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Review
Peer-Review Record

Gas Separation Membrane Module Modeling: A Comprehensive Review

Membranes 2023, 13(7), 639; https://doi.org/10.3390/membranes13070639
by Marcos Da Conceicao 1, Leo Nemetz 1, Joanna Rivero 2, Katherine Hornbostel 2 and Glenn Lipscomb 1,*
Reviewer 1: Anonymous
Reviewer 2: Anonymous
Membranes 2023, 13(7), 639; https://doi.org/10.3390/membranes13070639
Submission received: 2 June 2023 / Revised: 23 June 2023 / Accepted: 26 June 2023 / Published: 30 June 2023

Round 1

Reviewer 1 Report

    The authors made a detailed and insightful discussion on gas separation membranes, membrane modules, mathematical models and the development direction of the model.There are some problems as follows.

    1. The title of this paper is "Gas Separation Membrane Module Modeling". The authors used too much content to introduce membrane and membrane module in "2. Introduction to membrane gas separations"and "3. Membrane module designs", so it is suggested to make appropriate simplification.

    2. The article introduces co-current,counter-current and cross-flow, but in"5. Membrane modeling review" it seems that only the counte-rcurrent model is introduced.

    3. This paper introduced the empirical equations used to correct for nonideality, and it is suggested to  increase the introduction of the accuracy of these empirical equations.

 

Some language errors need to be corrected:  Serial number problem of "1. Non-uniform membrane properties" in Line 362 ; "the value of * in Equation (1)" in Line 119; "when a pressure drop is imposed across the membrane" in Line 146 and the  "pressure drop" should be "pressure difference"; and the full name of "ID" in Line 485.

Author Response

Please see the attachment.

Author Response File: Author Response.pdf

Reviewer 2 Report


Comments for author File: Comments.pdf

Author Response

Please see the attachment.

Author Response File: Author Response.pdf

Round 2

Reviewer 2 Report

The revised manuscript is compact but excellent.

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