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Picture for Non-metallic Applications in Oil & Gas Industry
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Non-metallic Applications in Oil & Gas Industry

Product Number: MPWT19-14383
Author: Mohamed Al Ghosain, Ali Azman Faheem, Ullah Mohamed, Zohair Zaki
Publication Date: 2019
$0.00

Corrosion, either internal or external, along with other types of defects on pipelines eventually lead to leaks without proper treatment. This gives rise to several issues, including environmental and safety hazards, and in case of pipe leaks in a plant, a loss of the efficiency of the process or, ultimately, failure of the process. Replacing the corroded pipelines (piping) can be difficult, costly and time consuming especially for plant. A required shutdown causes major economic loss. Thus, instead of a replacement of the defected pipelines, the installation of online repair is a better option.
Repairs of pipelines include metallic and non-metallic repairs. Metallic repairs generally require welding or hot works which is not suitable for online repair of pipes containing hydrocarbons. In such cases the use of non-metallic composite repairs is the optimum solution. A non-metallic composite repair system is a system used to reinforce structures using a fiber equipped with a thermoset epoxy system. The epoxy system consists of a hardener and a resin which, after mixing, become solid through a polymerization reaction after a short duration of time, a process that is called curing. Depending on the temperature, the duration of time changes in an inverse relation. The higher the temperature, the smaller the duration of time needed for curing. This system can be used to reinforce pipelines with both external and internal corrosion and it can be used on Straight Pipes, Tees, Elbows, Flanges and weld joints. The repair system can also be installed online without the need for a shutdown in a short amount of time and a small requirement of labor intensity, making it cost effective. It is also environmentally friendly. In this paper we are going to present cases that were resolved by our company that demonstrate how successful these non-metallic composite repairs are and how diverse their applications can be

Picture for An Amperometric Biosensor for Monitoring Microbiologically Influenced Corrosion in Pipeline
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51315-5690-An Amperometric Biosensor for Monitoring Microbiologically Influenced Corrosion in Pipeline

Product Number: 51315-5690-SG
ISBN: 5690 2015 CP
Author: Xin Pang
Publication Date: 2015
$0.00
Picture for Methodology for Accelerated Microbiologically Influenced Corrosion in Under Deposits from Crude Oil
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51314-4254-Methodology for Accelerated Microbiologically Influenced Corrosion in Under Deposits from Crude Oil

Product Number: 51314-4254-SG
ISBN: 4254 2014 CP
Author: Winston Mosher
Publication Date: 2014
$0.00
Picture for 98276 SELECTION OF CORROSION INHIBITORS
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98276 SELECTION OF CORROSION INHIBITORS TO CONTROL MICROBIOLOGICALLY INFLUENCED CORROSION

Product Number: 51300-98276-SG
ISBN: 98276 1998 CP
Author: Rupi Prasad
$20.00
Picture for 07517 Monitoring Microbiologically Influenced Corrosion: A Review of Techniques
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07517 Monitoring Microbiologically Influenced Corrosion: A Review of Techniques

Product Number: 51300-07517-SG
ISBN: 07517 2007 CP
Author: Reeta D. Sooknah, Sankara Papavinasam, and R. Winston Revie
Publication Date: 2007
$20.00
Picture for Microbiologically Influenced Corrosion—Riviera Park Case Study
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51313-02525-Microbiologically Influenced Corrosion—Riviera Park Case Study

Product Number: 51313-02525-SG
ISBN: 02525 2013 CP
Author: William Brooks
Publication Date: 2013
$20.00