EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION

Wastewater effluent of plants is frequently disposed via injection wells or drain fields into the geological substrate near surface water streams. In this study, we evaluated and specified the relationships between the plants wastewater disposal flow, concentrations, and the disposal injection wells...

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Main Author: Ayman A. Hassan
Format: Article
Language:English
Published: Faculty of Engineering, University of Kufa 2018-11-01
Series:Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ
Subjects:
Online Access:http://www.uokufa.edu.iq/journals/index.php/kje/article/view/7721
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spelling doaj-420440f7e4d345f6b6b329cdd7db18cc2020-11-25T00:47:48ZengFaculty of Engineering, University of KufaMağallaẗ Al-kūfaẗ Al-handasiyyaẗ2071-55282523-00182018-11-010904234245http://dx.doi.org/10.30572/2018/kje/090416EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTIONAyman A. Hassan0Dept. of Civil Engineering, College of Engineering, University of BasrahWastewater effluent of plants is frequently disposed via injection wells or drain fields into the geological substrate near surface water streams. In this study, we evaluated and specified the relationships between the plants wastewater disposal flow, concentrations, and the disposal injection wells distances from surface water stream for minimum harmful pollutants transport to the stream. The study area was Basrah fertilizes plant near Shatt-Al-Basrah stream. A completed representation for the study area parameters data were done to simulate the aquifer, surface water, pollutants disposal, and flow-transport system for the current state and the proposed injection wells systems. The simulation and evaluation study showed that the current disposal system is harmful to the stream and the best disposal system for the wastewater plant was the injection wells. The study also revealed that the best distance for the proposed fertilizes plant disposal wells must be located not less than 480 m from the river with an injection rate not more than 3600 m3/day.http://www.uokufa.edu.iq/journals/index.php/kje/article/view/7721Injection WellsBasrah fertilizes plantGroundwater PollutionMODFLOW
collection DOAJ
language English
format Article
sources DOAJ
author Ayman A. Hassan
spellingShingle Ayman A. Hassan
EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ
Injection Wells
Basrah fertilizes plant
Groundwater Pollution
MODFLOW
author_facet Ayman A. Hassan
author_sort Ayman A. Hassan
title EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
title_short EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
title_full EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
title_fullStr EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
title_full_unstemmed EFFECT AND EVALUATION OF INDUSTRIAL WASTEWATER DISPOSAL FOR BASRAH PLANTS BY DIRECT INJECTION
title_sort effect and evaluation of industrial wastewater disposal for basrah plants by direct injection
publisher Faculty of Engineering, University of Kufa
series Mağallaẗ Al-kūfaẗ Al-handasiyyaẗ
issn 2071-5528
2523-0018
publishDate 2018-11-01
description Wastewater effluent of plants is frequently disposed via injection wells or drain fields into the geological substrate near surface water streams. In this study, we evaluated and specified the relationships between the plants wastewater disposal flow, concentrations, and the disposal injection wells distances from surface water stream for minimum harmful pollutants transport to the stream. The study area was Basrah fertilizes plant near Shatt-Al-Basrah stream. A completed representation for the study area parameters data were done to simulate the aquifer, surface water, pollutants disposal, and flow-transport system for the current state and the proposed injection wells systems. The simulation and evaluation study showed that the current disposal system is harmful to the stream and the best disposal system for the wastewater plant was the injection wells. The study also revealed that the best distance for the proposed fertilizes plant disposal wells must be located not less than 480 m from the river with an injection rate not more than 3600 m3/day.
topic Injection Wells
Basrah fertilizes plant
Groundwater Pollution
MODFLOW
url http://www.uokufa.edu.iq/journals/index.php/kje/article/view/7721
work_keys_str_mv AT aymanahassan effectandevaluationofindustrialwastewaterdisposalforbasrahplantsbydirectinjection
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