The technique of finding gold called phytomining uses plants to extract particles of the precious metal from soil.
Some plants have the natural ability to take up through their roots and concentrate metals such as nickel, cadmium and zinc in their leaves and shoots.
For years, scientists have explored the use of such plants, dubbed hyperaccumulators, for pollution removal.
However, there are no known gold hyperaccumulators, because gold doesn't easily dissolve in water so plants have no natural way of taking the particles in through their roots, LiveScience reported.
Fifteen years ago, Anderson first showed it was possible to get mustard plants to suck up gold from chemically treated soil containing gold particles.
The technique includes finding a fast-growing plant with a lot of aboveground leafy mass, such as mustard, sunflowers or tobacco. The next step is to plant the crop on soil that contains gold.
Once the crops reach their full height, treat the soil with a chemical that makes gold soluble. When the plant transpires, water is pulled up and out through tiny pores on its leaves, it will take up the gold water from the soil and accumulate it in its biomass. It can then be harvested.
"Gold behaves differently in plant material," Anderson told the website.
If the plants are burned, some of the gold will stay attached to the ash, but some will disappear. Processing the ash poses difficulties, too, and requires the use of huge amounts of strong acids, which can be dangerous to transport.
The gold found in plants are nanoparticles, so there may be great potential for the chemical industry, which uses gold nanoparticles as catalysts for chemical reactions, Anderson said.
Gold phytomining won't ever take the place of traditional gold mining, Anderson said.
However, some scientists warn the environmental risks associated with growing gold itself may be too high. Cyanide and thiocyanate, the same hazardous chemicals used by mining companies to get gold to leach out of rock, must be used to dissolve gold particles in soil water.
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