Audio By Carbonatix
Researchers from the School of Biosciences at the University of Birmingham have discovered the mechanisms that allow the common soil bacterium Desulfovibrio desulfuricans to recover the precious metal palladium from industrial waste sources.
Palladium is one of the platinum group metals (PGMs) which are among the most precious resources on earth. They possess a wide variety of applications, due to their exceptional chemical properties. PGMs are routinely used in many catalytic systems and are the active elements of autocatalytic converters that reduce greenhouse gas emissions.
Dr Kevin Deplanche who led the study explained why new ways of recovering PGMs are needed. "These metals are a finite resource and this is reflected in their high market value," he said. "Over the last 10 years, demand has consistently outstripped supply and so research into alternative ways of recovering palladium from secondary sources is paramount to ensuring future availability of this resource."
Previous work in the team's lab showed that Desulfovibrio desulfuricans was able to reduce palladium in industrial wastes into metallic nanoparticles with biocatalytic activity. Now, the precise molecules involved in the reduction process have been identified. Hydrogenase enzymes located on the surface membrane of the bacterium carry out the reduction of palladium, which results in the accumulation of catalytic nanoparticles. The bacterial cells coated with palladium nanoparticles are known as 'BioPd."
The group believes that BioPd has great potential to be used for generating clean energy. "Research in our group has shown that BioPd is an excellent catalyst for the treatment of persistent pollutants, such as chromium, that is used in the paint industry. BioPd could even be used in a proton exchange fuel cell to make clean electricity from hydrogen," said Dr Deplanche. "Our ultimate aim is to develop a one-step technology that allows for the conversion of metallic wastes into high value catalysts for green chemistry and clean energy generation," he said.
Provided by Society for General Microbiology
DISCLAIMER: The Views, Comments, Opinions, Contributions and Statements made by Readers and Contributors on this platform do not necessarily represent the views or policy of Multimedia Group Limited.
Tags:
DISCLAIMER: The Views, Comments, Opinions, Contributions and Statements made by Readers and Contributors on this platform do not necessarily represent the views or policy of Multimedia Group Limited.
Latest Stories
-
Dialectical Democracy (Part One)
13 minutes -
Who owns the child benefit? A family debate that is tearing homes apart abroad
13 minutes -
Water crisis cripples learning at Nalerigu SHS as students abandon night studies to search for water
31 minutes -
IMF Board set to approve Ghana’s final Programme Review, greenlight post-bailout economic plan
42 minutes -
Ghana to deploy condom vending machines nationwide by end of 2026 to boost HIV prevention
54 minutes -
NDPC briefs Speaker Bagbin on proposed consolidated national development plan
59 minutes -
Presbyterian Church launches Disability Policy, urges members to champion inclusion
1 hour -
GPHA plans sports centre as it marks 40th anniversary
1 hour -
Galamsey affecting fish production in Bono Region – Fisheries Commission
1 hour -
Dambai College of Education appoints new Principal and Vice Principal
1 hour -
Ho West chiefs and queens commend Volta Regional Minister for inclusive leadership
2 hours -
Gov’t invests over GH¢900m under ‘No Stress Free’ initiative – Education Minister  Â
2 hours -
Government committed to revamping cocoa industry – COCOBOD
2 hours -
Mahama assures transfer of UGMC to University of Ghana
2 hours -
Oti High Court adjourns NPP Krachi East Organiser election dispute to October Â
2 hours