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142635

Absorption/Regeneration Non-Conventional System for Water Extraction from Atmospheric Air.

Article

Last updated: 22 Jan 2023

Subjects

-

Tags

Mechanical Power Engineering

Abstract

The present work suggests a non-conventional method of water production from atmospheric air, on 24-hour basis using a compact system. The operation of the system is described and its efficiency is defined. The system performs under forced Collection absorption and regeneration through packed lower. The packed lower consists of Iwo identical columns, each of them is packed with an identical bed. Each bod consists of vertical multi-layers of cloth material impregnated with Calcium Chloride solution of different concentrations. A numerical model, based on the experimental results, has been developed to predict the performance of the system under various operating conditions. The system efficiency is found to lave peak values at certain cycle times, desiccant final concentration, regeneration temperature and absorption air stream velocity. It is also found that the maximum efficiency increases will initial concentration and decreases with the increase of the regeneration air stream velocity and absorption temperature. 

DOI

10.21608/bfemu.2021.142635

Authors

First Name

Ahmed Abd El-Razek

Last Name

Sultan

MiddleName

Ahmed

Affiliation

Department of Mechanical Power Engineering., El-Mansoura University., Mansoura., Egypt.

Email

aasultan@mans.edu.eg

City

Mansoura

Orcid

-

Volume

27

Article Issue

2

Related Issue

21024

Issue Date

2002-06-01

Receive Date

2002-04-11

Publish Date

2021-06-01

Page Start

60

Page End

72

Print ISSN

1110-0923

Online ISSN

2735-4202

Link

https://bfemu.journals.ekb.eg/article_142635.html

Detail API

https://bfemu.journals.ekb.eg/service?article_code=142635

Order

4

Type

Research Studies

Type Code

1,205

Publication Type

Journal

Publication Title

MEJ. Mansoura Engineering Journal

Publication Link

https://bfemu.journals.ekb.eg/

MainTitle

-

Details

Type

Article

Created At

22 Jan 2023