In this paper, the demulsification has been achieved with the use of freeze/thaw (F/T) method and microwave radiation (MWR). The object of investigation were emulsion samples prepared by mixing the metal-working-oil, FESOL 09, produced by FAM, Krusevac, Serbia, and deionized water. F/T method has been successfully applied for the removal of oil from emulsions in our previous work. In this work, MWR has been additionally used for separation and enhanced heating of emulsion samples. The efficiency of oil removal has been improved with the assistance of MWR, up to 90%.Erratum: [https://doi.org/10.1016/j.seppur.2006.12.001]Related to: [http://grafar.grf.bg.ac.rs/handle/123456789/153
The experimental data showed that viscous and stable water-in-oil emulsions can be separated by mi...
A serious problem during the production and refinery process of crude oil is the existence of emuls...
In this research introduces a newly improved method of microwave dehydrator. A system consists of mo...
The mechanism of microwave heating is essentially that of dielectric heating. After exposing the emu...
Emulsion is a mixture of two immiscible substances which is divided into two types of emulsions eith...
Formation of emulsions during oil production is a costly problem, both in terms of chemicals used an...
With the increasing energy crisis and the drive to reduce CO2 emissions, the mechanism of microwave ...
The main sources of oily waste water are oil- refineries, metal industry and food industry. Any tech...
Traditional ways of breaking emulsions using heat and chemicals are disadvantageous from both econom...
Traditional methods to separate water-in-crude oil emulsions like chemical demulsifiers are not envi...
Although emulsions are very useful and desired products in cosmetic,food and soft drink industries,y...
The formation of emulsions during oil production and processing is a costly problem, both in terms o...
The role of microwave concept in demulsifying water-in-crude oil emulsion was assessed experimentall...
Traditional ways of breaking emulsion using heat and chemicals are disadvantageous from both economi...
The experimental data showed that viscous and stable water-in-oil emulsions can be separated by mi...
The experimental data showed that viscous and stable water-in-oil emulsions can be separated by mi...
A serious problem during the production and refinery process of crude oil is the existence of emuls...
In this research introduces a newly improved method of microwave dehydrator. A system consists of mo...
The mechanism of microwave heating is essentially that of dielectric heating. After exposing the emu...
Emulsion is a mixture of two immiscible substances which is divided into two types of emulsions eith...
Formation of emulsions during oil production is a costly problem, both in terms of chemicals used an...
With the increasing energy crisis and the drive to reduce CO2 emissions, the mechanism of microwave ...
The main sources of oily waste water are oil- refineries, metal industry and food industry. Any tech...
Traditional ways of breaking emulsions using heat and chemicals are disadvantageous from both econom...
Traditional methods to separate water-in-crude oil emulsions like chemical demulsifiers are not envi...
Although emulsions are very useful and desired products in cosmetic,food and soft drink industries,y...
The formation of emulsions during oil production and processing is a costly problem, both in terms o...
The role of microwave concept in demulsifying water-in-crude oil emulsion was assessed experimentall...
Traditional ways of breaking emulsion using heat and chemicals are disadvantageous from both economi...
The experimental data showed that viscous and stable water-in-oil emulsions can be separated by mi...
The experimental data showed that viscous and stable water-in-oil emulsions can be separated by mi...
A serious problem during the production and refinery process of crude oil is the existence of emuls...
In this research introduces a newly improved method of microwave dehydrator. A system consists of mo...