An overview of process systems engineering approaches for process intensification: State of the art

[Display omitted] •A survey of the state-of-the-art process systems engineering (PSE) approaches for process intensification.•An overview of the development of various process intensification technologies.•Survey of recent advances in modeling, design, and synthesis of intensified systems.•Assessmen...

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Vydáno v:Chemical engineering and processing Ročník 133; číslo C; s. 160 - 210
Hlavní autoři: Tian, Yuhe, Demirel, Salih Emre, Hasan, M.M. Faruque, Pistikopoulos, Efstratios N.
Médium: Journal Article
Jazyk:angličtina
Vydáno: United States Elsevier B.V 01.11.2018
Elsevier
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ISSN:0255-2701, 1873-3204
On-line přístup:Získat plný text
Tagy: Přidat tag
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Abstract [Display omitted] •A survey of the state-of-the-art process systems engineering (PSE) approaches for process intensification.•An overview of the development of various process intensification technologies.•Survey of recent advances in modeling, design, and synthesis of intensified systems.•Assessment methods for the controllability/operability/safety performance of intensified process systems. Process intensification offers the potential to drastically reduce the energy consumption and cost of producing chemicals from both bulk and distributed feedstocks. This review article aims to offer an extensive survey on state-of-the-art process systems engineering (PSE) approaches for process intensification. From both academic and industrial perspectives, this paper provides an overview of the development of various process intensification technologies, specifically those under the categories of separation, reaction, hybrid reaction/separation, and alternative energy sources. A current status analysis in the areas of modeling and simulation is then provided. An indicative list of PSE publications specialized on process intensification is presented to illustrate the progresses made so far towards the deployment of novel process intensification technologies. We also highlight some recent advances for the modeling, design, and synthesis of intensified systems, as well as for the assessment of their controllability/operability/safety performance. Key open questions in these areas include: (i) how to systematically derive intensified designs, and (ii) how to ensure the operability and optimality of the derived intensified structures while delivering their expected functionality.
AbstractList [Display omitted] •A survey of the state-of-the-art process systems engineering (PSE) approaches for process intensification.•An overview of the development of various process intensification technologies.•Survey of recent advances in modeling, design, and synthesis of intensified systems.•Assessment methods for the controllability/operability/safety performance of intensified process systems. Process intensification offers the potential to drastically reduce the energy consumption and cost of producing chemicals from both bulk and distributed feedstocks. This review article aims to offer an extensive survey on state-of-the-art process systems engineering (PSE) approaches for process intensification. From both academic and industrial perspectives, this paper provides an overview of the development of various process intensification technologies, specifically those under the categories of separation, reaction, hybrid reaction/separation, and alternative energy sources. A current status analysis in the areas of modeling and simulation is then provided. An indicative list of PSE publications specialized on process intensification is presented to illustrate the progresses made so far towards the deployment of novel process intensification technologies. We also highlight some recent advances for the modeling, design, and synthesis of intensified systems, as well as for the assessment of their controllability/operability/safety performance. Key open questions in these areas include: (i) how to systematically derive intensified designs, and (ii) how to ensure the operability and optimality of the derived intensified structures while delivering their expected functionality.
Process intensification offers the potential to drastically reduce the energy consumption and cost of producing chemicals from both bulk and distributed feedstocks. This review article aims to offer an extensive survey on state-of-the-art process systems engineering (PSE) approaches for process intensification. From both academic and industrial perspectives, this paper provides an overview of the development of various process intensification technologies, specifically those under the categories of separation, reaction, hybrid reaction/separation, and alternative energy sources. A current status analysis in the areas of modeling and simulation is then provided. An indicative list of PSE publications specialized on process intensification is presented to illustrate the progresses made so far towards the deployment of novel process intensification technologies. We also highlight some recent advances for the modeling, design, and synthesis of intensified systems, as well as for the assessment of their controllability/operability/safety performance. As a result, key open questions in these areas include: (i) how to systematically derive intensified designs, and (ii) how to ensure the operability and optimality of the derived intensified structures while delivering their expected functionality.
Author Pistikopoulos, Efstratios N.
Tian, Yuhe
Demirel, Salih Emre
Hasan, M.M. Faruque
Author_xml – sequence: 1
  givenname: Yuhe
  surname: Tian
  fullname: Tian, Yuhe
  organization: Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, United States
– sequence: 2
  givenname: Salih Emre
  surname: Demirel
  fullname: Demirel, Salih Emre
  organization: Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, United States
– sequence: 3
  givenname: M.M. Faruque
  surname: Hasan
  fullname: Hasan, M.M. Faruque
  email: hasan@tamu.edu
  organization: Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, United States
– sequence: 4
  givenname: Efstratios N.
  surname: Pistikopoulos
  fullname: Pistikopoulos, Efstratios N.
  email: stratos@tamu.edu
  organization: Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, United States
BackLink https://www.osti.gov/servlets/purl/1642446$$D View this record in Osti.gov
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ISSN 0255-2701
IngestDate Thu May 18 22:41:44 EDT 2023
Tue Nov 18 22:25:31 EST 2025
Sat Nov 29 07:19:38 EST 2025
Fri Feb 23 02:34:16 EST 2024
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Issue C
Keywords Process operability
Process optimization
Process intensification
Process synthesis
Process systems engineering
Language English
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MergedId FETCHMERGED-LOGICAL-c367t-cb36ce4427185e8a29358d6bf6bddab32d3d386f9f794a82b26ee7d405378e083
Notes USDOE Office of Energy Efficiency and Renewable Energy (EERE), Energy Efficiency Office. Advanced Manufacturing Office
National Science Foundation (NSF)
EE0007888; CBET-1606027; CBET-1705423
OpenAccessLink https://www.osti.gov/servlets/purl/1642446
PageCount 51
ParticipantIDs osti_scitechconnect_1642446
crossref_primary_10_1016_j_cep_2018_07_014
crossref_citationtrail_10_1016_j_cep_2018_07_014
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PublicationDate 2018-11-01
PublicationDateYYYYMMDD 2018-11-01
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  year: 2018
  text: 2018-11-01
  day: 01
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PublicationTitle Chemical engineering and processing
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Snippet [Display omitted] •A survey of the state-of-the-art process systems engineering (PSE) approaches for process intensification.•An overview of the development of...
Process intensification offers the potential to drastically reduce the energy consumption and cost of producing chemicals from both bulk and distributed...
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SubjectTerms ENGINEERING
Process intensification
Process operability
Process optimization
Process synthesis
Process systems engineering
Title An overview of process systems engineering approaches for process intensification: State of the art
URI https://dx.doi.org/10.1016/j.cep.2018.07.014
https://www.osti.gov/servlets/purl/1642446
Volume 133
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