On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization

Hydrophobic soils have natural or artificial origin. In this context, some techniques exist to turn into hydrophobic sand that was originally hydrophilic, as most soils in fact are. Its classical application is impermeabilizing structures where water percolation is not desired. In this paper, a new...

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Main Authors: Magalhães Toffoli Clara, Milatz Marius, Grabe Jürgen
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/19/e3sconf_unsat2023_18003.pdf
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author Magalhães Toffoli Clara
Milatz Marius
Grabe Jürgen
author_facet Magalhães Toffoli Clara
Milatz Marius
Grabe Jürgen
author_sort Magalhães Toffoli Clara
collection DOAJ
description Hydrophobic soils have natural or artificial origin. In this context, some techniques exist to turn into hydrophobic sand that was originally hydrophilic, as most soils in fact are. Its classical application is impermeabilizing structures where water percolation is not desired. In this paper, a new technique to achieve hydrophobicity is described. It consists of coating particles via cold plasma. The process is known to the industry, but its application in geotechnics is not yet described in literature. The monomers used were octafluorcyclobutane (C4F8) and 1H,1H,2H,2H-perfluoroctylacrilate (PFA-C6). For each monomer, the material was in the coating chamber during two different time spans and a sample was pretreated with oxygen. Different mechanical, thermal and hydraulic conditions were imposed to the samples in order to evaluate the resistance of the coating and its properties. The hydrophobicity was evaluated by means of Water Drop Penetration Time. Results indicate that longer time spans in the cold plasma chamber lead to a more hydrophobic material and that oxygen pretreatment on the sample is irrelevant. It was also observed that mechanical, hydraulic and thermal procedures influence the coating. These observations lead to optimization of the production process and to the understanding of how the material can be applied in the construction industry and what mechanical/hydraulic loads it can be subjected to.
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spelling doaj.art-5e0007906bb14d33854272322d99caf92023-11-07T10:19:23ZengEDP SciencesE3S Web of Conferences2267-12422023-01-013821800310.1051/e3sconf/202338218003e3sconf_unsat2023_18003On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerizationMagalhães Toffoli Clara0Milatz Marius1Grabe Jürgen2Institute of Geotechnical Engineering and Construction Management, Hamburg University of TechnologyInstitute of Geotechnical Engineering and Construction Management, Hamburg University of TechnologyInstitute of Geotechnical Engineering and Construction Management, Hamburg University of TechnologyHydrophobic soils have natural or artificial origin. In this context, some techniques exist to turn into hydrophobic sand that was originally hydrophilic, as most soils in fact are. Its classical application is impermeabilizing structures where water percolation is not desired. In this paper, a new technique to achieve hydrophobicity is described. It consists of coating particles via cold plasma. The process is known to the industry, but its application in geotechnics is not yet described in literature. The monomers used were octafluorcyclobutane (C4F8) and 1H,1H,2H,2H-perfluoroctylacrilate (PFA-C6). For each monomer, the material was in the coating chamber during two different time spans and a sample was pretreated with oxygen. Different mechanical, thermal and hydraulic conditions were imposed to the samples in order to evaluate the resistance of the coating and its properties. The hydrophobicity was evaluated by means of Water Drop Penetration Time. Results indicate that longer time spans in the cold plasma chamber lead to a more hydrophobic material and that oxygen pretreatment on the sample is irrelevant. It was also observed that mechanical, hydraulic and thermal procedures influence the coating. These observations lead to optimization of the production process and to the understanding of how the material can be applied in the construction industry and what mechanical/hydraulic loads it can be subjected to.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/19/e3sconf_unsat2023_18003.pdf
spellingShingle Magalhães Toffoli Clara
Milatz Marius
Grabe Jürgen
On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
E3S Web of Conferences
title On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
title_full On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
title_fullStr On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
title_full_unstemmed On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
title_short On the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
title_sort on the resistance of hydrophobic soil polymer coatings created by cold plasma polymerization
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/19/e3sconf_unsat2023_18003.pdf
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AT grabejurgen ontheresistanceofhydrophobicsoilpolymercoatingscreatedbycoldplasmapolymerization