Sonatrach/Total PP plant in Algeria utilises Honeywell UOP’s solutions

Sonatrach/Total PP plant in Algeria utilises Honeywell UOP’s solutions

US firm Honeywell says that Sonatrach Total Entreprise Polymères (STEP) has selected Honeywell UOP’s C3 Oleflex technology to produce 565,000-tonne/year of polymer-grade propylene for a proposed plant in Arzew, Algeria. Sonatrach Total Entreprise Polymères (STEP) is a joint venture between Algeria’s State Oil Company Sonatrach S.p.A. (51%) and France’s Total S.A. (49%). The STEP joint venture was created in 2018 to carry out the joint petrochemical project in Arzew.

Read: Sonatrach/Total utilising Spheripol tech for Algerian plant

In addition to technology licensing, Honeywell is providing the basic engineering design, services, equipment, catalysts and adsorbents for the plant. When completed, it will represent UOP’s second C3 Oleflex unit in North Africa, following an earlier award in Egypt.

In 2018, Honeywell announced that Sonatrach will use technologies from Honeywell UOP to produce cleaner-burning transportation fuels at its Skikda Refinery on the eastern Mediterranean coast of Algeria. UOP also announced that Sonatrach will use UOP technologies, including C4 Oleflex, at its Arzew facility to produce 200,000 tonnes/year of methyl tert-butyl ether (MTBE), a high-octane gasoline additive that reduces emissions in automobile exhaust.

“The Oleflex technology will enable STEP to convert domestically produced propane into propylene, a primary component in a wide variety of plastic products rapidly growing in demand in the region,” said Bryan Glover, Vice-President of Honeywell UOP’s Petrochemicals & Refining Technologies business. “STEP will further convert the propylene into polypropylene plastic to supply customers in Algeria, along the Mediterranean, and in other markets like Europe.

Honeywell UOP’s C3 Oleflex technology uses catalytic dehydrogenation to convert propane to propylene and is designed to have a lower cash cost of production and higher return on investment compared to competing dehydrogenation technologies. Its low-energy consumption, low-emissions and fully recyclable, platinum-alumina-based catalyst system helps minimize its impact on the environment. The independent reactor and regeneration design of the Oleflex technology helps maximiSe operating flexibility and onstream reliability. Oleflex technology has been selected for 63 out of 84 dehydrogenation projects globally since 2011, including propane (C3), isobutane (iC4) and mixed C3/ iC4 service.

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