DEMM Engineering & Manufacturing

RESEARCHER­S PAVE THE WAY TO SALT-RESISTANT CONCRETE

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PAVEMENTS COULD soon be saved from some of the ravages of the winter chill thanks to a new type of low-cost concrete that absorbs significan­tly less of the salt that gets spread on it annually.

Every year, salt – also known as sodium chloride – gets spread in vast quantities on roads and pavements to stop them freezing. Most of this salt is ultimately washed away, but large quantities are absorbed as salty water, which causes the concrete to deteriorat­e and steel within to rust and corrode.

Now, researcher­s from Brunel University London have devised a new concrete mix that absorbs 64 percent less water and 90 percent less salt than normal concrete, whilst being up to 42 percent stronger. It’s hoped the new mix could lead to pavements that are best placed to withstand their annual dousing of salt.

“Incorporat­ion of a sodium acetate compound into concrete, at the mixing stage, works on absorbing some of the water to form crystals that line the walls of the pores in the concrete,” said Mazen Al-Kheetan, a PhD student at the Brunel’s department of Civil and Environmen­tal Engineerin­g, who is leading the project. “These crystals increase the hydrophobi­city of the concrete – the amount concrete repels the water – which ensures the reduction of water uptake through the pores. “Also, when applying de-icing salt to pavements made from this concrete mix, the presence of the protective compound within the pores work on fending off both the water and the waterborne chlorides.” Whilst “the long-term performanc­e of this material is being evaluated,” said Al-Kheetan, the research team is confident that new mix can offer substantia­l economic advantages, as it’s cheap and easy to prepare, unlike currently available alternativ­es. They’re also confident whilst the new mix offers better protection from salt damage, it doesn’t do so at the expense of performanc­e in other areas. “In our initial experiment­al work, we noticed that using the sodium acetate compound might reduce the compressiv­e strength of concrete, despite its advantage in reducing the water absorption of concrete,” said Al-Kheetan. “Accordingl­y, we have worked on producing an optimum formulatio­n of concrete with optimum compound dose to achieve maximum protection and preserved strength. Interestin­gly, we managed to produce concrete with the incorporat­ed compound that has 64 percent less permeabili­ty than normal concrete and reduces chloride ingress by more than 90 percent Meanwhile, when it came to the compressiv­e strength of concrete, a maximum strength gain of 42 percent was achieved.” YOU CAN READ THE RESEARCH PAPER – INTEGRATIO­N OF ANHYDROUS SODIUM ACETATE (ASAC) INTO CONCRETE PAVEMENT FOR PROTECTION AGAINST HARMFUL IMPACT OF DEICING SALT – HERE

 ??  ?? SODIUM ACETATE INTERACTIN­G WITH CONCRETE AT X20000 ZOOM
SODIUM ACETATE INTERACTIN­G WITH CONCRETE AT X20000 ZOOM
 ??  ?? SODIUM ACETATE AT X10000 ZOOM
SODIUM ACETATE AT X10000 ZOOM

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