cost.
机译:海水烟气脱硫(SFGD)是一种绿色技术,用于清洁化石燃料燃烧的废气。这是减少沿海燃煤电厂二氧化硫排放和控制大气污染的有效途径。由于煤炭在未来很长一段时间内在发电中起着重要作用,因此具有广阔的应用前景。在这项工作中,将一种新型的平行流塔板引入到SFGD工艺中,使用具有不同特征参数(包括叶片数和转向)的平行流塔板,在包括表观线速度和液体通量在内的不同工况下测量了湿压降和脱硫效率。叶片角度。研究了各种因素对湿压降和脱硫效率的影响。结果表明,平行流塔板具有能耗低,效率高,处理量大等优点,非常适合SFGD工艺,大大减少了设备投资。结论在本文的实验范围内,平行流盘具有12个叶片和600个叶片;考虑到SO 2去除效率和制造成本,叶片的转角是更好的选择。

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