Extracting critical metals for Renewable Energy from Existing Mines
Ramping up renewable energy products will require a range of critical metals. One of these elements, tellurium, is gaining in popularity for use in photovoltaics, or solar panels. As global demand for solar panels continues to increase, so is the need for critical metals like tellurium.
Tellurium isnโt mined as a solo mineral. Currently, most tellurium is collected as a by-product from copper mining. โThe fundamental question is: how much tellurium is out there?โ saysย Simon Jowittย , economic geologist at University of Nevada Las Vegas. He and co-author Brian McNultyย are trying to find out where this tellurium is and how much metal could be there. Jowitt isย presentingย their work at the Geological Society of America annual meeting tomorrow.
Unfortunately, the amount of tellurium in a mine is rarely reported. To fill in the gaps and create estimates of critical minerals, Jowitt and McNulty developed proxies to estimate tellurium content globally.
Their first proxy results from Resource and Reserve estimates. In these reports, a mining company uses their own investigation data and estimates that there are X-million tons of metal in the ground. These reports are used to estimate the value of a mine site.
โWe what we do is take that informationโwhich tells us how big the deposit is, how many million tons of ore or mineralizationโand we combine that with information thatโs published elsewhere on the concentration of tellurium and the deposit,โ says Jowitt. The researchers can then calculate an estimate for tellurium.
โThe second proxy is where we know the size of the deposit,โ Jowitt says. In this case, the team uses the amounts of related tellurium minerals like calaverite, a gold-tellurium metal. โWe can estimate the amount of tellurium in that mineral, combine that with the reported size of the deposit, and again, develop a proxy.โ
They looked at 518 mineral deposits in active mines in the U.S. and Canada that are known to contain tellurium. Using their proxies, the researchers calculated that 18 gold mines in the two countries could produce ~90 tons/year of tellurium from current mining, with another six copper, zinc, and nickel mines in Canada having the potential to produce ~170 tons per year of tellurium. Jowitt says this is a minimum estimate, because not every gold, copper, and nickel mine in the U.S. and Canada had appropriate data available.
By these estimates, they found that mines move around 260 tons of tellurium, but they donโt collect it. โIf you recovered that tellurium, you could bump up global tellurium production by about 25%,โ says Jowitt. โThatโs about seventeen and a half million dollars of tellurium thatโs being moved around by the minerals industry but is being lost to waste.โ
Jowitt notes that their tellurium study is just one example for the potential of extracting critical metals from existing mining operations. โThereโs a whole range of by-productย and co-product elements that are we moving around when mining,โ he says. โWe need to do better making mineral mining operations more sustainable by extracting what we can from existing mineral deposits. And if we do that, itโs good for the environment, itโs good for the minerals industry (the way itโs being viewed), and itโs good for company bottom lines.โ
While their study focused on active mines, Jowitt notes that extracting critical metals from spoils piles in old mines can be another win-win situation. โThereโs a whole scope for extracting all sorts of metals from mining waste,โ he says. Old tailings and slag have potential for metal extraction. โThereโs potential for all sorts of wealth from waste,โ he says. While extracting metals from tailings can be economically profitable, thereโs also an environmental benefit.
โA whole load of these sites are environmentally problematic. So what you do is essentially reprocess an environmentally problematic waste pile or tailings pile, you remove the environmental problem, and use the revenue generated from the process,โ Jowitt explains. โItโs not-for-profit miningโthe value of the stuff you extract is being incorporated into the mining operations and actually reducing the environmental harm.โ
Jowitt says that as the need for carbon-neutral technologies increase, companies will have to consider mining multiple critical metals at once. โThe demand estimates for some of these metals are just huge,โ says Jowitt. โUnless we start thinking about [mineral extraction] in these kinds of ways, weโre going to end up with situations where metal prices start skyrocketing and climate change mitigation starts slowing down.โ
















