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"bacterial"×

Surface Complexation Modeling of Terbium Biosorption onto E. Coli Bacterial Surfaces with Lanthanide Binding Tags

Apr 01, 2018
142.53 kB
Publicly accessible
Lanthanide binding tags (LBTs) have been engineered onto native Escherichia coli (E. coli) bacterial surfaces to enhance extraction and recovery of rare earth elements (REEs). Three strains of E. coli were studied: (1) the native E. coli surface, (2) a mutant E. coli surface with ...
Authors
Jiao, Y. Lawrence Livermore National Laboratory
geothermalenergymodelingterbiumbiosorptione. colibacteriabacterialsurfacelanthanide bindingtaglbtreerare earthbrinefluidgeofluidgeochemicalgeochemistrybioadsorptionbioengineering

REE Adsorption Performance with Immobilized Caulobacter Biofilms

Apr 01, 2018
162.27 kB
Publicly accessible
This submission includes data collected from experiments on the performance of rare earth adsorption by immobilized bacteria that accompany the FY18 Q2 and Q3 quarter reports. Relevant information from these reports is included in a resource below. The spreadsheet below includes d...
Authors
Jiao, Y. and Park, D. Lawrence Livermore National Laboratory
geothermalenergyreerare earthelementadsorptionbiofilmcaulobacterbacteriabacterialcapacityweightbiomassthermostabilityterbiumtbbiosorptiongeofluidbrinefluidbioadsorptionbiochipsbiofilmsmutag

Recovery of Rare Earth Elements from Geothermal Fluids through Bacterial Cell Surface Adsorption

Jan 01, 2018
7.18 MB
Publicly accessible
We summarized the FY17 and part of FY18 results of the analysis of the effect of several parameters (e.g., total dissolved solids, specific competing metals, pH, and temperature) on REE recovery from geothermal brine in a manuscript that was submitted to Environmental Science & Te...
Authors
Jiao, Y. et al Lawrence Livermore National Laboratory
geothermalenergyreebrinefluidrare earthelementsbacteriacellsurfaceadsorptionbioengineeringmicrobemicrobialbiosorptionbioadsorptionlanthanide bindingtaglbtgeofluide. coligeochemicalgeochemistryfactors

S-Layer Nanosheet Binding of Zn and Gd

Apr 15, 2016
20.72 kB
Publicly accessible
This data characterizes binding of Zn2+ and Gd3+ to engineered nanosheets at 40C and in a brine solution. The engineered nanosheets are composed of surface-layer (S-layer) proteins which form 2 D crystalline sheets and display Zn2+ or Gd3+-binding domains on these sheets. Their ab...
Authors
Ajo-Franklin, C. et al Lawrence Berkeley National Laboratory
geothermalenergymineral recoverysynthetic biologys-layermetal-binding domainnanosheetbrine studybindingchemistrygadoliniumzincgd3zn2ion
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