System-Level Analysis of Atmospheric Water Extraction with Mil-100 (Fe) for Design and Optimal Site Selection Using Meteorological Characteristics

61 Pages Posted: 22 Sep 2023

See all articles by Matthew J. Realff

Matthew J. Realff

Georgia Institute of Technology - School of Chemical and Biomolecular Engineering

Jinsu Kim

Georgia Institute of Technology

Shubham Jamdade

Georgia Institute of Technology

Yanhui Yuan

affiliation not provided to SSRN

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Abstract

This study presents a system-level atmospheric water extraction (AWE) analysis using MIL-100 (Fe) as a representative material. This study considers a range of system features, including (i) modeling the isotherm across a wide temperature range based on the experimental data, (ii) conceptualizing process types and their operating conditions, (iii) analyzing the thermodynamics and economics, and (iv) optimizing the system operation under meteorological variations in temperature and humidity through two-stage stochastic programming. The swing capacity analysis revealed that a vacuum pressure below 0.1 bar and a temperature swing degree of 20-30℃ are necessary for feasible MIL-100 (Fe) AWE operation. Energy analysis shows that higher degrees of vacuum with moderate temperature swings result in lower energy consumption, requiring 4.6 and 1.6 MJ kgH2O-1 for thermal and electrical energy consumption. The estimated unit harvesting cost was 0.058 US$ kgH2O-1, with the potential for cost reduction through material and process development. We make contributions in several key areas: (i) facilitating the selection of optimal sites for pilot or commercial process implementation, (ii) offering insights into process design and operation, (iii) identifying and addressing potential bottlenecks for future process development, and (iv) providing a generalized platform for material screenings for comparative analysis.

Keywords: Atmospheric water extraction, Thermodynamic analysis, Meteorological analysis, Techno-economic analysis, Two-stage stochastic programming

Suggested Citation

Realff, Matthew J. and Kim, Jinsu and Jamdade, Shubham and Yuan, Yanhui, System-Level Analysis of Atmospheric Water Extraction with Mil-100 (Fe) for Design and Optimal Site Selection Using Meteorological Characteristics. Available at SSRN: https://ssrn.com/abstract=4580165 or http://dx.doi.org/10.2139/ssrn.4580165

Matthew J. Realff (Contact Author)

Georgia Institute of Technology - School of Chemical and Biomolecular Engineering ( email )

Jinsu Kim

Georgia Institute of Technology

Shubham Jamdade

Georgia Institute of Technology ( email )

Atlanta, GA 30332
United States

Yanhui Yuan

affiliation not provided to SSRN ( email )

No Address Available

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