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Electrodialysis treatment of secondary steam condensate obtained during production of ammonium nitrate. Technical and economic analysis

机译:硝酸铵生产过程中获得的二次蒸汽凝结水的电渗析处理。技术经济分析

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The process of electrodialysis desalination of secondary steam condensate produced during ammonium nitrate production using various anion-exchange membranes is studied in the laboratory and on pilot scale electrodialysis modules. The main parameters of the process: current efficiency, salt flux and power consumption, are studied. The membranes studied include three commercial heterogeneous anion exchange membranes: Ralex AMH produced by Mega a.s.; MA-40 and MA-41 produced by JSC Szchekinoazot; and the homemade profiled membrane MA-41P. It is shown that the profiled membrane possesses the best mass transfer characteristics this is explained by the combined effects of several factors. These factors include a significant increase of the active membrane area available for mass transfer, intensive fluid mixing and a decrease in the water splitting rate. Among the smooth membranes the Ralex AMH shows the best performance due to its larger active area. The mass transfer properties of the membranes are explained with the help of scanning electron microscopy and voltammetry. The reason behind their behavior in the electrodialysis process is explained by the properties and morphology of their surfaces. An analysis of the economics of the desalination process is made. It is shown that from an economical point of view, MA-41 membranes can be successfully applied in the electrodialysis demineralization process despite their lower mass transfer characteristics compared to the Ralex AMH membranes. Due to their lower mass transfer rates, a larger number of modules is required to achieve the same goals. However, this is compensated for by their lower price. (C) 2015 Elsevier B.V. All rights reserved.
机译:在实验室和中试规模的电渗析模块上研究了使用各种阴离子交换膜对硝酸铵生产过程中产生的二次蒸汽冷凝物进行电渗析脱盐的过程。研究了该过程的主要参数:电流效率,盐通量和功耗。研究的膜包括三种商业化的异质阴离子交换膜:Mega a.s.生产的Ralex AMH; JSC Szchekinoazot生产的MA-40和MA-41;以及自制异形膜MA-41P。结果表明,异形膜具有最佳的传质特性,这可以通过多种因素的综合作用来解释。这些因素包括可用于传质的活性膜面积显着增加,强烈的流体混合以及水的分解速度降低。在光滑膜中,Ralex AMH由于其较大的有效面积而显示出最佳性能。借助扫描电子显微镜和伏安法解释了膜的传质特性。它们在电渗析过程中的行为背后的原因可以通过其表面的性质和形态来解释。对脱盐工艺的经济性进行了分析。从经济的角度来看,尽管MA-41膜的传质特性比Ralex AMH膜低,但可以成功地用于电渗析脱盐工艺。由于它们的传质速率较低,因此需要大量模块才能实现相同的目标。但是,这可以通过较低的价格得到补偿。 (C)2015 Elsevier B.V.保留所有权利。

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