Enhanced Biofuel Production via Integrated Microbubble Technology

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Title
Enhanced Biofuel Production via Integrated Microbubble Technology

CoPED ID
ccb54d7b-b8e1-4898-b4a1-56c235383b99

Status
Closed


Value
£1,558,388

Start Date
Jan. 1, 2016

End Date
June 29, 2019

Description

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Energy efficient microbubbles generated by fluidic oscillation are a recent advance in bio/chemical

processing, with applications to lab and industrial scale bioreactors. Because the microbubbles are

generated cheaply and controllably, they have been shown at the lab scale to lead to substantially lower

costs / higher productivity for transfer processes in bioreactors. In this programme, microbubbles will

be developed for selected microbial processes. The commercial exemplars are three major aspects of

bioethanol production -- yeast propagation (aerobic), fermentation (anerobic), & distillation operations,

with the promise of a paradigm shift in energy efficiency and productivity. In addition, studies at the lab

& pilot scale will form the basis for design and operation guidelines, engaging the whole supply chain to

plan incorporation in industrial plant to estimate CAPEX, OPEX, and benefits for economic assessment.

The new paradigm should be equally applicable to other bioliquid/biochemical processing from biomass.

Perlemax Limited LEAD_ORG
Suprafilt Limited PARTICIPANT_ORG
Perlemax Limited PARTICIPANT_ORG
University of Sheffield PARTICIPANT_ORG

Subjects by relevance
  1. Energy efficiency
  2. Processes
  3. Biomass (industry)
  4. Supply chains
  5. Productivity

Extracted key phrases
  1. Energy efficient microbubble
  2. Integrated Microbubble Technology
  3. Enhanced Biofuel Production
  4. Fluidic oscillation
  5. Industrial scale bioreactor
  6. Lab scale
  7. Recent advance
  8. Pilot scale
  9. Microbial process
  10. Transfer process
  11. High productivity
  12. Industrial plant
  13. Paradigm shift
  14. New paradigm
  15. Distillation operation

Related Pages

UKRI project entry

UK Project Locations