Gentari
&
PCL
leaders
break
ground
at
Maryvale
Solar
&
Energy
Storage
Facility
Project
Maryvale
is
a
next-generation
hybrid
renewable
energy
facility
that
integrates
a
243
MWp
solar
installation
with
a
172
MW/409
MWh
battery
energy
storage
system
(BESS).
Once
operational,
it
can
deliver
up
to
172
MW
of
dispatchable
clean
electricity
–
enough
to
power
around
82,000
homes
annually
–
while
helping
to
avoid
up
to
615,000
tonnes
of
carbon
emissions
each
year.
At
the
peak
of
construction,
the
project
is
expected
to
create
up
to
360
jobs
and
unlock
local
opportunities
across
the
regional
supply
chain.
“Project Maryvale represents our commitment to accelerating Australia’s energy transition with reliable, dispatchable renewable energy,” said Claire Elkin, Head of Gentari Australia. “As one of the first large-scale DC-coupled solar and storage projects in the country it embodies our ambition to deliver clean energy solutions at scale while supporting grid resilience.”
Secured under NSW’s Electricity Infrastructure Roadmap
Project Maryvale was awarded a Long-Term Energy Service Agreement (LTESA) under the NSW Government’s Electricity Infrastructure Roadmap. Administered by ASL as the NSW Consumer Trustee, the LTESA provides financial certainty through an option of an energy price floor. This mechanism helps to de-risk the project and facilitate financing.
The project is strategically located within the Central-West Orana REZ – one of the priority zones identified by the NSW Government to accelerate renewable energy development. This region offers strong solar resources and is designed to accommodate large-scale generation and supporting infrastructure.
Maximising the Value of Green Energy
The Maryvale Solar & Energy Storage System will support a reliable renewable energy by enhancing grid stability and efficiency. The system will offer dispatchable renewable energy by firming its own solar output and dispatching it into the grid when it is most needed.
Additionally, the system can provide essential ancillary services, which are critical for maintaining grid stability. Together, these functionalities position the BESS as an asset not only for project economics but for overall grid resilience.
Leading Deployment of DC-Coupled Hybrid Solutions
Project Maryvale stands as one of the largest DC-coupled solar and battery hybrid projects under construction and represents a significant step forward in the integration of renewable energy and storage technologies. The DC-coupled solar and storage allows the project to maximise excess solar generation by directly charging the BESS while delivering smoother, scheduled generation.
Social Impact and Local Engagement
Gentari is committed to delivering lasting value to the local Maryvale community. This includes establishing a community benefit fund, investing in workforce and industry capability development, and supporting regional infrastructure and housing initiatives in collaboration with local authorities.
Through ongoing engagement with First Nations communities, local businesses, education providers, and government stakeholders, Gentari aims to foster inclusive participation and build long-term partnerships based on trust, openness, and shared benefit.
Project Maryvale adds to Gentari’s clean energy portfolio in Australia, which now includes 814 MW of solar and solar hybrid projects installed and under construction across the country.
The project is being delivered by PCL Construction’s Solar Division, appointed as the EPC contractor, while the PV modules and BESS system are being free-issued through direct procurement from Tier 1 suppliers — Trinasolar for the solar modules and Contemporary Amperex Technology Australia Pty Ltd , a globally recognised OEM, for the BESS. Notice to Proceed on the construction of this project was given in January 2025 and construction on site is now underway.
Hashtag: #Gentari #ProjectMaryvale #SolarEnergy #BatteryStorage #RenewableEnergy #CleanEnergy #EnergyTransition #NetZero #AustraliaEnergy #GreenInfrastructure
The issuer is solely responsible for the content of this announcement.
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