Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition

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Bibliographic Details
Main Author: Abdulkareem Abdulqader Ateq Al-Hamzah
Other Authors: Muhammad Noorul Anam Mohd. Norddin, supervisor
Format: Master's thesis
Language:English
Published: Universiti Teknologi Malaysia 2025
Subjects:
Online Access:https://utmik.utm.my/handle/123456789/43708
Abstract Abstract here
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author Abdulkareem Abdulqader Ateq Al-Hamzah
author2 Muhammad Noorul Anam Mohd. Norddin, supervisor
author_facet Muhammad Noorul Anam Mohd. Norddin, supervisor
Abdulkareem Abdulqader Ateq Al-Hamzah
author_sort Abdulkareem Abdulqader Ateq Al-Hamzah
description Also available in printed version
format Master's thesis
id utm-123456789-43708
institution Universiti Teknologi Malaysia
language English
publishDate 2025
publisher Universiti Teknologi Malaysia
record_format dspace
record_pdf Abstract
spelling utm-123456789-437082025-03-11T18:24:52Z Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition Abdulkareem Abdulqader Ateq Al-Hamzah Muhammad Noorul Anam Mohd. Norddin, supervisor Chemical Energy Also available in printed version A potential additive for water-based mud which is the newly synthesized nanocomposite polypropylene based nanosilica (PP-SiO2 NC) has showed promising results in reducing shale swelling, enhancing cutting transport efficiency and reducing the fluid loss, but at low temperature only. Therefore, in this study, the efficiency of filtration loss was carried out for high temperature high pressure (HPHT) and its performance was compared to the commercial filtration agent Polyanionic Cellulose (PAC) at the simulated reservoir conditions. 7 samples of mud were prepared from 0.5 to 1.5 gram of (PP � SiO2 NC) PAC mud. The effect of temperature on the critical rheological properties such as plastic viscosity (PV), yield point (YP), gel strength (GS) and pH at the above concentrations were evaluated. Then, the effect of (PP � SiO2 NC) on filtration loss was evaluated at following conditions. First, at 100 psi as constant pressure and ambient temperature using the standard American Petroleum Institute (API) filtration method. The second filtrate loss measurement is at high pressure high temperature (HPHT) conditions. For HPHT measurement, it was tested at 250 oF temperature while the pressure was 500psi as differential pressure. Addition of both PAC and PP � SiO2 NC before ageing improved the properties of the WBM. There are no much variation between the rheology PV,YP and GS of PAC and PP � SiO2 NC . The PV of the WBM with PP � SiO2 NC has an optimum value at 1g concentration while the addition of PAC into WBM increases the PV with increasing concentration. After ageing PV for both the PAC and PP � SiO2 NC with a concentration of 1.5g and 1g respectively increased by 53.8 % and the YP of PAC increased by 25%, while for the PP � SiO2 NC mud improved by 40% compared to basic mud. The lower API filtration loss and mud cake thickness were obtained through adding 1.5g PAC .In the other hand at HPHT test showed a prospective reduction in the fluid loss and the best result was achieved by adding 1.5 g of PP-SiO2 NC 67.7% compared to basic mud. In addition, at HPHT It was observed that filter cake characteristic was improved by obtained thin and low permeability mud cake observation made indicated that the filter cake thickness and permeability for the samples with different concentrations of PP � SiO2 NC were lower than that of PAC the lowest values of mud cake thickness and permeability 50% and 85.2% respectively through adding 1.5g PP-SiO2 NC compared to basic fluid. shafika UTM 86 p. Thesis (Sarjana Kejuruteraan Petroleum) - Universiti Teknologi Malaysia, 2020 2025-03-11T05:58:49Z 2025-03-11T05:58:49Z 2020 Master's thesis https://utmik.utm.my/handle/123456789/43708 vital:139147 valet-20210308-074958 ENG Closed Access UTM Complete Unpublished Completion application/pdf Universiti Teknologi Malaysia
spellingShingle Chemical
Energy
Abdulkareem Abdulqader Ateq Al-Hamzah
Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
thesis_level Master
title Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
title_full Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
title_fullStr Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
title_full_unstemmed Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
title_short Evaluation of nancompsite polypropylene-nanosilica as fluid loss control material for high pressure high temperature condition
title_sort evaluation of nancompsite polypropylene nanosilica as fluid loss control material for high pressure high temperature condition
topic Chemical
Energy
url https://utmik.utm.my/handle/123456789/43708
work_keys_str_mv AT abdulkareemabdulqaderateqalhamzah evaluationofnancompsitepolypropylenenanosilicaasfluidlosscontrolmaterialforhighpressurehightemperaturecondition