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- W4385559897 abstract "The efficiency of removing carbon dioxide from water in deaerators is no less important than the efficiency of desorption of dissolved oxygen, since free carbon dioxide present in heat carriers can cause intense corrosion of metals, especially in phase transition zones and in the presence of dissolved oxygen. This applies to low and medium pressure steam boilers, including heat recovery boilers of combined-cycle power units, as well as water treatment plants of heating pipelines. The absence of free carbon dioxide in deaerated water does not mean its absence in the equipment located according to the thermal scheme behind the deaerator, since carbon dioxide is one of the products of reactions of thermal decomposition of hydrocarbonates and hydrolysis of carbonates occurring during further heating of water in boilers and boilers or its exposure at high temperature. The analysis of the decrease in the energy efficiency of thermal power plants caused by the current technology of circulating water supply of cooling systems of condenser units is carried out. It is shown that the supply of additional water to the cooling system from a surface water body without preliminary purification causes indirect financial losses. In addition to energy saving, an equally significant resource-saving function of the recycling water supply technology is to prevent the discharge of technogenic copper by operating thermal power plants as part of the forced discharge of purging of recycled water. A model of the process of removing carbon dioxide from water during deaeration is proposed. This model allows predicting the values of decarbonization efficiency indicators for decarbonizers and deaerators." @default.
- W4385559897 created "2023-08-04" @default.
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- W4385559897 date "2023-01-01" @default.
- W4385559897 modified "2023-10-01" @default.
- W4385559897 title "Improving the Reliability of Circulating Water Supply Installations of Thermal Power Plants" @default.
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- W4385559897 doi "https://doi.org/10.1007/978-3-031-40628-7_27" @default.
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