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Assessment of Filterability of Fiberglass-Based Material. Pp. 122–127.

Версия для печати

Section: Chemistry

UDC

676.017.22:531.71

Authors

Dubovy Vladimir Klimentyevich, Faculty for Chemistry and Technology, Saint Petersburg State Technological University of Plant Polymers (St. Petersburg, Russia) 

Gelfand Efim Dmitrievich, Institute of Theoretical and Applied Chemistry, Northern (Arctic) Federal University named after M.V. Lomonosov (Arkhangelsk, Russia) 

Bezlakovsky Anton Igorevich, JSC “Novgorod Glass Fiber Plant” (Veliky Novgorod, Russia) 

Rusanova Natalya Olegovna, Institute of Ecological Problems of the North, Ural Branch of the Russian Academy of Sciences (Arkhangelsk, Russia) 

Sysoeva Natalya Vladimirovna, Institute of Theoretical and Applied Chemistry, Northern (Arctic) Federal University named after M.V. Lomonosov (Arkhangelsk, Russia) 

Brovko Olga Stepanovna, Institute of Ecological Problems of the North, Ural Branch of the Russian Academy of Sciences (Arkhangelsk, Russia)

Abstract

The paper analyzes filterability of fiberglass-based material used for water treatment. The possibility of removing dissolved contaminants through their sorption on the fiber was shown.

Keywords

fiberglass, water treatment, permanganate oxidation, filterability.

The full-text version of the article can be requested through the university’s library.

References

  1. Dubovyy V.K. Steklyannye volokna. Svoystva i primenenie [Fiberglass. Properties and Use]. St. Petersburg, 2003. 130 p. 
  2. Zak A.F. Fiziko–khimicheskie svoystva steklyannogo volokna [Physical and Chemical Properties of Fiberglass]. Moscow, 1962. 140 p. 
  3. Kanarskiy A.V. Fil’troval’nye vidy kartona dlya promyshlennykh tekhnologicheskikh protsessov [Filter Types of Cardboard for Technological Processes]. Moscow, 1991. 272 p. 
  4. Kolichestvennyy khimicheskiy analiz vod. Metodika vypolneniya izmereniy massovoy kontsentratsii alyuminiya v probakh pit’evykh, prirodnykh i stochnykh vod. PND F 14.1;2;4.161-2000 [Quantitative Chemical Analysis of Water. Method of Measurement of Aluminum Mass Concentration in Drinking Water Samples, Natural Water and Wastewater. Federal Environmental Regulation 14.1;2;4.161-2000]. Moscow, 2000. 
  5. SanPiN 2.1.4.1175-02. Sanitarnaya okhrana istochnikov [Sanitary Regulations and Standards 2.1.4.1175-02. Sanitary Protection of Water Sources]. Moscow, 2003. Hygiene Requirements for quality of Water from Noncentralized Water Supply Systems.