2023
DOI: 10.1140/epjp/s13360-023-04159-y
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Testing of the siderophore deferoxamine amended in hydrogels for the cleaning of iron corrosion

Abstract: Bioderived alternatives to commonly used complexing agents for the cleaning of iron artworks are sought for their natural origin and better biodegradability. Indeed, complexing agents currently used for the removal of undesired corrosion products from iron artworks can be difficult to control and their environmental impact is often overlooked. This paper studies the use of siderophores, focusing on the ability of one of them, deferoxamine, to be employed as an active agent loaded in polysaccharides hydrogels, … Show more

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Cited by 6 publications
(10 citation statements)
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“…5a). Indeed, the formulation changed from whitish to bright red coloured indicating the possible formation of iron-DFO complexes, as reported in the literature [51] (Fig. 5b).…”
Section: Evaluation Of the Cleaning Actionsupporting
confidence: 79%
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“…5a). Indeed, the formulation changed from whitish to bright red coloured indicating the possible formation of iron-DFO complexes, as reported in the literature [51] (Fig. 5b).…”
Section: Evaluation Of the Cleaning Actionsupporting
confidence: 79%
“…The polymer poly-3-hydroxybutyrate (PHB) was then added at 7% w/v concentration. The final concentration of the DFO solution was 4 × 10 -2 M, which is a value in the range of other exploitations of this ligand in art conservation [24,51,52]. The mixture was stirred in a glass petri dish at about 110 °C until the gel was formed and let cool down to room temperature before application (Fig.…”
Section: Phb-el-dfo Organogel Formulationmentioning
confidence: 99%
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“…It is bioderived as it is extracted from red seaweed membranes [16]. It is appreciated by conservators thanks to good mechanical and retention properties [11,17]. Moreover, it is easily accessible, affordable, and peelable, implying an ease of removal.…”
Section: Introductionmentioning
confidence: 99%
“…In a second step, this article examines gel-chelator interactions, focusing on agar and chitosan with the addition of a selected chelating agent, a microbial siderophore called deferoxamine (DFO). This active agent was selected as its metal uptake properties have been praised in the cultural heritage field on several substrates (e.g., paper, wood, metal, textiles) [17,43,44], and allows for the achievement of bio-based formulations. In addition, this chelator shows high biodegradability in the environment, which means it has a reduced ecological impact compared to EDTA, a chelator commonly used in the heritage conservation field [45].…”
Section: Introductionmentioning
confidence: 99%