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Scaling up a Gas-Phase Process for Converting Glycerol to Propane

Hulteberg, Christian LU orcid and Leveau, Andreas (2020) In Catalysts 10(9).
Abstract
It is of interest to study not only the fundamental behavior of catalysts and reactors but also to ensure that they can be scaled up in size. This paper investigates the scale-up of a glycerol-to-propane process starting from fundamental laboratory data from micro-reactor testing to the kilogram scale. The process is described in detail and consist of the use of design documents and computer simulations for determining the sizes of the unit operations involved. The final design included a vaporizer section for a glycerol/water mixture, four reactors in tandem with subsequent dehydration and hydrogenation reactions, a flash vessel to separate the excess hydrogen used, and a compressor for recycling the excess hydrogen with additional light... (More)
It is of interest to study not only the fundamental behavior of catalysts and reactors but also to ensure that they can be scaled up in size. This paper investigates the scale-up of a glycerol-to-propane process starting from fundamental laboratory data from micro-reactor testing to the kilogram scale. The process is described in detail and consist of the use of design documents and computer simulations for determining the sizes of the unit operations involved. The final design included a vaporizer section for a glycerol/water mixture, four reactors in tandem with subsequent dehydration and hydrogenation reactions, a flash vessel to separate the excess hydrogen used, and a compressor for recycling the excess hydrogen with additional light components. The system was commissioned in a linear fashion, which is described, and operated for more than 3000 h and more than 1000 h in the final operating mode including recycle. The major results were that no catalyst deactivation was apparent aside from the slow build-up of carbonaceous material in the first dehydration reactor. That the system design calculations proved to be quite close to the results achieved and that the data generated is believed to be sufficient for up-scaling the process into the 1000 to 10,000 tonnes-per-annum range. (Less)
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author
and
organization
publishing date
type
Contribution to journal
publication status
published
subject
in
Catalysts
volume
10
issue
9
article number
1007
publisher
MDPI AG
external identifiers
  • scopus:85090527955
ISSN
2073-4344
DOI
10.3390/catal10091007
language
English
LU publication?
yes
id
4593a7d4-5fd6-4652-b16d-786802de0468
date added to LUP
2020-09-04 09:12:43
date last changed
2023-11-20 11:41:41
@article{4593a7d4-5fd6-4652-b16d-786802de0468,
  abstract     = {{It is of interest to study not only the fundamental behavior of catalysts and reactors but also to ensure that they can be scaled up in size. This paper investigates the scale-up of a glycerol-to-propane process starting from fundamental laboratory data from micro-reactor testing to the kilogram scale. The process is described in detail and consist of the use of design documents and computer simulations for determining the sizes of the unit operations involved. The final design included a vaporizer section for a glycerol/water mixture, four reactors in tandem with subsequent dehydration and hydrogenation reactions, a flash vessel to separate the excess hydrogen used, and a compressor for recycling the excess hydrogen with additional light components. The system was commissioned in a linear fashion, which is described, and operated for more than 3000 h and more than 1000 h in the final operating mode including recycle. The major results were that no catalyst deactivation was apparent aside from the slow build-up of carbonaceous material in the first dehydration reactor. That the system design calculations proved to be quite close to the results achieved and that the data generated is believed to be sufficient for up-scaling the process into the 1000 to 10,000 tonnes-per-annum range.}},
  author       = {{Hulteberg, Christian and Leveau, Andreas}},
  issn         = {{2073-4344}},
  language     = {{eng}},
  month        = {{09}},
  number       = {{9}},
  publisher    = {{MDPI AG}},
  series       = {{Catalysts}},
  title        = {{Scaling up a Gas-Phase Process for Converting Glycerol to Propane}},
  url          = {{http://dx.doi.org/10.3390/catal10091007}},
  doi          = {{10.3390/catal10091007}},
  volume       = {{10}},
  year         = {{2020}},
}