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Improvement of methods and devices for organic impurities control in the coolant at TPP and CHP

机译:改进TPP和CHP在冷却剂中有机杂质控制的方法和装置

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摘要

Introduction. Issues of increasing the reliability of investigating the coolant’s organic impurities behavior and the operational control of their concentrations at TPPs and CHPs are considered. Possible causes of the organics occurrence in the boiler feedwater and in the steam of the power plants are analyzed. The behavior of typical impurities in the liquid and vapor phases at high temperatures is studied. Materials and Methods. The analysis of the existing methods and devices for the organic impurities control in the coolant of the TPP and CHP circuits is conducted. Research Results. Taking into account the advantages and disadvantages of the existing techniques and monitoring devices, methods of their improvement are proposed. When monitoring the thermolysis process of the potentially acidic organic impurities in the liquid and vapor phases, it is recommended to use the installation of the All-Russian Technological Institute improved by the authors. In this case, the conductometric control of the thermolysis process in the vapor phase at different temperatures on the concurrent boilers should be carried out according to the readings of the conductometric cooled sensor placed in the controlled steam. A technique for the simultaneous measurement of the specific electric conductivity of water and steam condensate in the coolable conductivity sensor is proposed to simplify the study of the transition of organic impurities from boiling water to saturated steam. All this will allow obtaining the objective information about the organic impurities behavior in the water-steam circuit of the power units, the thermolysis process, and the sources of hazardous impurities flow into the boiler. Besides, taking into account the results of this work, the researchability of the behavior of potentially acidic substances and monitoring of their content in water and steam can be enhanced. Discussion and Conclusions. The advanced control devices can be used as a supplement to the existing ones for joint operation in the chemical and technological monitoring systems of the power plants. A method for improving the operating modes control systems of the evaporator plants under the thermal treatment of water from organic impurities, mainly to reduce the content of potentially acidic substances in steam and condensate of the plants, is proposed. For this purpose, it is recommended to use the control sensors previously developed by the authors.
机译:介绍。增加调查冷却剂的有机杂质的行为和在和的TPP CHPS它们的浓度的运算控制的可靠性的问题考虑。在锅炉给水和电厂的蒸汽发生有机物的可能原因进行了分析。的在高温下的液相和汽相杂质典型的行为进行了研究。材料和方法。在TPP和CHP电路的冷却剂中的有机杂质控制的现有方法和装置的分析中进行。研究结果。考虑到优势和现有技术和监控设备的缺点,他们的改进方法提出了建议。当监视的在液相和汽相的潜在酸性有机杂质的热分解过程中,建议使用安装全俄技术研究所的由作者提高。在这种情况下,在上并发锅炉不同温度下的气相热解过程的电导控制应根据放置在受控的蒸汽的冷却电导传感器的读数来进行。提出了一种用于水和在冷却的电导率传感器蒸汽冷凝物的比电导率的同时测量技术,以简化的有机杂质从沸水饱和蒸汽转变的研究。所有这一切将允许获得关于在动力装置,热解过程中,以及有害杂质的来源的水蒸汽回路中的有机杂质的行为目标信息流入锅炉。此外,考虑到这项工作的结果,潜在的酸性物质的行为researchability并监测其在水和蒸汽的含量可以提高。讨论和结论。先进的控制设备可以作为一个补充的联合行动在电厂的化学和技术监控系统现有的。一种用于改进蒸发器的植物的操作模式的控制系统的从有机杂质的水热处理下,主要是为了减少在植物的蒸汽和冷凝水可能的酸性物质的含量的方法,提出了。为此,建议使用以前由作者开发的控制传感器。

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