Merkel Arthur, Vavro Matej, Čopák Ladislav, Dvořák Lukáš, Ahrné Lilia, Ruchti Christian
MemBrain s.r.o. (Membrane Innovation Centre), Pod Vinicí 87, 471 27 Stráž pod Ralskem, Czech Republic.
Department of Food Science, University of Copenhagen, Rolighedsvej 26, 1958 Frederiksberg, Denmark.
Membranes (Basel). 2022 Dec 26;13(1):29. doi: 10.3390/membranes13010029.
The integrated electrodialysis (ED) process supports valorisation of a lactose-rich side stream from the dairy industry, creating an important source of milk sugar used in various branches of the industry. This work focuses on the optimization of the downstream processes before the crystallization of lactose. The process line includes a pre-treatment and desalination by ED of the industrial waste solution of the lactose mother liquor (LML). The LML was diluted to 25% total solids to overcome hydraulic issues with the ED desalination process. Two different levels of electrical conductivity reduction (70% and 90%) of the LML solutions were applied to decrease the mineral components and organic acids of the LML samples. The ED performance parameters such as ash transfer rate (), the specific capacity () of the ED and specific electric energy consumption () were determined and the influence of the LML solution on the monopolar ion-exchange membranes has been investigated. A higher degree of desalination is associated with higher electric energy consumption (by 50%) and lower specific capacity (by 40%). A noticeable decrease (by 12.8%) in the resistance of the anion exchange membranes was measured after the trials whereas the resistance of the cation exchange membranes remained practically unchanged. Any deposition of the alkaline earth metals on the membrane surface was not observed.
集成电渗析(ED)工艺有助于实现乳制品行业富含乳糖的侧流产品的增值,从而创造出一种在该行业各个分支中都有应用的重要乳糖来源。这项工作聚焦于乳糖结晶前下游工艺的优化。工艺流程包括对乳糖母液(LML)工业废液进行预处理和通过电渗析脱盐。将LML稀释至总固形物含量为25%,以解决电渗析脱盐过程中的水力问题。对LML溶液采用两种不同程度的电导率降低水平(70%和90%),以降低LML样品中的矿物质成分和有机酸。测定了电渗析的性能参数,如灰分转移率()、电渗析的比容量()和比电能消耗(),并研究了LML溶液对单极离子交换膜的影响。更高程度的脱盐与更高的电能消耗(高50%)和更低的比容量(低40%)相关。试验后测得阴离子交换膜的电阻显著下降(下降12.8%),而阳离子交换膜的电阻基本保持不变。未观察到碱土金属在膜表面的任何沉积。