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Shell Turbo Trays (STT) can enable such natural gas producers to achieve up to 50% additional gas production. STT achieve this performance by revolutionising gas–liquid contacting in amine treating (using an acid gas removal unit, or AGRU) and triethylene glycol (TEG) dehydration.\u003C/p\u003E\r\n","links":[{"name":"Talk to an expert","value":"#form","icon":"/content/dam/shell/icons/global/people/people-outlined.svg"}],"image":{"src":"https://www.shell.com/business-customers/catalysts-technologies/licensed-technologies/gas-processing/shell-trays/_jcr_content/root/main/section_2024691315/item_copy_copy.shellimg.png/1734701797935/pernis-refinery-rotterdam-netherlands.png","alt":"Pernis Refinery, Rotterdam, Netherlands","width":3834,"height":1677}},"id":"/content/shell/corporate/global/en_gb/business-customers/catalysts-technologies/licensed-technologies/gas-processing/shell-trays/jcr_content/root/main/section_2024691315/item_copy_copy"},{"organism":"PromoSimple.Text","color":"inherited","id":"/content/shell/corporate/global/en_gb/business-customers/catalysts-technologies/licensed-technologies/gas-processing/shell-trays/jcr_content/root/main/section_2024691315/section_header","model":{"text":"\u003Ch2\u003E\u003Cb\u003ECompared to conventional structured packing and trays, Shell Turbo Technology innovations can potentially triple gas-processing capacity and reduce absorber costs in greenfield applications by up to 50%.\u003C/b\u003E\u003C/h2\u003E\r\n"}},{"organism":"PromoSimple.Text","color":"inherited","id":"/content/shell/corporate/global/en_gb/business-customers/catalysts-technologies/licensed-technologies/gas-processing/shell-trays/jcr_content/root/main/section_2024691315/text","model":{"text":"\u003Cp\u003EIn 2015, Shell completed the testing and development phases of a new gas and liquid absorber contacting technology that could handle 50% higher capacity than the latest structured packing on the market today. Owing to their exceptional mass transfer rate and enhanced gas–liquid handling capacity, STT can process up to 300% more contaminant in the feed or up to 200% more gas in the existing column compared to conventional trays and structured packing, thus enabling assets constrained by the absorber tower to maximise solvent loading and increase processing performance without the need for additional trains or extensive modifications.\u003C/p\u003E\n\u003Cp\u003ESince completing development, Shell has installed the technology at its own assets as well as select third-party sites, replacing both high-performance tray and structured packing technology. The technology is fully developed and is being assessed for deployment at several other facilities globally.\u003C/p\u003E\n\u003Cp\u003ETo achieve this high level of capacity, Shell took a completely new approach to gas–liquid contacting, a departure from the traditional gas “up flow” contacting with liquid “down flow” under gravity used in structured packing and conventional tray designs. With this new technology, the gas and liquid are now contacted in specifically designed contacting zones where the gas velocity is used to atomise the liquid and increases the gas–liquid contacting interface. This helps to avoid common issues – such as foaming, entrainment and flooding – that limit more conventional absorber tray and structured packing contacting technology to lower gas velocities.\u003C/p\u003E\n\u003Cp\u003EThe technology is best suited to significantly increasing the throughput of existing natural-gas contacting processes, such as TEG dehydration or AGRU, that are limited by the capacity of the structured packing and tray technology currently installed in the absorber unit. The technology can also decrease the absorber size on greenfield applications, particularly on floating offshore units – where weight and space are critical.\u003C/p\u003E\n\u003Cp\u003ETo find out more about how this technology could benefit your natural-gas treatment facility or project by replacing your current structured packing or tray system, either\u003Cb\u003E speak to one of our experts\u003C/b\u003E or \u003Cb\u003Edownload\u003C/b\u003E the \u003Cb\u003Efact sheet\u003C/b\u003E or \u003Cb\u003Ewhite paper\u003C/b\u003E available below.\u003C/p\u003E\n"}},{"organism":"PromoSimple.Text","color":"brand1-solid","colspan":3,"colstart":3,"id":"/content/shell/corporate/global/en_gb/business-customers/catalysts-technologies/licensed-technologies/gas-processing/shell-trays/jcr_content/root/main/section_2024691315/text_copy","model":{"title":"Are your absorber structured packing or trays limiting production capacity? Thinking about adding additional trains to solve this issue?","text":"\u003Cp\u003EShell Turbo Technologies provide a drop-in solution for natural-gas processing facilities looking to increase processing capacity without adding trains or replacing existing absorber columns. When replacing current structured packing and tray technologies, Shell Turbo Technologies have demonstrated the ability to increase natural-gas production by 20% in amine duty and by more than&nbsp;50% in TEG dehydration. 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