Researcher Image
زياد طارق عبدعلي
PhD - assistant professor
College of Engineering , Environmental engineering department
[email protected]
Publication Date
Wed Dec 10 2014
Journal Name
Desalination And Water Treatment
Scopus (26)
Crossref (23)
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Publication Date
Mon Nov 28 2016
Journal Name
Separation Science And Technology
Scopus (23)
Crossref (22)
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Publication Date
Thu Jul 24 2014
Journal Name
Desalination And Water Treatment
Scopus (21)
Crossref (21)
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Publication Date
Wed Dec 28 2016
Journal Name
Environmental Technology
Scopus (18)
Crossref (18)
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Publication Date
Wed Apr 01 2015
Journal Name
Journal Of Environmental Engineering
Scopus (20)
Crossref (14)
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Publication Date
Tue Feb 02 2021
Journal Name
Journal Of Engineering Science And Technology
Publication Date
Tue Nov 01 2022
Journal Name
Alexandria Engineering Journal
Scopus (21)
Crossref (20)
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Publication Date
Wed Jul 01 2020
Journal Name
Journal Of Environmental Engineering
Scopus (21)
Crossref (19)
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Publication Date
Fri Jan 01 2021
Journal Name
Desalination And Water Treatment
Scopus (13)
Crossref (11)
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Publication Date
Sun Feb 20 2022
Journal Name
Egyptian Journal Of Chemistry
Scopus (12)
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Publication Date
Thu Dec 01 2022
Journal Name
Environmental Nanotechnology Monitoring & Management
Scopus (14)
Crossref (1)
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Publication Date
Fri Jul 01 2022
Journal Name
Sustainable Materials And Technologies
Scopus (25)
Crossref (5)
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Publication Date
Wed Dec 25 2019
Journal Name
Separation Science And Technology
Scopus (18)
Crossref (15)
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Publication Date
Sat Feb 01 2020
Journal Name
Journal Of Water Process Engineering
Scopus (51)
Crossref (39)
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Publication Date
Tue Jan 01 2019
Journal Name
Desalination And Water Treatment
Scopus (17)
Crossref (13)
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Publication Date
Wed Jan 01 2020
Journal Name
Desalination And Water Treatment
Scopus (12)
Crossref (11)
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Publication Date
Fri Aug 30 2019
Journal Name
Environmental Engineering Research
Numerical modeling of two-dimensional simulation of groundwater protection from lead using different sorbents in permeable barriers

This study is to investigate the possibility of using activated carbon prepared from Iraqi date-pits (ADP) which are produced from palm trees (Phoenix dactylifera L.) as low-cost reactive material in the permeable reactive barrier (PRB) for treating lead (Pb<sup>+2</sup>) from the contaminated groundwater, and then compare the results experimentally with other common reactive materials such as commercial activated carbon (CAC), zeolite pellets (ZP). Factors influencing sorption such as contact time, initial pH of the solution, sorbent dosage, agitation speed, and initial lead concentration has been studied. Two isotherm models were used for the description of sorption data (Langmuir and Freundlich). The maximum lead sorp

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Scopus (20)
Crossref (17)
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Publication Date
Mon May 04 2020
Journal Name
Environmental Engineering Research
Experimental and modeling study of water defluoridation using waste granular brick in a continuous up-flow fixed bed

Contamination of surface and groundwater with excessive concentrations of fluoride is of significant health hazard. Adsorption of fluoride onto waste materials of no economic value could be a potential approach for the treatment of fluoride-bearing water. This experimental and modeling study was devoted to investigate for the first the fluoride removal using unmodified waste granular brick (WGB) in a fixed bed running in continuous mode. Characterization of WGB was carried out by FT-IR, SEM, and EDX analysis. The batch mode experiments showed that they were affected by several parameters including contact time, initial pH, and sorbent dosage. The best values of these parameters that provided maximum removal percent (82%) with the in

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Scopus (13)
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Publication Date
Mon Sep 30 2019
Journal Name
Environmental Engineering Research
Development of Bi-Langmuir model on the sorption of cadmium onto waste foundry sand: Effects of initial pH and temperature

The present study develops the sorption model for simulating the effects of pH and temperature on the uptake of cadmium from contaminated water using waste foundry sand (WFS) by allowing the variation of the maximum adsorption capacity and affinity constant. The presence of two acidic functional groups with the same or different affinity is the basis in the derivation of the two models; Model 1 and Model 2 respectively. The developed Bi-Langmuir model with different affinity (Model 2) has a remarkable ability in the description of process under consideration with coefficient of determination > 0.9838 and sum of squared error < 0.08514. This result is proved by FTIR test where the weak acids responsible of cadmium ions removal

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Scopus (33)
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