Scope
The QGE study included analysis of the most economical fossil fuel generation options by evaluating the costs of diesel vs gas, taking into account the fuel costs at the site. This formed the “Base Case,” which was then developed to include various mixes of renewables and storage.
QGE also undertook a review of technical options and technologies that could enable the use of higher renewables penetration. Focus was on those technologies that may benefit the project and emerging technologies that may attract ARENA or similar government incentives that encourage the use of renewable technologies.
Background
The Mackay Potash Project is situated in Western Australia, approximately 785 kilometres south of the Port of Wyndham. The Project comprises twelve tenements covering a total area of 4,370 square kilometres spanning Lake Mackay, which is the world’s largest undeveloped SOP-bearing salt lake. The project is based on the extraction of SOP mineralisation which is dissolved in the brine (hypersaline groundwater) within Lake Mackay. The process plant has been designed for a capacity of 426,000 tonnes per year of SOP as dry granular product.
Agrimin engaged QGE to advise on the most appropriate mix of renewable energy generation and traditional fossil fuel generation for their proposed Sulphate of Potash (SOP) facility at Lake Mackay with consideration of new technologies including:
- Cloud prediction / forecasting systems
- Low load generators
- On-site generation of hydrogen
- Use of Concentrated Solar Thermal (CST) for process heat
Outcomes
QGE’s study helped Agrimin to understand payback periods and maximise return on investment for renewable energy generation technologies. The study provided up-front cost estimates and balanced them against operational cost savings from reduced engine run hours and fuel consumption when various renewable energy options and batteries were added to the gas generation system.