Skip to main content

Wonderful ways with rubber for asphalt

This month we look at two novel technologies that take circularity to the next level – transforming waste tyre rubber into a valuable asphalt constituent
By Kristina Smith August 2, 2023 Read time: 2 mins
Menestrina uses crumb rubber from waste tyres to replace bitumen

Italian bitumen plant specialist Menestrina has invented a new process which turns crumb rubber from waste tyres into a binder that can be used to replace some of the bitumen in an asphalt mix.

The Oxyboost process is based on air blowing technology which passes a stream of air through bitumen causing a chemical reaction which is part oxidisation and part dehydrogenation. Menestrina has been supplying air blowing plants for roofing industry bitumen for many decades and, in the last 20 years, for the road industry to create multigrade bitumen. Oxyboost, which has a patent pending, adds temperature and pressure into the process in a closed loop reactor.

There are many possible applications for the technology, according to Menestrina CEO Massimo Menestrina. Breaking down waste tyre rubber is one the first applications that the company is investigating using Oxyboost, working in partnership with bitumen laboratory MOPI.

“The Oxyboost process breaks the bonds of the molecules that form the rubber in the same way as when pyrolysis happens, but at a much lower temperature,” said Menestrina. Initial trials have worked at around 300°C but it may be possible to lower that to 250°C for industrial production, said Menestrina.

This way of using recycled rubber in roads is energy efficient, expanding the ways recycled tyre rubber can be used in asphalt. Traditional approaches see crumb rubber added straight to the mixer - the ‘dry process or blended earlier with the bitumen at high temperatures - the ‘wet process’. Menestrina’s process is different: it changes the rubber into a different material by end-of-life rubber into oil-extended bitumen whose final hardness can be adjusted up or down.

Menestrina and MOPI have been working on the new process for around three years. Initial phases saw the creation and testing of a laboratory scale unit. Now Menestrina has created an industrial unit which has undergone some initial tests and will now be upgraded for the next round of testing.

Another benefit of the Oxyboost process, said Menestrina, is that it reduces the smell of sulphur which is sometimes present in rubber-modified bitumen. The sulphur is mostly transformed into sulphates which have no smell.

Menestrina is aiming to have a commercial unit ready to market in one to two years. The company’s vision is that one of these plants could be placed at every asphalt manufacturing facility, using waste rubber to create a binder, reducing the use of virgin bitumen. 

For more information on companies in this article

Related Content

  • Innovative low temperature asphalt and aggregate options and advances
    May 16, 2014
    Studies show the asphalt sector has options for materials use that can lower costs and emissions, as well as increasing the use of recycling One study in the UK led by the Carbon Trust and Lafarge Tarmac has found that low temperature asphalt (LTA) could be used as an alternative to conventional asphalt on roads. Conventional asphalt is made when aggregates and bitumen are bound together at temperatures of between 180ºC-190ºC. However, the trial found that the alternative is able to bond road materia
  • More countries look to warm mix
    November 21, 2019
    Though warm mix technology has been around for decades, take-up has been patchy - will renewed environmental pressure change that? asks Kristina Smith
  • Better road surfaces to last longer
    August 23, 2013
    Preservation can make roads perform better and last longer - and save money in the long run. Kristina Smith reports BAM Wegen has laid the first ever half-warm porous asphalt section on a major highway in the Netherlands. The asphalt for the 500m-long test section on the A18 near Varsseveld was produced at 105°C rather than 160°C, representing a saving on energy and CO2 emissions of around 30%.
  • Plant advances for asphalt production boost efficiency
    May 30, 2018
    Advances in asphalt plant technology will boost efficiency for producers, while increasing the percentage of recycled materials that can be used in the mix - Mike Woof writes. Asphalt plant technology continues to advance as the rival firms fine-tune their technologies for greater performance. New plants can give higher quality output due to new control technologies, while also allowing for recycled asphalt pavement (RAP) to be used more efficiently, while still ensuring tight mix specifications are met. A