Electrodialytic desalination of cheese whey was carried out using a pair of polymer cation exchange (Nafion 117) and inorganic membranes. The ceramic separator was modified with nanocomposite containing hydrated zirconium dioxide and basic bismuth nitrate. This amphoteric filler provides anion exchange ability of the composite membrane. This property is realized when at least one side of the membrane is in contact with an acidic solution. Ion transport through the membranes was shown to be determined by current, whey acidity, and also by composition of the solution in the concentration compartment of the electrochemical cell. It was shown that whey desalination occurred under overlimiting current. Acidification of...
BACKGROUND: In this study, hydrophilic metal oxides such as TiO2, ZrO2 and ZnO were used as modifier...
Whey permeate powder is widely used in technologies of various line groups of food products, but the...
In recent years, whey has been recognised as a major source of nutritional and functional ingredient...
Organic-inorganic membranes based on heterogeneous ion exchange polymer supports, which were modifie...
Large quantities of salty whey are produced during cheese manufacturing, posing an environmental pro...
We describe a process configuration for the electrochemical acidification of milk using the desalina...
© 2020 Sahar TalebiAcid whey and salty whey have presented a major disposal issue for the dairy indu...
AbstractRecently, membrane separation techniques are extensively used in a dairy industry, which con...
This work investigated the fouling of ion-exchange membranes during the electrodialysis of sweet and...
Salty whey is a waste by-product that incurs increasingly high disposal costs for the dairy industry...
A concentrate containing up to 73% protein N was recovered from cheese whey by using cellulose aceta...
The ability of direct contact membrane distillation to concentrate the waste effluent from salty whe...
The ability of direct contact membrane distillation to concentrate the waste effluent from salty whe...
AbstractRecently, membrane separation techniques are extensively used in a dairy industry, which con...
Second cheese whey (SCW) is a by-product of cheese and curd cheese production that is usually not re...
BACKGROUND: In this study, hydrophilic metal oxides such as TiO2, ZrO2 and ZnO were used as modifier...
Whey permeate powder is widely used in technologies of various line groups of food products, but the...
In recent years, whey has been recognised as a major source of nutritional and functional ingredient...
Organic-inorganic membranes based on heterogeneous ion exchange polymer supports, which were modifie...
Large quantities of salty whey are produced during cheese manufacturing, posing an environmental pro...
We describe a process configuration for the electrochemical acidification of milk using the desalina...
© 2020 Sahar TalebiAcid whey and salty whey have presented a major disposal issue for the dairy indu...
AbstractRecently, membrane separation techniques are extensively used in a dairy industry, which con...
This work investigated the fouling of ion-exchange membranes during the electrodialysis of sweet and...
Salty whey is a waste by-product that incurs increasingly high disposal costs for the dairy industry...
A concentrate containing up to 73% protein N was recovered from cheese whey by using cellulose aceta...
The ability of direct contact membrane distillation to concentrate the waste effluent from salty whe...
The ability of direct contact membrane distillation to concentrate the waste effluent from salty whe...
AbstractRecently, membrane separation techniques are extensively used in a dairy industry, which con...
Second cheese whey (SCW) is a by-product of cheese and curd cheese production that is usually not re...
BACKGROUND: In this study, hydrophilic metal oxides such as TiO2, ZrO2 and ZnO were used as modifier...
Whey permeate powder is widely used in technologies of various line groups of food products, but the...
In recent years, whey has been recognised as a major source of nutritional and functional ingredient...