THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS

Inhibitor addition is one of the common corrosion control methods. Potassium metavanadate (KVO3) is commonly used as corrosion inhibitor in CO2 absorber unit. Chloride and sulfide are common fluids in industry, and are also corrosive. The objective of this research is to study the effectiveness o...

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Main Author: Farhan Arif, Aditya
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/74903
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:74903
spelling id-itb.:749032023-07-24T12:26:17ZTHE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS Farhan Arif, Aditya Indonesia Final Project Potassium metavanadate, low - carbon steel, corrosion inhibitor INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/74903 Inhibitor addition is one of the common corrosion control methods. Potassium metavanadate (KVO3) is commonly used as corrosion inhibitor in CO2 absorber unit. Chloride and sulfide are common fluids in industry, and are also corrosive. The objective of this research is to study the effectiveness of potassium metavanadate as a lowcarbon steel corrosion inhibitor in the chloride, carbonate, or sulfide - contaminated environments. This objective was achieved by measuring low-carbon steel corrosion rate in different concentrations of contaminants. The corrosion rate was measured by Tafel method. The corrosion inhibition mechanisms were studied using cyclic voltammetry method. Meanwhile the corrosion products were identified by X - ray diffraction spectrometry (XRD). This research results that KVO3 is an effective corrosion inhibitor in chloride environment when the chloride concentration ranges between 20 g/L and 30 g/L. In this range of concentration, KVO3 performs more than 99% efficiency. In sulfide environment KVO3 is an ineffective corrosion inhibitor. While in carbonate environment whose concentration is below 150 g/L, the addition of KVO3 gives no effect to the corrosion reaction. When carbonate concentration is above 150 g/L, it works as an ineffective corrosion inhibitor. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Inhibitor addition is one of the common corrosion control methods. Potassium metavanadate (KVO3) is commonly used as corrosion inhibitor in CO2 absorber unit. Chloride and sulfide are common fluids in industry, and are also corrosive. The objective of this research is to study the effectiveness of potassium metavanadate as a lowcarbon steel corrosion inhibitor in the chloride, carbonate, or sulfide - contaminated environments. This objective was achieved by measuring low-carbon steel corrosion rate in different concentrations of contaminants. The corrosion rate was measured by Tafel method. The corrosion inhibition mechanisms were studied using cyclic voltammetry method. Meanwhile the corrosion products were identified by X - ray diffraction spectrometry (XRD). This research results that KVO3 is an effective corrosion inhibitor in chloride environment when the chloride concentration ranges between 20 g/L and 30 g/L. In this range of concentration, KVO3 performs more than 99% efficiency. In sulfide environment KVO3 is an ineffective corrosion inhibitor. While in carbonate environment whose concentration is below 150 g/L, the addition of KVO3 gives no effect to the corrosion reaction. When carbonate concentration is above 150 g/L, it works as an ineffective corrosion inhibitor.
format Final Project
author Farhan Arif, Aditya
spellingShingle Farhan Arif, Aditya
THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
author_facet Farhan Arif, Aditya
author_sort Farhan Arif, Aditya
title THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
title_short THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
title_full THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
title_fullStr THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
title_full_unstemmed THE EFFECTIVENESS OF POTASSIUM METAVANADATE AS A LOW-CARBON STEEL CORROSION INHIBITOR IN CHLORIDE - CARBONATE - AND SULFIDE - CONTAMINATED ENVIRONMENTS
title_sort effectiveness of potassium metavanadate as a low-carbon steel corrosion inhibitor in chloride - carbonate - and sulfide - contaminated environments
url https://digilib.itb.ac.id/gdl/view/74903
_version_ 1822994058516103168