Enhancing the ecological and operational characteristics of water treatment units at TPPs based on baromembrane technologies


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The innovative baromembrane technologies for water demineralization were introduced at Russian TPPs more than 25 years ago. While being used in the power engineering industry of Russia, these technologies demonstrated certain advantages over the traditional ion-exchange and thermal technologies of makeup water treatment for steam boilers. Water treatment units based on the baromembrane technology are compact, easy to operate, and highly automated. The experience gained from the use of these units shows that their reliability depends directly on preliminary water treatment. The popular water pretreatment technology with coagulation by aluminum oxychloride proved to be inefficient during the seasonal changes of source water quality that occurs at some stations. The use of aluminum coagulant at pH 8 and higher does not ensure the stable and qualitative pretreatment regime: soluble aluminum forms slip on membranes of the ultrafiltration unit, thereby causing pollution and intoxication as well as leading to structural damages or worsening of mechanical properties of the membranes. The problem of increased pH and seasonal changes of the source water quality can be solved by substitution of the traditional coagulant into a new one. To find the most successful coagulant for water pretreatment, experiments have been performed on both qualitative and quantitative analysis of the content of natural organic matters in the Volga water and their structure. We have developed a software program and measured the concentrations of soluble aluminum and iron salts at different pH values of the source water. The analysis of the obtained results has indicated that iron sulfate at pH 6.0−10.2, in contrast to aluminum oxychloride, is not characterized by increased solubility. Thus, the basic process diagrams of water pretreatment based on baromembrane technologies with pretreatment through coagulation by iron salts and wastewater amount reducing from 60–40 to 5–2% have been introduced for thermal power stations.

作者简介

N. Chichirova

Kazan State Power Engineering University

Email: caapel@mail.ru
俄罗斯联邦, Kazan, 420066

A. Chichirov

Kazan State Power Engineering University

Email: caapel@mail.ru
俄罗斯联邦, Kazan, 420066

A. Filimonova

Kazan State Power Engineering University

Email: caapel@mail.ru
俄罗斯联邦, Kazan, 420066

S. Saitov

Kazan State Power Engineering University

编辑信件的主要联系方式.
Email: caapel@mail.ru
俄罗斯联邦, Kazan, 420066

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