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CO 2 Capture Study<br />

For <strong>800</strong> <strong>MW</strong> <strong>Power</strong> <strong>Plant</strong> – Tjeldbergodden<br />

2.0 BASIS OF DESIGN<br />

2.1 Introduction<br />

This section presents <strong>the</strong> general design criteria <strong>for</strong> <strong>the</strong> CO 2 Capture Study at<br />

Tjeldbergodden, Base Scope – <strong>800</strong> <strong>MW</strong> <strong>Power</strong> <strong>Plant</strong>.<br />

Statoil is planning to install a combined cycle (CC) power plant based on 2<br />

commercially available gas turbines (GT) in <strong>the</strong> 250 -300 <strong>MW</strong> class with dedicated<br />

waste heat boilers and one common steam turbine whose nominal power output<br />

would be <strong>800</strong> <strong>MW</strong>. The flue gas quantity and quality from <strong>the</strong> two GTs was<br />

estimated by Fluor using standard software.<br />

Statoil is assessing <strong>the</strong> feasibility of capturing carbon dioxide from <strong>the</strong>se two new<br />

plants <strong>for</strong> Enhanced Oil Recovery (EOR) using Fluor’s proprietary Econamine FG<br />

Plus SM (EFG+) technology. The carbon dioxide recovery is set at 85% resulting in<br />

an EFG+ plant with a 6,170 Te/day (100% CO 2 ) capacity.<br />

2.2 Site Data<br />

• The EFG+ plant is located at Statoil’s existing complex in Tjeldbergodden,<br />

Norway.<br />

2.3 Process Design Basis<br />

Design Philosophy<br />

The EFG+ plant consists of three absorption trains and one common stripper<br />

train. Three was chosen <strong>for</strong> <strong>the</strong> number of absorption trains based on <strong>the</strong><br />

maximum allowable diameter of 15 meters <strong>for</strong> each absorber column.<br />

<strong>Plant</strong> Life<br />

The plant is designed <strong>for</strong> an operating life of no less than thirty (30) years.<br />

On-Stream Factor<br />

All systems are designed to achieve a minimum on-stream availability of 330 days<br />

per year.<br />

CB2005-0022_Final Report.Doc

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