

Project Update
Dingo Technology is currently transitioning from a initial pilot plant facility to a scaled up commercial production plant. During this phase, Dingo Technology is still accepting X-ray Fluorescent waste discs to divert the waste from landfill. Dingo is expecting the plant to be commissioned in late Q4 2026 and producing test batches into Q1 2027.
Target minimum 500kg batches.
Annual production rate of 15-30 tonnes per annum.
Expression of interest - prospective customers, batch sizing, contact us, specifications, additives, size distributaion, fines - requirements.


Our Project
Dingo Technology is currently transitioning its operations from a pilot test facility to a small-scale commercial production plant. During this phase, Dingo Technology continues to accept X-ray Fluorescent waste discs to divert the waste from landfill. Commissioning of the commercial scale pilot plant is scheduled to commence Q3 2026 and first commercial batches available in Q1 2027. Dingo Technology's first phase of the project aims to scale the process to produce 15-30 tonnes annually, growing to meet customer needs.
Dingo invites expressions of interest from prospective customers for our recycled 12:22 lithium borate flux.
Lithium Borate Flux Bead Recycling
X-ray fluorescence is used extensively by mineral resources and industrial sectors to analyse and determine the elemental composition of samples tested. X-ray fluorescence is the emission of X-rays from a material after being excited using high energy X-rays or gamma rays. Each element has a unique emission profile after being excited by a radiation source and the subsequent electron shift from losing an inner electron.
Sample preparation is an important consideration before analysing a sample using X-ray fluorescence. The addition of Lithium Borate fluxes provides an efficient intermediate step to convert the original sample into glass beads suitable for X-ray fluorescence analysis. The intermediate steps provide advantages including analysing consistent particle sizes and improving calibration standards for sample characterisation. There are a number of fluxes available in a range of ratios to provide optimal conditions for elemental analysis. Our recycled granular contains 12-part Lithium Tetraborate to 22-part Lithium Metaborate X-ray fluorescence Flux (12:22).


Unit 4, 7 Marchesi Street, Kewdale Western Australia 6105, Australia
Ph: 08 6185 1765
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