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Improvement of Chemical Monitoring of Water-Chemistry Conditions at Thermal Power Stations Based on Electric Conductivity and pH Measurements

机译:基于电导率和pH值测量的热电厂水化学条件化学监测的改进

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摘要

The increased requirements to the quality of the water heat conductor for working superhigh (SHP) and supercritical (SCP) pressure power plants and promising units, including combined-cycle gas turbine (CCGT) units and power plants with ultrasupercritical parameters (USCPs), can largely be satisfied through specific electric conductivity and pH measurements for cooled heat conductor samples combined with calculations of ionic equilibria and indirect measurements of several specified and diagnostic parameters. The possibility of calculating the ammonia and chloride concentrations and the total concentration of hardness and sodium cations in the feed water of drum-type boilers and the phosphate and salt contents in boiler water was demonstrated. An equation for evaluating the content of potentially acid substances in the feed water of monotube boilers was suggested. The potential of the developed procedure for evaluating the state of water-chemistry conditions (WCCs) in power plants with CCGT units was shown.
机译:对超高压(SHP)和超临界(SCP)压力发电厂以及有前途的机组,包括联合循环燃气轮机(CCGT)机组和具有超超临界参数(USCP)的发电厂,对水热导体质量的要求不断提高通过对冷却的热导体样品进行特定的电导率和pH测量,以及离子平衡的计算以及几个指定和诊断参数的间接测量,可以大大满足要求。证明了计算鼓式锅炉给水中氨和氯浓度以及硬度和钠阳离子的总浓度以及锅炉水中磷酸盐和盐含量的可能性。提出了评估单管锅炉给水中潜在酸性物质含量的方程。显示了开发的程序用于评估带有CCGT装置的电厂中水化学条件(WCC)状态的潜力。

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