Literature DB >> 28131039

Bioleaching of electronic waste using bacteria isolated from the marine sponge Hymeniacidon heliophila (Porifera).

Enrique E Rozas1, Maria A Mendes2, Claudio A O Nascimento2, Denise C R Espinosa3, Renato Oliveira4, Guilherme Oliveira4, Marcio R Custodio5.   

Abstract

The bacteria isolated from Hymeniacidon heliophila sponge cells showed bioleaching activity. The most active strain, Hyhel-1, identified as Bacillus sp., was selected for bioleaching tests under two different temperatures, 30°C and 40°C, showing rod-shaped cells and filamentous growth, respectively. At 30°C, the bacteria secreted substances which linked to the leached copper, and at 40°C metallic nanoparticles were produced inside the cells. In addition, infrared analysis detected COOH groups and linear peptides in the tested bacteria at both temperatures. The Hyhel-1 strain in presence of electronic waste (e-waste) induced the formation of crust, which could be observed due to bacteria growing on the e-waste fragment. SEM-EDS measurements showed that the bacterial net surface was composed mostly of iron (16.1% w/w), while a higher concentration of copper was observed in the supernatant (1.7% w/w) and in the precipitated (49.8% w/w). The substances linked to copper in the supernatant were sequenced by MALDI-TOF-ms/ms and identified as macrocyclic surfactin-like peptides, similar to the basic sequence of Iturin, a lipopeptide from Bacillus subtilis. Finally, the results showed that Hyhel-1 is a bioleaching bacteria and cooper nanoparticles producer and that this bacteria could be used as a copper recovery tool from electronic waste.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Bacillus; Bioleaching; E-waste; Nanoparticles; Sponge cell

Mesh:

Substances:

Year:  2017        PMID: 28131039     DOI: 10.1016/j.jhazmat.2017.01.037

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  8 in total

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2.  Enhancement of gold and silver recovery from discarded computer printed circuit boards by Pseudomonas balearica SAE1 using response surface methodology (RSM).

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4.  Bioleaching of Gold and Silver from Waste Printed Circuit Boards by Pseudomonas balearica SAE1 Isolated from an e-Waste Recycling Facility.

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Authors:  Charles S Cockell; Rosa Santomartino; Kai Finster; Annemiek C Waajen; Lorna J Eades; Ralf Moeller; Petra Rettberg; Felix M Fuchs; Rob Van Houdt; Natalie Leys; Ilse Coninx; Jason Hatton; Luca Parmitano; Jutta Krause; Andrea Koehler; Nicol Caplin; Lobke Zuijderduijn; Alessandro Mariani; Stefano S Pellari; Fabrizio Carubia; Giacomo Luciani; Michele Balsamo; Valfredo Zolesi; Natasha Nicholson; Claire-Marie Loudon; Jeannine Doswald-Winkler; Magdalena Herová; Bernd Rattenbacher; Jennifer Wadsworth; R Craig Everroad; René Demets
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  8 in total

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