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The influence of cleaning additives on rejection and permeability in nanofiltration and ultrafiltration of bottle washing solutions

机译:清洗剂对瓶洗液纳滤和超滤的截留率和渗透率的影响

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摘要

In the beverage industry, numerous alkaline solutions are generated in cleaning processes. The treatment of these alkaline cleaning solutions with the objective of recovery or improvement of their quality can be conducted using pressure-driven membrane processes. This paper focuses on the behaviour of additive components, used for the alkaline cleaning of returnable bottles, during filtration with pH-stable ultrafiltration (UF) and nanofiltration (NF) membranes. A flux decline, which was more pronounced initially, was observed for the UF membranes with a cut-off of 1 and 50 kDa. This can be attribute to concentration polarisation at the membrane surface and the adsorption of cleaning additive components, especially of a non-ionic surfactant. The most stable membrane permeability during filtration was achieved by a 0.2 kDa NF membrane. The UF membrane with a cut-off of 50 kDa showed the lowest rejection for the different cleaning additives 5-20%), whereas the NF membrane with a cut-off of 0.2 kDa showed the highest rejection (about 905) for all cleaning additives.
机译:在饮料工业中,清洁过程中会产生大量碱性溶液。可以使用压力驱动膜工艺对这些碱性清洗液进行处理,以达到恢复或改善其质量的目的。本文着重介绍在使用pH稳定的超滤(UF)和纳滤(NF)膜进行过滤的过程中,用于可回收瓶的碱性清洁的添加剂成分的性能。对于截止值为1和50 kDa的UF膜,观察到通量下降在开始时更为明显。这可以归因于膜表面的浓度极化和清洁添加剂组分,尤其是非离子表面活性剂的吸附。过滤过程中最稳定的膜渗透性是通过0.2 kDa NF膜实现的。截留值为50 kDa的UF膜对5-20%的不同清洁添加剂表现出最低的截留率,而截留值为0.2 kDa的NF膜对所有清洗添加剂均表现出最高的截留率(约905)。 。

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