Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (6/6 displayed)

  • 2024Corrosion Inhibition of Carbon Steel Immersed in Standardized Reconstituted Geothermal Water and Individually Treated with Four New Biosourced Oxazoline Moleculescitations
  • 2023Corrosion and inhibition of carbon steel XC38 in a standardized reconstituted geothermal water (SRGW) at 100°C and 120 bars of pressure in the absence or presence of biosourced inhibitorscitations
  • 2021Indian mustard bioproducts dry-purification with natural adsorbents - A biorefinery for a green circular economy13citations
  • 2019Graft copolymerization of hydroxyethyl cellulose with solketal acrylate: Preparation and characterization for moisture absorption application12citations
  • 2017Synthesis of graft -copolymers from palm cellulose and solketal acrylate and their characterization24citations
  • 2013Synthesis and characterization of new polyesters based on renewable resources19citations

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Helali, Chahinez
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Valentin, Romain
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Ignatiadis, Ioannis
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Betelu, Stephanie
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Co-Authors (by relevance)

  • Helali, Chahinez
  • Valentin, Romain
  • Ignatiadis, Ioannis
  • Betelu, Stephanie
  • Betelu, Stéphanie
  • Rapp, Graeme
  • Garcia-Montoto, Victor
  • Mozet, Kevin
  • Bouyssière, Brice
  • Montoya, Alejandro
  • Trethowan, Richard
  • Pratt, Peter
  • Portha, Jean-François
  • Coniglio, Lucie
  • Benaboura, Ahmed
  • Vedrenne, Emeline
  • Beyaz, Khaled
  • Haddadine, Nabila
  • Vaca-Garcia, Carlos
  • Rouilly, Antoine
  • Charton, Michael
  • Satgé-De Caro, Pascale
  • Pennarun, Pierre-Yves
  • Waig Fang, Sandrine
OrganizationsLocationPeople

conferencepaper

Corrosion and inhibition of carbon steel XC38 in a standardized reconstituted geothermal water (SRGW) at 100°C and 120 bars of pressure in the absence or presence of biosourced inhibitors

  • Helali, Chahinez
  • Betelu, Stéphanie
  • Valentin, Romain
  • Thiebaud-Roux, Sophie
  • Ignatiadis, Ioannis
Abstract

International audience ; In the Paris Basin (France), corrosion and iron sulfide scale are encountered as a problematic of the geothermal energy, sanctioning it by economical prejudice and industrial and technological challenges. The vector of corrosion is the presence in the water of corrosive agents such as Cl- , HCO3 - , SO4 2- , HS- and gases H2S and CO2. In these waters, sulfide concentration is between 1 to several decades of mg/L depending on the place, but also on the microbiological activities and water flow rate. In a previous study, a focus was made on experiments in the absence and in the presence of Biosourced Inhibitors (BI) at 70°C and 1 bars of pressure. The analytical protocol proposed in this present study on liquid phase allows also highlighting that the corrosion and anticorrosion behavior differ according to hydrothermal conditions including hydrostatic pressure. In this work, we are going further by integrating the role of hydrothermal conditions, including hydrostatic pressure, in the kinetic rate and mechanisms by using High Pressure of 120 bars and High Temperature of 100°C in a Hydro-Pressurized Hydro-Thermo Reactor (HPHTR). The stainless steel HPHTR, provided by Autoclave Parr Instruments, is controlled by a proportional-integral-derivative controller (or PID) controller), which manage the agitator, the heating temperature and the pressure inside the HPHTR. The useful reactor volume is of 550 mL (total volume 1 L) is fulfilled with standardized reconstituted geothermal water (SRGW).

Topics
  • impedance spectroscopy
  • Carbon
  • stainless steel
  • corrosion
  • experiment
  • iron
  • liquid phase