Javascript must be enabled to continue!
Structure and Related Effectiveness of Naphthenic Acid Corrosion Inhibitors
View through CrossRef
Abstract
Petroleum refineries often encounter naphthenic acid corrosion when processing opportunity crudes with a high total acid number (TAN). The formation of oil soluble iron carboxylates in refinery units operating at high temperature regimes (200 °C to 400 °C) with corresponding high fluid velocities, can lead to high rates of corrosion where susceptible metallurgies are used in the affected zones.
To mitigate naphthenic acid corrosion, the application of chemical additives (i.e., corrosion inhibitors) can be implemented. The type of inhibitor traditionally used to mitigate this type of corrosion are largely composed of phosphorus-based compounds. However, P-based inhibitors have come under scrutiny due to their potential impact on refinery process units. Consequently, a variety of new inhibitors, where the amount of phosphorus has been reduced or eliminated have been developed to mitigate naphthenic acid corrosion.
In the present study, a variety of corrosion inhibitors, phosphate esters (mono, di, or triesters), thiophosphate esters, and organo-polysulfides were used to inhibit naphthenic acid corrosion in hydrotreated base oils with a TAN of 10 mg KOH/g or higher. The results presented herein not only describe the mechanism by which such molecules inhibit naphthenic acid corrosion, but also provides insight into the relationship between the chemical functionalities of these inhibitors and their ability to successfully mitigate naphthenic acid corrosion. These findings serve as a blueprint for determining the effectiveness of a naphthenic acid corrosion inhibitor with respect to the structural features of the inhibitor.
Title: Structure and Related Effectiveness of Naphthenic Acid Corrosion Inhibitors
Description:
Abstract
Petroleum refineries often encounter naphthenic acid corrosion when processing opportunity crudes with a high total acid number (TAN).
The formation of oil soluble iron carboxylates in refinery units operating at high temperature regimes (200 °C to 400 °C) with corresponding high fluid velocities, can lead to high rates of corrosion where susceptible metallurgies are used in the affected zones.
To mitigate naphthenic acid corrosion, the application of chemical additives (i.
e.
, corrosion inhibitors) can be implemented.
The type of inhibitor traditionally used to mitigate this type of corrosion are largely composed of phosphorus-based compounds.
However, P-based inhibitors have come under scrutiny due to their potential impact on refinery process units.
Consequently, a variety of new inhibitors, where the amount of phosphorus has been reduced or eliminated have been developed to mitigate naphthenic acid corrosion.
In the present study, a variety of corrosion inhibitors, phosphate esters (mono, di, or triesters), thiophosphate esters, and organo-polysulfides were used to inhibit naphthenic acid corrosion in hydrotreated base oils with a TAN of 10 mg KOH/g or higher.
The results presented herein not only describe the mechanism by which such molecules inhibit naphthenic acid corrosion, but also provides insight into the relationship between the chemical functionalities of these inhibitors and their ability to successfully mitigate naphthenic acid corrosion.
These findings serve as a blueprint for determining the effectiveness of a naphthenic acid corrosion inhibitor with respect to the structural features of the inhibitor.
Related Results
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Investigating the Effect of High Pressures and Temperatures on Corrosion Inhibition for Water-Based Muds
Corrosion is defined as gradual degradation of metal caused by a chemical or electrochemical reaction with its environment. In oil and gas sector, components can corrode at any sta...
Safe Processing of Naphthenic Acid Opportunity Crudes Using Chemical Inhibition and Online Monitoring
Safe Processing of Naphthenic Acid Opportunity Crudes Using Chemical Inhibition and Online Monitoring
Abstract
Continuing economic pressures on the refining industry are forcing more refiners to evaluate the possibilities of processing lower priced, opportunity crude...
Evaluating Corrosion Inhibitors For Sour Gas Subsea Pipelines
Evaluating Corrosion Inhibitors For Sour Gas Subsea Pipelines
Abstract
Using subsea carbon steel pipelines to transport wet sour gas possesses huge challenges to the operators to maintain the high level of the Assets and Ope...
Fragrant Flower Extracts as Corrosion Inhibitors in the Oil and Gas Industry
Fragrant Flower Extracts as Corrosion Inhibitors in the Oil and Gas Industry
Abstract
Corrosion inhibitors used in the petroleum industry are a necessity to include in any acid job. When corrosion occurs to downhole tubulars and equipment, hu...
Corrosion Of Copper-Base Alloys In A Geothermal Brine
Corrosion Of Copper-Base Alloys In A Geothermal Brine
Abstract
The geothermal environment and the experimental procedures and schedules for corrosion tests of copper-base procedures and schedules for corrosion tests ...
Naphthenic Acid Corrosion
Naphthenic Acid Corrosion
Naphthenic acid corrosion is not a new problem for refiners. Over 45 years ago, it was identified as potentially troublesome in U.S. refineries that processed unusually acidic crud...
About concrete and reinforced concrete corrosion
About concrete and reinforced concrete corrosion
Abstract
This review article provides general information about reinforced concrete corrosion and types of corrosion. The most dangerous consequence of corrosion pro...
Research on Corrosion Mechanism and Application in the Yingzhong Block of Qaidam Basin
Research on Corrosion Mechanism and Application in the Yingzhong Block of Qaidam Basin
Abstract
The Yingzhong block in the Qaidam Basin belongs to a high-temperature, high-pressure, high-sulfur, high-mineralization region with H2S content up to 20,000 ...

