Impact of CO2 impurity on CO2 compression, liquefaction and transportation

Влияние примесей в CO2 на сжатие, сжижение и транспортировку CO2
Maria‐Chiara Ferrari, Jia Li, Julia Race, Hannah Chalmers, Ben Wetenhall, Hamed Aghajani, Simon Benson, Priya Singh, John Davison
2014-01-01

CO2 compressionCO2 impuritiesCO2 liquefactionCO2 transportationIEAGHG studyfluid density and operating conditionspipeline and ship transportsafety and corrosion
The impurities present in carbon dioxide (CO2) streams for Carbon Capture and Storage (CCS) schemes are extremely important for CO2 pipeline and ship transportation affecting, for instance, the range of operation, safety considerations, fracture, cracking, corrosion control, dispersion in the event of a release, fluid density, operating pressure and temperature and the quantity of CO2 that can be transported. The range and levels of potential impurities present in captured CO2 from CO2 capture facilities will differ between sources and also between the capture technologies installed at the CO2 emission sources. However, the potential CO2 specifications that could enter the transport and storage systems, particularly from industrial sources, remain relatively under-researched. Consequently, the effect of these potential impurities in CO2 streams on CO2 transportation also needs to be understood. This paper summarises the main findings of an IEAGHG study, “Impact of CO2 Impurity on CO2 Compression, Liquefaction and Transportation”, commissioned to identify potential impurities and address the consequences of their impact on CO2 transportation.
1
Impurities in captured CO2 streams significantly affect pipeline and ship transportation parameters including operation range, safety, fracture and corrosion risks, dispersion behavior, fluid density, and operating pressure and temperature.
2
Potential CO2 specifications from industrial sources are relatively under-researched, creating uncertainty for transport and storage design and operation.
3
The types and concentrations of CO2 impurities vary by emission source and capture technology, leading to differing impacts on transport and storage systems.
4
Understanding the effects of CO2 stream impurities on compression, liquefaction and transportation is necessary; the IEAGHG study summarizes identified impurities and their transport consequences.

Carbon dioxide (CO2) streams for compression, liquefaction and transportation in CCS systems

Impact of CO2 impurities on compression, liquefaction and transportation performance and safety (including effects on operating range, pressure/temperature, fluid density, corrosion, fracture/cracking, dispersion and transportable CO2 quantity)

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2014-01-01
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Maria‐Chiara Ferrari
Jia Li
Julia Race
Hannah Chalmers
Ben Wetenhall
Hamed Aghajani
Simon Benson
Priya Singh
John Davison
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