Publication:

Sunshine and a pinch of tropical soils: A natural, low-cost photo-Fenton variation for safer water, assisted by H2O2 or percabonate

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Delhay, Sophie

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Dyson, Paul Joseph

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Pulgarin, César

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Breider, Florian

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datacite.rights

openaccess

dc.contributor.author

Rodriguez-Chueca, Jorge

dc.contributor.author

Giannakis, Stefanos

dc.contributor.author

Senyuz, Timur

dc.contributor.author

Decker, Jeremie

dc.contributor.author

Oulego, Paula

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Bensimon, Michael

dc.contributor.author

Guillaume, Thomas

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Pulgarin, Cesar

dc.date.accessioned

2023-07-31T02:44:19

dc.date.available

2023-07-31T02:44:19

dc.date.created

2023-07-31

dc.date.issued

2023-06-07

dc.date.modified

2025-01-24T03:05:08.283972Z

dc.description.abstract

Clean water is essential for human survival, but access to safe drinking water remains a challenge in resource -limited regions. Herein, we explored a low-cost but effective solution for water potabilization using natural iron sources from soils along with sunlight to remove coliforms from water. We evaluated 30 soil samples from tropical regions and among them, we found that soils from Colombia and Cameroon with high clay content and low carbon levels were the most effective catalysts. Their combination with H2O2 enhanced the solar disinfection (SODIS) yield and induced a heterogeneous photo-Fenton process with secondary homogeneous contribution and/or photocatalytic action. We also found that storing soils in acidic conditions increased the concentration of soluble iron species, leading to enhanced E. coli removal due to homogeneous Fenton and Fenton-like processes. The addition of citrate as a ligand further improved the performance of the system, by facilitating the regen-eration of dissolved iron, through metal chelation, thanks to the formation of photo-active complexes. Moreover, we explored the possibility of using sodium percarbonate as a substitute for H2O2 and found it to be a successful alternative, even over alkaline lake water samples. We discuss the mechanism behind the improved activity of sodium percarbonate and suggest that ferruginous soils, when combined with any form of H2O2, can induce the photo-Fenton process over a wide pH range and at low mg/L concentrations. Our study provides valuable in-sights into the potential of using natural iron sources to enhance solar disinfection, making clean water more accessible to communities in need.

dc.description.sponsorship

GPAO

dc.description.sponsorship

GR-CEL

dc.identifier.doi

10.1016/j.seppur.2023.124221

dc.identifier.isi

WOS:001021183000001

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/199533

dc.publisher

ELSEVIER

dc.publisher.place

Amsterdam

dc.relation

https://infoscience.epfl.ch/record/303946/files/1-s2.0-S1383586623011292-main.pdf

dc.relation.issn

1383-5866

dc.relation.issn

1873-3794

dc.relation.journal

Separation And Purification Technology

dc.source

WoS

dc.subject

Engineering, Chemical

dc.subject

Engineering

dc.subject

solar disinfection (sodis)

dc.subject

heterogeneous photo-fenton

dc.subject

natural iron

dc.subject

clay

dc.subject

bacteria

dc.subject

lake water

dc.subject

solar disinfection sodis

dc.subject

neutral ph

dc.subject

bacterial inactivation

dc.subject

hydroxyl radicals

dc.subject

rate constants

dc.subject

coli inactivation

dc.subject

escherichia-coli

dc.subject

waste-water

dc.subject

iron-oxides

dc.subject

e. coli

dc.title

Sunshine and a pinch of tropical soils: A natural, low-cost photo-Fenton variation for safer water, assisted by H2O2 or percabonate

dc.type

text::journal::journal article::research article

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Publication

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publisher

dspace.legacy.oai-identifier

oai:infoscience.epfl.ch:303946

epfl.curator.email

reslane.khassouani@epfl.ch

epfl.legacy.itemtype

Journal Articles

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ARTICLE

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SB

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ENAC

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article

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OpenAIREv4

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REVIEWED

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http://purl.org/coar/version/c_970fb48d4fbd8a85

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EPFL

oaire.citation.articlenumber

124221

oaire.citation.volume

321

oaire.licenseCondition

CC BY

oaire.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

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