Dataset for article - Esterification and membrane based solvent extraction for VFA recovery
Dataset for article - Esterification and membrane based solvent extraction for VFA recovery
Placido J and Zhang Y (2017) Evaluation of esterification and membrane based solvent extraction as methods for the recovery of short chain volatile fatty acids from slaughterhouse blood anaerobic mixed fermentation. Waste and Biomass Valorization. Accepted on 06 April 2017.
Fig 2. Bar plots for the yields obtained by the esterification reaction of model VFA solution. a) Methyl VFA yield (%) b) (NH4)2SO4 Yield (%).
Fig 3. Esterification reaction yield for the VFA produced from the slaughterhouse blood mixed fermentation broth. a) Methyl VFA yield (%) b) (NH4)2SO4 Yield (%).
Fig 4. a) Reaction kinetic for the FA produced from the slaughterhouse blood mixed fermentation broth. b) Esterification reaction temperature for the VFA produced from the slaughterhouse blood mixed fermentation broth.
Fig 5. a) Bar plot for the VFA recovery for the experiment modifying TOA concentration, and VFA TOA/octanol relationship. b) Bar plot for the VFA recovery using the slaughterhouse blood mixed fermentation broth and model solutions a regular and acidified pH.
Fig 6. VFA recovery using the MBSE system. a) Model VFA solution. b) Unacidified fermentation broth from slaughterhouse blood. c) Acidified fermentation broth from slaughterhouse blood.
Table 1. Duncan's Multiple Range Test for the comparison of means from the recovery% of VFA from model solutions
University of Southampton
Plácido, Jersson
7b1e7b72-3f82-4961-922f-6c4e44f6cc41
Zhang, Yue
69b11d32-d555-46e4-a333-88eee4628ae7
Plácido, Jersson
7b1e7b72-3f82-4961-922f-6c4e44f6cc41
Zhang, Yue
69b11d32-d555-46e4-a333-88eee4628ae7
Plácido, Jersson
(2017)
Dataset for article - Esterification and membrane based solvent extraction for VFA recovery.
University of Southampton
doi:10.5258/SOTON/D0058
[Dataset]
Abstract
Placido J and Zhang Y (2017) Evaluation of esterification and membrane based solvent extraction as methods for the recovery of short chain volatile fatty acids from slaughterhouse blood anaerobic mixed fermentation. Waste and Biomass Valorization. Accepted on 06 April 2017.
Fig 2. Bar plots for the yields obtained by the esterification reaction of model VFA solution. a) Methyl VFA yield (%) b) (NH4)2SO4 Yield (%).
Fig 3. Esterification reaction yield for the VFA produced from the slaughterhouse blood mixed fermentation broth. a) Methyl VFA yield (%) b) (NH4)2SO4 Yield (%).
Fig 4. a) Reaction kinetic for the FA produced from the slaughterhouse blood mixed fermentation broth. b) Esterification reaction temperature for the VFA produced from the slaughterhouse blood mixed fermentation broth.
Fig 5. a) Bar plot for the VFA recovery for the experiment modifying TOA concentration, and VFA TOA/octanol relationship. b) Bar plot for the VFA recovery using the slaughterhouse blood mixed fermentation broth and model solutions a regular and acidified pH.
Fig 6. VFA recovery using the MBSE system. a) Model VFA solution. b) Unacidified fermentation broth from slaughterhouse blood. c) Acidified fermentation broth from slaughterhouse blood.
Table 1. Duncan's Multiple Range Test for the comparison of means from the recovery% of VFA from model solutions
Spreadsheet
Esterification_and_membrane_based_solvent_extraction_for_VFA_recovery.xlsx
- Dataset
Text
Data_set_read_me.txt
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Published date: 2017
Organisations:
Water & Environmental Engineering Group
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Local EPrints ID: 407573
URI: http://eprints.soton.ac.uk/id/eprint/407573
PURE UUID: 5dbddafe-d55d-46bc-891a-e484d714a0aa
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Date deposited: 13 Apr 2017 01:31
Last modified: 05 Nov 2023 02:39
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Creator:
Jersson Plácido
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