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UKCCSRC Call 1,2 paper: Understanding the solubility of water in carbon capture and storage mixtures: An FTIR spectroscopic study of H2O+CO2+N2 ternary mixtures

The solubility of water (H2O) in carbon dioxide (CO2) and nitrogen (N2) mixtures (xN2 = 0.050 and 0.100, mole fraction) has been investigated at 25 and 40 degrees C in the pressure range between 8...

UKCCSRC Call 1/2 paper: Understanding the solubility of water in carbon capture and storage mixtures: An FTIR spectroscopic study of H2O+CO2+N2 ternary mixtures

The solubility of water (H2O) in carbon dioxide (CO2) and nitrogen (N2) mixtures (xN2 = 0.050 and 0.100, mole fraction) has been investigated at 25 and 40 °C in the pressure range between 8 and 18...

UKCCSRC Call 1 project blog: Tractable Equation of State for CO2 Mixtures, Update, 27.08.14

This is a blog (Update, 27.08.14) on the UKCCSRC Call 1 project, Tractable Equation of State for CO2 Mixtures. Grant number: UKCCSRC-C1-22.

Dendrochronology data from oak and Scots pine in the south of England

These data are tree ring width series collected from increment cores taken from oak trees in the New Forest, Thetford Forest and Peninsula (Somerset, Devon and Cornwall) regions. The aim of this...

UKCCSRC Call 1 project poster: Tractable Equation of State for CO2 Mixtures, Cranfield Biannual, 21.04.15

This presentation on the UKCCSRC Call 1 project, Tractable Equation of State for CO2 Mixtures, was presented at the Cranfield Biannual, 22.04.15. Grant number: UKCCSRC-C1-22.

UKCCSRC Call 1 project presentation: Tractable Equation of State for CO2 Mixtures, Cranfield Biannual, 22.04.15

This presentation on the UKCCSRC Call 1 project, Tractable Equation of State for CO2 Mixtures, was presented at the Cranfield Biannual, 22.04.15. Grant number: UKCCSRC-C1-22.

UKCCSRC Call 1 project poster: Tractable Equation of State for CO2 Mixtures, Cambridge Biannual, 02.04.14

This poster on the UKCCSRC Call 1 project, Tractable Equation of State for CO2 Mixtures, was presented at the Cambridge Biannual, 02.04.14. Grant number: UKCCSRC-C1-22.

UKCCSRC Call 1 project poster: Determination of water Solubility in CO2 Mixtures, Cambridge Biannual, 02.04.14

This poster on the UKCCSRC Call 1 project, Determination of water Solubility in CO2 Mixtures, was presented at the Cambridge Biannual, 02.04.14. Grant number: UKCCSRC-C1-21.

UKCCSRC Call 1 project presentation: Determination of water Solubility in CO2 Mixtures, Cranfield Biannual, 22.04.15

This presentation on the UKCCSRC Call 1 project, Determination of water Solubility in CO2 Mixtures, was presented at the Cranfield Biannual, 22.04.15. Grant number: UKCCSRC-C1-21.

UKCCSRC Call 1 project poster: Determination of water Solubility in CO2 Mixtures, Cranfield Biannual, 21.04.15

This poster on the UKCCSRC Call 1 project, Determination of water Solubility in CO2 Mixtures, was presented at the Cranfield Biannual, 21.04.15. Grant number: UKCCSRC-C1-21.

UKCCSRC Call 2 project poster: Measurement of Water Solubility Limits of CO2 Mixtures to Underpin the Safe Pipeline Transportation of CO2, CSLF Call project poster reception, London, 27.06.16

This poster on the UKCCSRC Call 2 project Measurement of Water Solubility Limits of CO2 Mixtures to Underpin the Safe Pipeline Transportation of CO2 was presented at the CSLF Call project poster...

Participation and achievement for the first year of national diploma provision

These tables show early statistics on participation and achievement in Diploma learning during the first year of the Diploma programme. The Diploma is a new qualification which was introduced in...

UKCCSRC Call 2 project data: Performance of Flow Meters with Dense Phase CO2 and CCS Recovery Streams

Fiscal metering could face several challenges during CO2 transport by pipelines due to the unusual physical properties of CO2 and CO2 mixtures. Coriolis flowmeters are an options to measure CO2...

UKCCSRC Call 2 Project: Measurement of water solubility limits of CO2 mixtures to underpin the safe pipeline transportation of CO2

This Proposal focuses on the determination of the dew point of water (H2O), or “water solubility”, in impure CO2 mixtures (e.g. containing nitrogen, N2, oxygen, O2, hydrogen, H2, or mixtures of N2...

Commercial Land and Property

Barrow Councils Commercial Land and Property that is available for rent. Areas shown as a mixture of both polygon and point. Upon accessing this Licensed Data you will be deemed to have accepted...

Chemical potentials of liquid iron mixtures at ICB conditions and of solid ferropericlase at CMB conditions (NERC grant NE/M000990/1)

This dataset contains VASP runs performed on several supercomputing services (ARCHER, Monsoon, Thomas and Grace in the UK; Eos in the USA) to calculate the chemical potentials of liquid iron...

UKCCSRC Call 1 Project: Determination of water solubility limits in CO2 mixtures to deliver water specification levels for CO2 transportation

This project will determine the dew point of water, or "water solubility", in impure CO2 mixtures (e.g. containing N2 and H2). At present, key data for defining water levels have not been...

UKCCSRC Call 1 project poster: Determination of water Solubility in CO2 Mixtures, CSLF Call project poster reception, London, 27.06.16

This poster on the UKCCSRC Call 1 project Determination of water solubility limits in CO2 mixtures to deliver water specification levels for CO2 transportation was presented at the CSLF Call...

UKCCSRC Call 1 Project: Tractable equations of state for CO2 mixtures in CCS: algorithms for automated generation and optimisation, tailored to end-users

This project will tackle one of the key technical challenges facing the development of commercially viable CO2 transport networks: modelling the phase behaviour of impure carbon dioxide, under the...

Earth's core conductivities for pure iron and iron mixtures in the liquid outer core and solid inner core (NERC Grant NE/H02462X/1)

This dataset contains VASP runs performed on ARCHER to calculate the electrical and thermal conductivities of pure iron and iron alloys at Earth's core conditions using density functional theory...