2012
DOI: 10.1007/s11242-012-0083-0
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Electrokinetic Salt Removal from Porous Building Materials Using Ion Exchange Membranes

Abstract: The removal of salt from porous building materials under the influence of an applied voltage gradient normally results in high pH gradients due to the formation of protons and hydroxyl ions at the electrodes. The formed acidic and alkaline regions not only lead to disintegration of the porous material, but also affect the salt transport. In this work we use ion exchange membranes between the electrodes and the porous material to prevent the protons and hydroxyl ions from intruding into the material. The porous… Show more

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Cited by 19 publications
(7 citation statements)
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“…This effect is in both cases negligible. Second, if ions were depleted from the channel, we would expect a simultaneous decrease of the concentration of the dye at both electrodes due to electroneutrality across the flow channel [41]. However, a simultaneous decrease at both sides of the profiles is not observed.…”
Section: Resultsmentioning
confidence: 95%
“…This effect is in both cases negligible. Second, if ions were depleted from the channel, we would expect a simultaneous decrease of the concentration of the dye at both electrodes due to electroneutrality across the flow channel [41]. However, a simultaneous decrease at both sides of the profiles is not observed.…”
Section: Resultsmentioning
confidence: 95%
“…If we considered current is also constant in these experiments than ohm's law obey. Voltage is directly proportional to the resistance, increase the resistance increase voltage dropped around the sample [18].…”
Section: Electrokinetic Experimentsmentioning
confidence: 99%
“…The solid matrix is needed at the electrodes. Also Kamran et al (2013) tested a system with ion exchange membranes at the electrodes (here with a sponge between brick and membrane), and they found that the membranes fulfilled the goal of diminishing pH changes in the brick sample, but concluded that the system was inefficient and that the Na removal was faster in a system without the membranes. The work with development of electrode units underlines the necessity for using a material at the anode which in addition to neutralizing the acid, also gives good electrical contact between metallic electrode and stone.…”
Section: Neutralization Of Ph Changes From Electrode Reactionsmentioning
confidence: 99%