Locksley Resources Achieves Breakthrough Antimony Recovery Results With Rice University
Locksley Resources Ltd (ASX: LKY) has reported what it describes as a Locksley Resources antimony processing breakthrough with Rice University, with laboratory work indicating that the DeepSolv™ hydrometallurgical process can dissolve antimony-bearing ore and concentrates and recover high‑purity antimony oxide and metallic antimony products.
According to the ASX announcement dated 9 July 2026, raw ore samples containing approximately 9–12% antimony (Sb) were upgraded to recovered products grading up to 93% Sb following optimisation, while antimony concentrates grading approximately 65–70% Sb produced recovered products grading approximately 91–96% Sb.
Importantly for investors, the program has also demonstrated electrodeposition of pure metallic antimony from DeepSolv™ leach solutions, pointing to a technically integrated mine‑to‑metal pathway under laboratory conditions.
For Locksley Resources Ltd, which is executing a mine‑to‑market strategy centred on its Mojave Project in California, these results provide further technical support for its downstream processing plans in the United States.
According to Locksley Resources Ltd, laboratory testing at Rice University has now delivered encouraging outcomes across both dissolution (leaching) and recovery workstreams using the DeepSolv™ technology.
Key reported metrics include:
Raw ore feedstock
Antimony concentrate feedstock
These data points can be summarised as follows:
| Feedstock type | Starting grade | Recovered product grade |
|---|---|---|
| Raw ore (no prior processing) | ~9–12% Sb | Up to 93% Sb |
| Antimony concentrate | ~65–70% Sb | ~91–96% Sb |
The announcement also reports that the Rice team has produced phase‑pure antimony oxide from raw ore under optimised laboratory conditions. In practical terms, "phase‑pure" refers to a product where the recovered antimony oxide exists as a single, well‑defined chemical phase without measurable contamination from other mineral phases, which is important for consistent product quality.
In parallel, electrodeposition testwork is reported to have:
Collectively, these outcomes indicate an increasingly connected processing route, moving from ore dissolution to the recovery of both high‑purity antimony oxide and metallic antimony products.
For investors, the key point is that this work shifts DeepSolv™ from early‑stage leaching tests towards a more integrated flowsheet, which is relevant to evaluating potential future processing options for Locksley Resources Ltd and other suitable antimony feedstocks in the United States.
The announcement frames DeepSolv™ as a low‑temperature hydrometallurgical process being assessed as a cleaner, lower‑impact alternative to conventional smelting and some traditional chemical leaching methods. To understand why this matters, it is useful to outline several core concepts.
Hydrometallurgy is a method of extracting metals using water‑based chemical solutions instead of very high‑temperature furnaces.
At a basic level:
DeepSolv™ is the specific hydrometallurgical system being evaluated at Rice University for antimony recovery.
Traditional antimony processing often involves high‑temperature smelting, which can:
According to Locksley Resources Ltd, a low‑temperature hydrometallurgical pathway such as DeepSolv™ could potentially offer:
Furthermore, whether these benefits can be achieved at commercial scale remains a question for future pilot testing and economic assessment, but the laboratory results provide early technical validation.
To make the technical content of the announcement more accessible, several important terms can be defined as follows:
For investors analysing Locksley Resources Ltd, understanding these concepts helps clarify how DeepSolv™ might fit into a future processing chain and why step‑by‑step experimental validation is important.
Locksley Resources Ltd describes its collaboration with Rice University as a core part of its mine‑to‑market strategy for antimony and rare earth elements at the Mojave Project in California.
According to the ASX announcement, the Rice University partnership is focused on:
Rather than a short, discrete academic study, the program is being progressed through defined stages:
The Mojave Project provides representative antimony feedstocks for this program, enabling Rice and Locksley Resources Ltd to test DeepSolv™ on realistic ore and concentrate samples.
A key feature of the collaboration is the Sponsored Research Agreement between Rice University and Locksley Resources Ltd.
