A Mathematical Description of Heat Transfer and a Procedure for Determining Temperature Characteristics of Electro-Ultrafiltration Process for Separating Industrial Solutions

A mathematical description of heat transfer is presented and a procedure is developed for calculating the temperature characteristics of electro-ultrafiltration process for separating industrial solutions in flatchamber type of apparatuses. The permeate and retentate temperatures, solution heating t...

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Veröffentlicht in:Chemical and petroleum engineering 2018-03, Vol.53 (11-12), p.690-694
Hauptverfasser: Lazarev, S. I., Khorokhorina, I. V., Lazarev, K. S., Bogomolov, V. Yu
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container_issue 11-12
container_start_page 690
container_title Chemical and petroleum engineering
container_volume 53
creator Lazarev, S. I.
Khorokhorina, I. V.
Lazarev, K. S.
Bogomolov, V. Yu
description A mathematical description of heat transfer is presented and a procedure is developed for calculating the temperature characteristics of electro-ultrafiltration process for separating industrial solutions in flatchamber type of apparatuses. The permeate and retentate temperatures, solution heating temperature, heating power, and amount of heat liberated in the process of separation of industrial solutions and effluents containing anionic surfactants, proteins, and phosphatic and biochemical substances are calculated by the developed procedure.
doi_str_mv 10.1007/s10556-018-0404-4
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subjects Chemistry
Chemistry and Materials Science
Electric properties
Electrical conductivity
Geotechnical Engineering & Applied Earth Sciences
Heat
Heat transfer
Heating
Industrial Chemistry/Chemical Engineering
Industrial Pollution Prevention
Mathematical analysis
Mineral Resources
Proteins
Surface active agents
Temperature
Ultrafiltration
title A Mathematical Description of Heat Transfer and a Procedure for Determining Temperature Characteristics of Electro-Ultrafiltration Process for Separating Industrial Solutions
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