Waste Heat Recovery Enhancement in the Co2 Chemical Absorption Process by Hydrophobic-Hydrophilic Composite Ceramic Membranes

34 Pages Posted: 31 Jan 2023

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qiufang cui

Huazhong Agricultural University

Leonardo Gutierrez

Ghent University

Te Tu

Huazhong Agricultural University

Yu Shang

Huazhong Agricultural University

Shuiping Yan

University of Utah; Huazhong Agricultural University - College of Engineering

Abstract

A novel ceramic composite membrane configuration was proposed to improve the waste heat recovery performance from stripped gas in the CO2 chemical absorption process. Tubular hydrophobic and hydrophilic ceramic membranes were serially assembled to form a single composite membrane. The stripped gas and bypassed CO2-rich solvent flowed countercurrent on both sides of the composite membrane. The waste heat recovery performance from the stripped gas was investigated under eight membrane configurations using: hydrophobic, hydrophilic, and Janus membranes (i.e., with hydrophilic inner-surface and hydrophobic outer-surface, and viceversa). Results showed that when the stripped gas enters the hydrophobic segment, the waste heat recovery performance increases to a plateau and then decreases with an increasing length of the hydrophobic segment. When the length ratio of the hydrophobic segment was 25%, a maximum waste heat recovery performance was achieved. Similarly, an increase in the hydrophobicity of the hydrophobic segment caused an increase in waste heat recovery performance, in which the optimal water contact angle (CA) was 137.35°. As a result of the abovementioned conditions, a 7.44%-25.15% higher waste heat recovery of the composite membrane was achieved compared to commercial hydrophilic membranes.

Keywords: Heat and mass transfer, hydrophilic ceramic membrane, hydrophobic surface modification, ceramic membrane heat exchanger, CO2 capture.

Suggested Citation

cui, qiufang and Gutierrez, Leonardo and Tu, Te and Shang, Yu and Yan, Shuiping and Yan, Shuiping, Waste Heat Recovery Enhancement in the Co2 Chemical Absorption Process by Hydrophobic-Hydrophilic Composite Ceramic Membranes. Available at SSRN: https://ssrn.com/abstract=4343262 or http://dx.doi.org/10.2139/ssrn.4343262

Qiufang Cui

Huazhong Agricultural University ( email )

Wuhan, Hubei
Wuhan, 430070
China

Leonardo Gutierrez

Ghent University ( email )

Coupure Links 653
Ghent, 9000
Belgium

Te Tu

Huazhong Agricultural University ( email )

Wuhan, Hubei
Wuhan, 430070
China

Yu Shang

Huazhong Agricultural University ( email )

Wuhan, Hubei
Wuhan, 430070
China

Shuiping Yan (Contact Author)

University of Utah

1645 E. Campus Center
Salt Lake City, UT 84112
United States

Huazhong Agricultural University - College of Engineering ( email )

No.1, Shizishan Street
Hongshan District
Wuhan, Hubei 430070
China

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