Bóna Áron, Varga Áron, Galambos Ildikó, Nemestóthy Nándor
Soós Ernő Research and Development Center, University of Pannonia, Vár u. 8, H-8800 Nagykanizsa, Hungary.
Department of Research and Development, Pécsi Brewery, Alkotmány utca 94, H-7624 Pécs, Hungary.
Membranes (Basel). 2023 Feb 27;13(3):283. doi: 10.3390/membranes13030283.
Membrane-based beverage dealcoholization is a successful process for producing low- and non-alcoholic beer and represents a fast-growing industry. Polyamide NF and RO membranes are commonly applied for this process. Polyelectrolyte multilayer (PEM) NF membranes are emerging as industrially relevant species, and their unique properties (usually hollow fiber geometry, high and tunable selectivity, low fouling) underlines the importance of testing them in the food industry as well. To test PEM NF membranes for beer dealcoholization at a small pilot scale, we dealcoholized filtered and unfiltered lager beer with the tightest available commercial polyelectrolyte multilayer NF membrane (NX Filtration dNF40), which has a MWCO = 400 Da, which is quite high for these purposes. Dealcoholization is possible with a reasonable flux (10 L/mh) at low pressures (5-8.6 bar) with a real extract loss of 15-18% and an alcohol passage of ~100%. Inorganic salt passage is high (which is typical for PEM NF membranes), which greatly affected beer flavor. During the dealcoholization process, the membrane underwent changes which substantially increased its salt rejection values (MgSO passage decreased fourfold) while permeance loss was minimal (less than 10%). According to our sensory evaluation, the process yielded an acceptable tasting beer which could be greatly enhanced by the addition of the lost salts and glycerol.
基于膜的饮料脱醇是生产低酒精和无酒精啤酒的成功工艺,并且代表了一个快速发展的行业。聚酰胺纳滤膜和反渗透膜常用于此工艺。聚电解质多层(PEM)纳滤膜正成为具有工业相关性的材料,其独特性能(通常为中空纤维结构、高且可调节的选择性、低污染性)凸显了在食品工业中对其进行测试的重要性。为了在小试规模下测试PEM纳滤膜用于啤酒脱醇的效果,我们使用了市面上孔径最小的商用聚电解质多层纳滤膜(NX Filtration dNF40,截留分子量为400 Da,对于此目的而言相当高)对经过滤和未经过滤的贮藏啤酒进行脱醇处理。在低压(5 - 8.6巴)下以合理通量(10升/小时)进行脱醇是可行的,实际浸出物损失为15 - 18%,酒精透过率约为100%。无机盐透过率较高(这是PEM纳滤膜的典型情况),这对啤酒风味有很大影响。在脱醇过程中,膜发生了变化,其盐截留值大幅增加(硫酸镁透过率降低了四倍),而通量损失最小(小于10%)。根据我们的感官评价,该工艺得到的啤酒口感尚可,通过添加损失的盐分和甘油可使其口感得到极大提升。