Pervov Alexei G, Spitsov Dmitry, Kulagina Anna, Aung Htet Zaw
Department of Water Supply, Moscow State University of Civil Engineering, 26, Yaroslaskoye Highway, 129337 Moscow, Russia.
Membranes (Basel). 2025 Mar 25;15(4):96. doi: 10.3390/membranes15040096.
This article describes the results of research to develop a new technology to treat storm and drainage water generated on a territory of industrial enterprises and reuse it as a feed water for boiler feed and steam generation. To develop such a system, it is necessary to resolve issues related to pretreatment, scaling, and fouling, as well as to provide a minimal discharge in the company's sanitation network. Principles of the new approach to reach high calcium removal are based on the use of two or three stages of low-pressure nanofiltration membranes instead of the conventional facilities that contain one stage of reverse osmosis membranes. High permeability, low pressure, high recovery, and reduced reagent consumption provide an economic effect. The technology uses low-rejection membranes "nano NF" developed and produced by "Membranium Co." (Vladimir, Russia). In the article, the results of investigations on the evaluation of scaling rates in membrane modules and rates of homogeneous crystallization in concentrate flow are presented. Processing these results enables us to detect recovery values when scaling begins on the membrane surface as well as to determine the maximum recovery value for the beginning of homogenous nucleation in the concentrate flow.
本文介绍了一项研究成果,该研究旨在开发一种新技术,用于处理工业企业厂区产生的雨水和排水,并将其作为锅炉给水和蒸汽生产的补给水进行回用。要开发这样一个系统,有必要解决与预处理、结垢和污垢相关的问题,以及在公司的卫生网络中实现最小排放。实现高钙去除的新方法的原理基于使用两到三级低压纳滤膜,而不是包含一级反渗透膜的传统设施。高渗透率、低压、高回收率和减少试剂消耗带来了经济效益。该技术使用由“Membranium Co.”(俄罗斯弗拉基米尔)开发和生产的低截留率膜“nano NF”。本文展示了对膜组件中结垢速率和浓缩水流中均相结晶速率评估的研究结果。处理这些结果使我们能够检测膜表面开始结垢时的回收率值,以及确定浓缩水流中均相成核开始时的最大回收率值。