Under this agreement:
The announcement also notes that the processing knowledge and IP being developed could have wider application across suitable U.S.‑sourced antimony feedstocks, not just material from Mojave. This could have long‑term relevance for Locksley Resources Ltd as the owner of jointly held IP in a context where the United States is seeking to strengthen critical mineral supply chains.
"These latest results represent another important technical milestone in our collaboration with Rice University. They demonstrate that DeepSolv™ processing technology has the potential to unlock a cleaner and more flexible antimony recovery pathway. The work has now moved beyond simple leaching tests and has demonstrated recovery of both antimony oxide and metallic antimony products from ore and concentrates. For shareholders, this is meaningful progress. It supports the Company's strategy of advancing U.S. based antimony processing capability at a time when secure domestic supply chains for critical minerals are increasingly important," said Kerrie Matthews, Managing Director & Chief Executive Officer of Locksley Resources Ltd.
According to the ASX announcement, the next phase of the Rice University program is focused on both refining the DeepSolv™ process and preparing for potential pilot‑scale testing.
The upcoming optimisation activities are reported to include:
In parallel with laboratory optimisation, Locksley Resources Ltd and Rice University intend to:
A summary of the main planned activities is set out below:
| Next phase activity | Purpose |
|---|---|
| Solvent recyclability testing | Assess process economics and environmental profile |
| Single‑phase antimony oxide production | Target higher‑value, high‑purity oxide products |
| Electrodeposition rate determination | Quantify metallic antimony recovery performance |
| Pilot‑scale equipment evaluation | Bridge from bench‑scale to potential pilot operations |
| Downstream product assessment | Identify potential end‑use markets and specifications |
From an investment perspective, success in these stages would provide additional technical data points relevant to assessing any future decision on constructing pilot or demonstration‑scale facilities. However, the announcement does not present economic studies or detailed cost estimates at this stage.
For readers less familiar with antimony and its processing, several broader context points may help frame the importance of the DeepSolv™ work undertaken by Locksley Resources Ltd and Rice University.
Antimony is a metallic element used in various industrial applications, mainly in the form of antimony trioxide (Sb₂O₃) and antimony metal alloys.
Key uses include:
Because of these uses, antimony is often classified as a critical mineral in several jurisdictions, including the United States, where imported supply has historically dominated consumption.
In its announcement, Locksley Resources Ltd highlights a focus on re‑establishing domestic supply chains for critical materials in the United States. Several considerations are relevant:
The Rice University collaboration is consequently positioned by Locksley Resources Ltd as a way to investigate whether a modern, hydrometallurgical antimony processing route could contribute to that objective, subject to future technical and economic validation.
While both routes aim to extract metal from ore, they differ in several ways:
The DeepSolv™ process, as reported by Locksley Resources Ltd, is being tested to see if it can combine lower operating temperatures with effective recovery of high‑purity antimony products, while also maintaining solvent recyclability.
Locksley Resources Ltd is focused on critical minerals in the United States, with its Mojave Project in California targeting rare earth elements (REEs) and antimony. The company states that it is pursuing an integrated mine‑to‑market strategy for antimony, combining upstream resource development at Mojave, midstream processing innovation via the Rice University DeepSolv™ program, and a broader aim to support domestic U.S. critical mineral supply chains.
From an investor standpoint, the 9 July 2026 announcement reinforces several elements of this thesis:
Future updates are expected as the collaboration advances through the next stages of optimisation, solvent recyclability assessment, pilot‑scale equipment evaluation and downstream product application studies. For investors tracking the Locksley Resources antimony processing breakthrough with Rice University, the evolution of this program will likely form a key part of evaluating the company's downstream processing capability alongside its project‑level exploration and development activities.
For investors seeking exposure to a critical minerals company advancing an integrated U.S. antimony processing strategy, Locksley Resources Ltd (ASX: LKY) offers a compelling combination of upstream project development at its Mojave Project and downstream processing innovation through its Rice University partnership. To explore the company's full strategy, project pipeline, and the latest developments in its DeepSolv™ hydrometallurgical program, visit the Locksley Resources website.