Javascript must be enabled to continue!
IoT for Cathodic Protection System as Iron Concrete’s Corrosion Protection
View through CrossRef
Iron concrete or reinforcement steel is steel used for reinforcement of concrete construction or known as reinforced concrete. Iron concrete can undergo a corrosion process caused by chemical or electrochemical reactions between reinforcement steel and its environment. One way to protect concrete from corrosion is cathodic protection. There are two types of cathodic protection, namely sacrificial anodes and impressed current cathodic protection (ICCP). ICCP is more commonly used for protection in reinforced concrete structures. In ICCP, negative current flows to the iron concrete and positive current flows to the anode. This is to protect the concrete from corrosion. In addition to the corrosion protection system, there is also a half-cell potential test to measure the chance of corrosion of the concrete. The project used IoT to monitor and control the ICCP. Measurements are made by reading the potential difference between the reference electrode and the iron concrete. The probability of corrosion can be determined by reading the corrosion probability table with ASTM C879-09 standard. The ICCP system in general still uses the manual method so that there are time efficiency problems in controlling the voltage and current for ICCP purposes, cannot schedule the provision of electric current and monitor it at any time, especially if the electric current flowing in the concrete is higher than the standard it should be. Based on the results of the tests carried out, the IoT system can regulate the power supply by setting the voltage and current and can schedule the power supply to provide electric current to the iron concrete and can provide notifications if the electric current flowing in the concrete is more than or less than ICCP standard.
Title: IoT for Cathodic Protection System as Iron Concrete’s Corrosion Protection
Description:
Iron concrete or reinforcement steel is steel used for reinforcement of concrete construction or known as reinforced concrete.
Iron concrete can undergo a corrosion process caused by chemical or electrochemical reactions between reinforcement steel and its environment.
One way to protect concrete from corrosion is cathodic protection.
There are two types of cathodic protection, namely sacrificial anodes and impressed current cathodic protection (ICCP).
ICCP is more commonly used for protection in reinforced concrete structures.
In ICCP, negative current flows to the iron concrete and positive current flows to the anode.
This is to protect the concrete from corrosion.
In addition to the corrosion protection system, there is also a half-cell potential test to measure the chance of corrosion of the concrete.
The project used IoT to monitor and control the ICCP.
Measurements are made by reading the potential difference between the reference electrode and the iron concrete.
The probability of corrosion can be determined by reading the corrosion probability table with ASTM C879-09 standard.
The ICCP system in general still uses the manual method so that there are time efficiency problems in controlling the voltage and current for ICCP purposes, cannot schedule the provision of electric current and monitor it at any time, especially if the electric current flowing in the concrete is higher than the standard it should be.
Based on the results of the tests carried out, the IoT system can regulate the power supply by setting the voltage and current and can schedule the power supply to provide electric current to the iron concrete and can provide notifications if the electric current flowing in the concrete is more than or less than ICCP standard.
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...
Access mechanisms for massive Internet of Things in 5G and beyond networks
Access mechanisms for massive Internet of Things in 5G and beyond networks
(English) The Massive Internet of Things (MIoT) characterizes a communication scenario where a massive number of battery-operated devices perform infrequent, primarily uplink-orien...
Cathodic Protection Monitoring-Bullwinkle
Cathodic Protection Monitoring-Bullwinkle
ABSTRACT
The Bullwinkle Platform represents a major advance in the drilling and production of oil and gas, but also in cathodic protection design for deep ocean e...
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...
Cathodic Protection for Parking Structures
Cathodic Protection for Parking Structures
Cathodic protection systems for chloride-contaminated reinforced concrete structures have been installed and evaluated since the early 1970s. Until recently, most of these systems ...
Cathodic Protection Of Stainless Steels Against Crevice Corrosion
Cathodic Protection Of Stainless Steels Against Crevice Corrosion
ABSTRACT
Crevice corrosion on stainless steel instrument components has been a problem affecting designers and operators of marine instrumentation packages for ma...
SCADA Based Pipelines Cathodic Protection Systems Remote Monitoring Project
SCADA Based Pipelines Cathodic Protection Systems Remote Monitoring Project
Abstract
This paper presents a remote monitoring system for pipeline cathodic protection using Supervisory Control and Data Acquisition (SCADA) technology, aimed at ...
Cathodic Protection Criteria for the North Sea
Cathodic Protection Criteria for the North Sea
ABSTRACT
Experiences from "the first generation" of offshore structures in the North Sea have shown that cathodic protection criteria that are sufficient in other...

