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1 ConocoPhillips S Zorb Gasoline Sulfur Removal Technology ...

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Solids Transfer SectionThe solids transfer system, which moves sorbent to and from the reactor andregenerator systems, has been simplified. The use of one lockhopper system, asopposed to two-lockhopper operation, has resulted in lower capital requirementsand operating costs (lower nitrogen and hydrogen requirements) withoutcompromising operability, reliability, or safety. HAZOP reviews have beenconducted to assure the safe operation of the “One-Lockhopper System”. Theresults of the HAZOPs did not show any safety issues associated with thedesign.ReliabilityThe S <strong>Zorb</strong> process has the ability to shutdown and isolate the sorbentregeneration system long enough to perform typical maintenance tasks. Thisallows the reactor system to stay online at full charge making low sulfur product.One objective of the Process Optimization Study was to ensure that theoptimized design matched or exceeded current reliabilities. The ProcessOptimization team examined each section of the S <strong>Zorb</strong> process and maderecommendations to further improve unit reliability. In parallel with the ProcessOptimization Study, KBC Advanced Technologies Inc. was requested to performan independent reliability assessment for the optimized design. In particular,KBC was asked to compare S <strong>Zorb</strong> SRT reliability with hydrodesulfurizationreliability. KBC used their own methodology, equipment reliability database, andset all the reliability assumptions. They concluded that there was no significantdifference in reliability between S <strong>Zorb</strong> SRT and hydrodesulfurization.Conclusions and Future OutlookThe Ferndale unit’s safe and successful start-up and reliable performancedemonstrate the advantages of S <strong>Zorb</strong> SRT for desulfurization of gasolinestreams. The demonstrated commercial success at Ferndale is complementedby further reductions in capital and operating costs and improvements in thetechnology’s performance and reliability. A 38,500 bpd S <strong>Zorb</strong> unit featuringthese technical improvements is in the advanced stages of design/constructionfor the <strong>ConocoPhillips</strong> refinery at Lake Charles, Louisiana. The combined feedsulfur level is approximately 1,000 ppm and the unit is being designed to producea 10 ppm product. Startup of the S <strong>Zorb</strong> unit at Lake Charles is scheduled for late2005. In addition, a 4 th <strong>ConocoPhillips</strong> S <strong>Zorb</strong> unit is in the advanced stages ofproject definition and approval. The anticipated design throughput is around30,000 BPD and is targeted to start-up in late 2006.The future promises to bring continued downward pressure on the sulfur contentof gasoline even beyond the near term targets that have been established inmany countries around the world. S <strong>Zorb</strong> technology is strongly positioned toproduce fuels that comply with much more stringent sulfur regulations with little,12

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