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221797

Thermodynamic & Kinetic Study of the Adsorption of Glycolic acid using a Natural Adsorbent

Article

Last updated: 22 Jan 2023

Subjects

-

Tags

Physical chemistry

Abstract

Glycolic acid, is known as hydroxyl-acetate acid, is a vital chemical compound that have many applications, so, its recovery process of glycolic acid is mandatory and essential from its source of production, many processes are used to remove glycolic acid from its aqueous solution. In this article, Adsorption process is applied via using grape leaf residues (GLR) as adsorbent. Thermodynamic and Kinetic Studies were applied to prove the optimal conditions of adsorption process.

DOI

10.21608/ejchem.2022.119362.5365

Keywords

Glycolic acid, grape leaf residues, Adsorption, Thermodynamic and Kinetic Studies

Authors

First Name

Noor

Last Name

Mohammedthalji

MiddleName

Hazim

Affiliation

Department of Chemistry, University of Mosul,College of Education for pure science,Mosul-Iraq

Email

noorsaeed@uomosul.edu.iq

City

Mosul

Orcid

0000-0001-5668-1050

First Name

Rana

Last Name

Ali

MiddleName

T.

Affiliation

Chemistry Department, College of Education for girls, University of Mosul, Mosul, Iraq

Email

rana.tahseen@uomosul.edu.iq

City

Mosul

Orcid

-

First Name

shakir

Last Name

Saied

MiddleName

M.

Affiliation

Department of Medical Laboratory Techniques, Al-Noor University College, Mosul-Iraq

Email

shakir.mahmood@alnoor.edu.iq

City

Mosul

Orcid

-

Volume

65

Article Issue

6

Related Issue

31791

Issue Date

2022-06-01

Receive Date

2022-01-31

Publish Date

2022-06-01

Page Start

505

Page End

520

Print ISSN

0449-2285

Online ISSN

2357-0245

Link

https://ejchem.journals.ekb.eg/article_221797.html

Detail API

https://ejchem.journals.ekb.eg/service?article_code=221797

Order

45

Type

Original Article

Type Code

297

Publication Type

Journal

Publication Title

Egyptian Journal of Chemistry

Publication Link

https://ejchem.journals.ekb.eg/

MainTitle

-

Details

Type

Article

Created At

22 Jan 2023