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Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors

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Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors. / Akien, Geoffrey R.; Skilton, Ryan A.; Poliakoff, Martyn.
In: Industrial and Engineering Chemistry Research, Vol. 49, No. 10, 19.05.2010, p. 4974-4980.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Akien, GR, Skilton, RA & Poliakoff, M 2010, 'Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors', Industrial and Engineering Chemistry Research, vol. 49, no. 10, pp. 4974-4980. https://doi.org/10.1021/ie902017b

APA

Akien, G. R., Skilton, R. A., & Poliakoff, M. (2010). Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors. Industrial and Engineering Chemistry Research, 49(10), 4974-4980. https://doi.org/10.1021/ie902017b

Vancouver

Akien GR, Skilton RA, Poliakoff M. Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors. Industrial and Engineering Chemistry Research. 2010 May 19;49(10):4974-4980. doi: 10.1021/ie902017b

Author

Akien, Geoffrey R. ; Skilton, Ryan A. ; Poliakoff, Martyn. / Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors. In: Industrial and Engineering Chemistry Research. 2010 ; Vol. 49, No. 10. pp. 4974-4980.

Bibtex

@article{b35f037641d64c54b3484104ed9067f9,
title = "Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors",
abstract = "This paper describes the use of the pressure drop across a packed column to locate phase transitions in high-pressure fluids in continuous flow. The pressure drop method yields data that can be used to locate phase transitions objectively, and an example of an automated searching algorithm is demonstrated as a proof of concept. Finally, we demonstrate the ability of the pressure drop method to be applied in operand to a hydrogenation reaction.",
keywords = "SUPERCRITICAL CARBON-DIOXIDE, TEMPERATURE MOBILE PHASES, CRITICAL-POINT CHANGE, VAPOR CRITICAL LOCI, ENHANCED-FLUIDITY, FIBEROPTIC PROBE, BINARY-MIXTURES, CO2, SYSTEMS, BEHAVIOR",
author = "Akien, {Geoffrey R.} and Skilton, {Ryan A.} and Martyn Poliakoff",
year = "2010",
month = may,
day = "19",
doi = "10.1021/ie902017b",
language = "English",
volume = "49",
pages = "4974--4980",
journal = "Industrial and Engineering Chemistry Research",
issn = "0888-5885",
publisher = "American Chemical Society",
number = "10",

}

RIS

TY - JOUR

T1 - Pressure drop as a simple method for locating phase transitions in continuous flow high pressure reactors

AU - Akien, Geoffrey R.

AU - Skilton, Ryan A.

AU - Poliakoff, Martyn

PY - 2010/5/19

Y1 - 2010/5/19

N2 - This paper describes the use of the pressure drop across a packed column to locate phase transitions in high-pressure fluids in continuous flow. The pressure drop method yields data that can be used to locate phase transitions objectively, and an example of an automated searching algorithm is demonstrated as a proof of concept. Finally, we demonstrate the ability of the pressure drop method to be applied in operand to a hydrogenation reaction.

AB - This paper describes the use of the pressure drop across a packed column to locate phase transitions in high-pressure fluids in continuous flow. The pressure drop method yields data that can be used to locate phase transitions objectively, and an example of an automated searching algorithm is demonstrated as a proof of concept. Finally, we demonstrate the ability of the pressure drop method to be applied in operand to a hydrogenation reaction.

KW - SUPERCRITICAL CARBON-DIOXIDE

KW - TEMPERATURE MOBILE PHASES

KW - CRITICAL-POINT CHANGE

KW - VAPOR CRITICAL LOCI

KW - ENHANCED-FLUIDITY

KW - FIBEROPTIC PROBE

KW - BINARY-MIXTURES

KW - CO2

KW - SYSTEMS

KW - BEHAVIOR

U2 - 10.1021/ie902017b

DO - 10.1021/ie902017b

M3 - Journal article

VL - 49

SP - 4974

EP - 4980

JO - Industrial and Engineering Chemistry Research

JF - Industrial and Engineering Chemistry Research

SN - 0888-5885

IS - 10

ER -