With the increasing demand for rare earth elements (REEs) in many emerging clean energy technologies, there is an urgent need for the development of new approaches for efficient REE extraction and recovery. As a step toward this goal, we genetically engineered the aerobic bacterium Caulobacter crescentus for REE adsorption through high-density cell surface display of lanthanide binding tags (LBTs) on its S-layer. The LBT-displayed strains exhibited enhanced adsorption of REEs compared to cells lacking LBT, high specificity for REEs, and an adsorption preference for REEs with small atomic radii. Adsorbed Tb(3+) could be effectively recovered using citrate, consistent with thermodynamic speciation calculations that predicted strong complexati...
Rare earth elements (REE) are essential ingredients in many modern technologies, yet their purificat...
The aim of this study is to investigate the potential of cell walls of wild-type and lipoteichoic ac...
International audienceEarlier studies have shown that Pseudomonas aeruginosa can adsorb selectively ...
The use of biomass for adsorption of rare earth elements (REEs) has been the subject of many recent ...
The use of biomass for adsorption of rare earth elements (REEs) has been the subject of many recent ...
Lanthanide binding tags (LBTs) have been engineered onto the cell surface of E. coli to enhance bios...
The rare-earth elements are critical to many green energy technologies but are difficult to separate...
The rare-earth elements are critical to many green energy technologies but are difficult to separate...
Bacterial surfaces can be used in engineered systems through the implementation of bioreactors as un...
The increasing demand for rare earth elements (REEs) in the modern economy motivates the development...
Abstract Rare earth elements (REE) are essential ingredients of sustainable energy technologies, but...
In recent years, rare earth elements (REEs) have been widely used in various modern technological de...
Adsorption of rare earth elements (REE) onto the cell walls of Bacillus subtilis (a gram-positive ba...
Many of the scarcest metals are critical to future energy technologies. However, these metals often...
Rare earth elements (REE) are essential ingredients in many modern technologies, yet their purificat...
The aim of this study is to investigate the potential of cell walls of wild-type and lipoteichoic ac...
International audienceEarlier studies have shown that Pseudomonas aeruginosa can adsorb selectively ...
The use of biomass for adsorption of rare earth elements (REEs) has been the subject of many recent ...
The use of biomass for adsorption of rare earth elements (REEs) has been the subject of many recent ...
Lanthanide binding tags (LBTs) have been engineered onto the cell surface of E. coli to enhance bios...
The rare-earth elements are critical to many green energy technologies but are difficult to separate...
The rare-earth elements are critical to many green energy technologies but are difficult to separate...
Bacterial surfaces can be used in engineered systems through the implementation of bioreactors as un...
The increasing demand for rare earth elements (REEs) in the modern economy motivates the development...
Abstract Rare earth elements (REE) are essential ingredients of sustainable energy technologies, but...
In recent years, rare earth elements (REEs) have been widely used in various modern technological de...
Adsorption of rare earth elements (REE) onto the cell walls of Bacillus subtilis (a gram-positive ba...
Many of the scarcest metals are critical to future energy technologies. However, these metals often...
Rare earth elements (REE) are essential ingredients in many modern technologies, yet their purificat...
The aim of this study is to investigate the potential of cell walls of wild-type and lipoteichoic ac...
International audienceEarlier studies have shown that Pseudomonas aeruginosa can adsorb selectively ...