● In commercial production — Melbourne, daily since May 2025

Low carbon concrete
that behaves like… concrete.

290,000 m³ + produced. 160–180 truckloads per day. No pump blockages. No hot loads. No cost premium.

Concrete produced to date
353,267 m³+
¹ Based on client production records
OPC Avoided
30,028 t
² Real reduction using actual client data, not a theoretic industry benchmark
CO₂ Reduction
25,344 t
³ Assuming 850kg CO₂/mt of OPC

In the field, every day

The numbers speak for themselves.

Operational data from commercial concrete production since May 2025.

160–180

truck movements per day

28–50%

Cement reduction vs. conventional mix

~15%

lower water usage

0

pump blockages reported

0

hot load issues reported

0

flash setting incidents

“The pour became a non-event.

Newcastle City Council & MECLA Trial — Entire Concrete, November 2025

The approach

Years of development. Answered in production, not in a laboratory.

Same performance. Same production process. 28–50% less cement. No cost premium on a per-m³ basis. Minimal capex to integrate.

  • Below 175 kg CO₂ per m³ on 25MPa Everyday Grey Concrete (EPD)
  • Compatible with virgin and recycled feedstocks
  • Drops into existing dosing systems

Does it integrate with my existing batching system?

Yes. With minimal capex required. A dedicated Xencrete silo is needed, but it drops into your existing batching process without disruption. Typical dose for a 25MPa mix:

12–14 kg / m³

Has it been tested at scale?

Yes. Not a trial. Not a pilot. In daily commercial production since May 2025, with more than 290,000 m³ produced to date.

What does it do to my EPD?

Significantly improves it. 25MPa Everyday Grey Concrete produced with Xencrete has achieved an EPD outcome of:

<175 kg CO₂ / m³

Will it pump?

Yes. Zero pump blockages across all commercial production since May 2025 covering 160–180 truckloads per day.

Will it cost more?

No. Once commissioned, there is no cost premium for using Xencrete in daily production

Supply chain

Hunter Valley to eastern seaboard. Already running.

Xencrete is bulk blended in the Hunter Valley, with servicing capability across Australia's eastern seaboard. The supply chain is operational at commercial scale. There is no pilot phase required.

  • No cost premium vs. conventional concrete
  • Compatible with virgin and recycled feedstocks
  • Drops into existing batching plant infrastructure
  • Consistent supply at commercial volumes
  • Typical dose 12–14 kg per m³ for 25MPa mix

Environmental Performance

Real reductions. Verified in production.

Cement accounts for approximately 8% of global man-made CO₂. Xencrete has been demonstrated — not modelled — to reduce those emissions in commercial concrete production.

CO₂ Reduction

23–37 %

Demonstrated in commercial deployment vs. conventional mix designs. Best-in-class EPD outcome of below 175 kg CO₂ per m³ on 25MPa Everyday Grey Concrete.

Water Usage

~15 %

Approximately 15% lower water demand per cubic metre compared with conventional concrete production — a consistent result across commercial batching.

Operational record to date — zero incidents across all commercial production

0

Pump blockages

0

Hot load issues

0

Flash setting incidents

0

Cost premium

Commercial Enquiries

We are operational. Not a startup pitch.

In daily production since May 2025, 290,000 m³ has already been produced. Supply is established. If your business batches concrete at commercial scale and you want to reduce embodied carbon without changing your processes — the conversation starts here.

Independent concrete producers only. We are not in a position to respond to general, academic or speculative enquiries.

290,000 m³+

Already produced commercially — not a trial volume

0 disruptions

No pump, hot load or flash setting issues on record

No premium

Cost-neutral against conventional concrete production

<175 kg

CO₂ per m³ on 25MPa Everyday Grey Concrete — EPD verified

Notes on metrics

¹ CO₂ reduction: based on direct comparison with client conventional mix designs. 

² OPC avoided: calculated based on direct comparison with client conventional mix designs.

³ CO₂ reduction estimated using cement reduction data and an assumed embodied carbon factor of 850 kg CO₂ per tonne of cement. Conventional cement in Australia typically embodies between 800 and 900 kg CO₂ per tonne.