Emerson Process Management has provided automation and engineering services for a Qatargas project that will reduce greenhouse gas emissions by 1,6 million tonnes annually.
Now fully operational, the Jetty Boil-Off Gas (JBOG) recovery facility is the biggest of its kind and one of the largest environmental investments in the world. It is expected to recover more than 600 000 tonnes of liquefied natural gas per year – equivalent to the energy supply for more than 300 000 homes.
The facility is designed to recover the gas flared during liquefied natural gas (LNG) loading at the six LNG berths in Ras Laffan Port. The gas is compressed and sent to the Qatargas production facilities for use as fuel or as LNG.
Reinstatement opportunity for ECSA registration
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In 2023 the Engineering Council of South Africa (ECSA) announced a special opportunity for engineers in South Africa to reinstate their registration status if it had been cancelled. This exclusive offer is available until the end of August 2024.
Read more...High-quality sensing and automation equipment
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The Turck Banner Demo Van is showcasing the company’s latest products and solutions.Turck Banner sells directly to end users and OEMs in a broad range of industries and applications.
Read more...From ground to compound: the journey of crude oil Wearcheck
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You’re in for a ‘crude awakening’ when you download WearCheck’s latest Technical Bulletin. You will be treated to an in-depth explanation of the processes of producing oil, fuel and other petrochemical wonders that power our modern lifestyle.
Read more...SA Instrumentation & Control Technews Publishing (SA Instrumentation & Control)
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Published by Technews Publishing, SA Instrumentation & Control is
South Africa’s premier ABC-audited information source for instrumentation, systems and automation solutions in southern Africa.
Read more...High-flow solenoid valve Emerson Automation Solutions
Valves, Actuators & Pump Control
Emerson has introduced the new ASCO Series 327C solenoid valve, which features a direct-acting, high-flow design that provides superior flow-to-power ratio. It permits high flows at minimum power levels, making it ideal for use in power plants, refineries, and chemical processing facilities.