Hatch Chosen for Landmark Electric Smelting Furnace Project

Innovative Steps in Ironmaking with Hatch and NeoSmelt
The NeoSmelt consortium has made a significant choice in the realm of sustainable iron production by partnering with Hatch. This collaboration is aimed at establishing Australia’s largest electric smelting furnace, marking a pivotal move towards eco-friendly metal production.
The Role of Hatch in the NeoSmelt Project
Hatch has been designated as the key technology and engineering contractor for this ambitious project. They will oversee project management as well as provide engineering services for both the electric smelting furnace and the accompanying balance of plant infrastructure. With their acclaimed CRISP+ electric smelting furnace technology, Hatch is set to revolutionize traditional ironmaking processes.
Goals of the NeoSmelt Initiative
This groundbreaking initiative aims to utilize Pilbara iron ore to create a lower-carbon emissions process through direct reduced iron electric smelting furnace (DRI-ESF) technology. This is a monumental step in the efforts to redefine the industry standards for carbon emissions in iron production.
Timeline and Milestones
The NeoSmelt project entered the feasibility study phase in the second quarter of 2025, with the aim of reaching a final investment decision by 2026. If all goes according to plan, operations are set to commence by 2028, further enhancing the region's reputation as a hub for innovative mining technologies.
Collaborative Excellence: A Team of Experts
John Bianchini, the chair and CEO of Hatch, has expressed enthusiasm about this partnership. He highlighted the company’s extensive experience in smelting furnace technology, particularly emphasizing their collaborative efforts with the NeoSmelt consortium since the initial pilot furnace design was completed in 2023. This partnership symbolizes over 70 years of Hatch’s prowess in the sector, aiming to accelerate the iron and steel industry's decarbonization efforts.
Industry Leadership and Vision
The NeoSmelt consortium includes prominent industry players such as BHP, BlueScope, Mitsui Iron Ore Development, Rio Tinto, and Woodside Energy. Their collective vision showcases an unwavering commitment to pioneering a lower carbon intensity in ironmaking while facing the challenges of a difficult-to-abate industry.
Setting New Standards for the Future
This partnership not only sets a new benchmark in environmental responsibility but also aligns with global movements towards sustainability in the mining and metals sector. By leveraging innovative technologies and increasing collaboration among various industry stakeholders, they aim to pave the way for a cleaner future.
About Hatch: A Legacy of Innovation
Founded on a rich history, Hatch is recognized as a global leader in engineering, project delivery, and professional services. With a team of 10,000 experts spread across more than 150 countries, Hatch is adept at tackling complex challenges and delivering effective solutions across the mining, energy, and infrastructure sectors. Their commitment to innovation ensures they not only meet client needs but also drive positive change within the communities they serve.
Frequently Asked Questions
1. What is the main goal of the NeoSmelt project?
The NeoSmelt project aims to create a lower-carbon emission ironmaking process using Pilbara iron ore through electric smelting technology.
2. Who is leading the design of the electric smelting furnace?
Hatch has been selected as the primary contractor leading the design and implementation of the electric smelting furnace.
3. When is the project expected to become operational?
The project aims to begin operations in 2028 after completing the feasibility studies and investments.
4. Which companies are part of the NeoSmelt consortium?
The consortium includes BHP, BlueScope, Mitsui Iron Ore Development, Rio Tinto, and Woodside Energy.
5. How does the CRISP+ technology work?
The CRISP+ technology employed by Hatch facilitates electric smelting, significantly reducing carbon emissions compared to traditional processes.
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