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ORP as slurry oxidation index and model modification in wet desulfurization system

机译:湿脱硫系统中的浆料氧化指数和模型改性

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摘要

Due to wet desulfurization system lacks effective control indicators for the oxidation process, so the sulfite oxidation in the slurry and the quality of gypsum become unstable. In this paper actual desulfurization system operation data are used to improve the ORP semi-empirical formula obtained in the laboratory. It was concluded that the ORP was mainly affected by the concentration of sulfite and pH during the operation of the actual desulfurization system, the dissolved oxygen was less affected by the small concentration change during operation. It is verified that the model can correct the ORP measurement value by using other conventional measurement data from the power plant. The results can provide theoretical support for adding ORP as a control index to optimize the oxidation process. Implications: At present, the main control parameter of wet FGD is pH control, but wet FGD has two main reactions at the same time, one is acid-base reaction, the other is redox, single pH control can not reflect the degree of redox, so it is necessary to introduce another control index to evaluate redox, which is the ORP control proposed in this paper, ORP can reflect the degree of slurry oxidation, avoid the occurrence of excessive oxidation and inadequate oxidation, so that the operation of desulfurization system can be more healthy and stable.
机译:由于湿脱硫系统缺乏氧化过程的有效控制指标,因此浆料中的亚硫酸盐氧化和石膏的质量变得不稳定。在本文中,实际的脱硫系统操作数据用于改善实验室中获得的ORP半经验公式。结论是,ORP主要受到亚硫酸盐浓度的影响,在实际脱硫系统的运行过程中,溶解氧在手术过程中浓度小的浓度变化影响较小。验证了该模型可以通过使用来自电厂的其他传统测量数据来校正ORP测量值。结果可以为添加ORP作为控制指数提供理论支持,以优化氧化过程。含义:目前,湿FGD的主要控制参数是pH控制,但湿FGD同时有两个主要反应,一个是酸碱反应,另一个是氧化还原,单pH控制不能反映氧化还原程度因此有必要引入另一个控制指数来评估氧化还原,即本文提出的ORP控制,ORP可以反映浆液氧化程度,避免发生过度氧化和氧化不足,使脱硫系统的运作。可以更健康稳定。

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    Hebei Key Lab of Power Plant Flue Gas Multi-Pollutants Control Department of Environmental Science and Engineering North China Electric Power University Baoding People's Republic of China;

    Hebei Key Lab of Power Plant Flue Gas Multi-Pollutants Control Department of Environmental Science and Engineering North China Electric Power University Baoding People's Republic of China;

    Huadian Qudong Electricity Supply Co. Ltd. Xinxiang People's Republic of China;

    Hebei Key Lab of Power Plant Flue Gas Multi-Pollutants Control Department of Environmental Science and Engineering North China Electric Power University Baoding People's Republic of China;

    Huadian Qudong Electricity Supply Co. Ltd. Xinxiang People's Republic of China;

    Hebei Key Lab of Power Plant Flue Gas Multi-Pollutants Control Department of Environmental Science and Engineering North China Electric Power University Baoding People's Republic of China;

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