The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone

Liquid-liquid hydrocyclone (LLHC) has been used in the produced water treatment system to remove oil contaminant. However, the efficiency of the LLHC for treating the produced water from polymer flooding is unknown. The objective of this study is to investigate and compare the effect of two polymers...

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Main Authors: Ishak, K.E.H.K., Ayoub, M.A.
Format: Article
Published: Springer 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85088904518&doi=10.1007%2f978-981-15-2485-1_339&partnerID=40&md5=4e6dd356ebba7fd57c931d7a75b8334e
http://eprints.utp.edu.my/24730/
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spelling my.utp.eprints.247302021-08-27T05:50:46Z The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone Ishak, K.E.H.K. Ayoub, M.A. Liquid-liquid hydrocyclone (LLHC) has been used in the produced water treatment system to remove oil contaminant. However, the efficiency of the LLHC for treating the produced water from polymer flooding is unknown. The objective of this study is to investigate and compare the effect of two polymers with different molecular weight (MW), DL-333, and GLP-100 in the oil-water separation by using LLHC. The efficiency of the LLHC was analyzed in term of the oil concentration presence at the underflow of the LLHC comparing to the oil concentration at the inlet. The other parameters involved in this study are the LLHC operating conditions, which are feed flowrate and split ratio. Synthetic produced water was created by mixing 1000 ppm crude oil, 14000 ppm brines and different types of polymers with the concentration ranging from 0�1000 ppm. An ultrasonic mixer was used at 13000 rpm for 10 min to produce the synthetic produced water. A total of 34 experiments were designed by using Response Surface Methodology (RSM). The experiments were conducted, and the significance of the parameters was analyzed. Based on the ANOVA analysis, all parameters (polymer type, polymer concentration, feed flowrate, and split ratio) are significant in the process. The high MW of polymer (GLP-100) has decreased the efficiency of oil-water separation compared to the low MW of polymer (DL-333). Increasing the feed flowrate and split ratio had increased the efficiency of the LLHC. Two correlations for the efficiency prediction for GLP-100 and DL-333 respectively, were developed by using RSM. © 2020, Springer Nature Singapore Pte Ltd. Springer 2020 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85088904518&doi=10.1007%2f978-981-15-2485-1_339&partnerID=40&md5=4e6dd356ebba7fd57c931d7a75b8334e Ishak, K.E.H.K. and Ayoub, M.A. (2020) The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone. Springer Series in Geomechanics and Geoengineering . pp. 3727-3737. http://eprints.utp.edu.my/24730/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Liquid-liquid hydrocyclone (LLHC) has been used in the produced water treatment system to remove oil contaminant. However, the efficiency of the LLHC for treating the produced water from polymer flooding is unknown. The objective of this study is to investigate and compare the effect of two polymers with different molecular weight (MW), DL-333, and GLP-100 in the oil-water separation by using LLHC. The efficiency of the LLHC was analyzed in term of the oil concentration presence at the underflow of the LLHC comparing to the oil concentration at the inlet. The other parameters involved in this study are the LLHC operating conditions, which are feed flowrate and split ratio. Synthetic produced water was created by mixing 1000 ppm crude oil, 14000 ppm brines and different types of polymers with the concentration ranging from 0�1000 ppm. An ultrasonic mixer was used at 13000 rpm for 10 min to produce the synthetic produced water. A total of 34 experiments were designed by using Response Surface Methodology (RSM). The experiments were conducted, and the significance of the parameters was analyzed. Based on the ANOVA analysis, all parameters (polymer type, polymer concentration, feed flowrate, and split ratio) are significant in the process. The high MW of polymer (GLP-100) has decreased the efficiency of oil-water separation compared to the low MW of polymer (DL-333). Increasing the feed flowrate and split ratio had increased the efficiency of the LLHC. Two correlations for the efficiency prediction for GLP-100 and DL-333 respectively, were developed by using RSM. © 2020, Springer Nature Singapore Pte Ltd.
format Article
author Ishak, K.E.H.K.
Ayoub, M.A.
spellingShingle Ishak, K.E.H.K.
Ayoub, M.A.
The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
author_facet Ishak, K.E.H.K.
Ayoub, M.A.
author_sort Ishak, K.E.H.K.
title The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
title_short The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
title_full The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
title_fullStr The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
title_full_unstemmed The Influence of Polymers to the Oil-Water Separation in Liquid-Liquid Hydrocyclone
title_sort influence of polymers to the oil-water separation in liquid-liquid hydrocyclone
publisher Springer
publishDate 2020
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85088904518&doi=10.1007%2f978-981-15-2485-1_339&partnerID=40&md5=4e6dd356ebba7fd57c931d7a75b8334e
http://eprints.utp.edu.my/24730/
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