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Original Articles

Adsorption of asphaltene from crude oil by applying polythiophene coating on Fe3O4 nanoparticles

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Pages 578-588 | Received 24 May 2017, Accepted 05 Jun 2017, Published online: 24 Jul 2017

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Zeinab Hosseini-Dastgerdi, Ashkan Maleki, Ebrahim Elyassi & Alimorad Rashidi. (2024) Silica/polyacrylamide nanocomposite for inhibition of asphaltene precipitation from unstable crude oils. Petroleum Science and Technology 42:2, pages 250-268.
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Dexin Liu, Xiao Zhang, Fuchun Tian, Xuewei Liu, Jie Yuan & Bo Huang. (2022) Review on nanoparticle-surfactant nanofluids: formula fabrication and applications in enhanced oil recovery. Journal of Dispersion Science and Technology 43:5, pages 745-759.
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Narjes Setoodeh, Parviz Darvishi, Asghar Lashanizadegan & Feridun Esmaeilzadeh. (2020) A comparative study for evaluating the performance of five coatings applied on Fe3O4 nanoparticles for inhibition of asphaltene precipitation from crude oil. Journal of Dispersion Science and Technology 41:11, pages 1616-1632.
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Xuyang Liu, Jingqiao Li, Kaipeng Wang, Xiaoli Tan, Anthony Yeung, Hongbo Zeng & Qi Liu. (2024) Removal of fine solids from bitumen by hetero-aggregation and magnetic separation using surface-modified magnetite nanoparticles. Part 2: Role of surface modification. Separation and Purification Technology 333, pages 125928.
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Shuangchun Yang, Chenhui Yan, Jiatie Cai, Yi Pan & Qiuju Han. (2024) Research Progress in Nanoparticle Inhibitors for Crude Oil Asphaltene Deposition. Molecules 29:5, pages 1135.
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Jiuchun Kong, A. Kolooshani, A. Kolahdouz, M. Ghadiri Nejad & D. Toghraie. (2024) Fabrication and characterization of magnesium implants coated with magnetic nanoparticles-wollastonite-hydroxyapatite for medical and sports injury applications: Finite element analysis. Ceramics International 50:3, pages 5755-5765.
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Farid Faraji Chanzab, Saber Mohammadi & Fatemeh Alemi Mahmoudi. (2024) Effect of the bare and functionalized single-wall carbon nanotubes on inhibition of asphaltene molecules aggregation: A molecular dynamic simulation. Journal of Molecular Graphics and Modelling 126, pages 108659.
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Younes Soleimani, Mohammad-Reza Mohammadi, Mahin Schaffie, Reza Zabihi & Mohammad Ranjbar. (2023) An experimental study of the effects of bacteria on asphaltene adsorption and wettability alteration of dolomite and quartz. Scientific Reports 13:1.
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Yaser Ahmadi & Seyed Mohamad Amin Kariminia. (2023) A critical review of main enhanced oil recovery mechanisms by considering recent applications of green and novel nanocomposites. Journal of Molecular Liquids 390, pages 123038.
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F. Yakassai, M. Z. Jaafar, M. A. Sidek, A. Agi, J. Gbonhinbor, N. Ridzuan, S. Q. A. Mahat, E. Ngouangna, J. Oseh & M. Al_Ani. (2023) Influence of Surface Modification on the Interfacial Tension Reduction and Wettability Alteration of Iron Oxide Nanoparticles Under Reservoir Conditions. Influence of Surface Modification on the Interfacial Tension Reduction and Wettability Alteration of Iron Oxide Nanoparticles Under Reservoir Conditions.
Abbas Ziaraty, Rahmatallah Saboori, Samad Sabbaghi & Kamal Rasouli. (2023) Investigation of the effect of Fe3O4/SiO2 nanofluid on asphaltene adsorption and wettability alteration in hydrocarbon reservoirs: Optimization of nanocomposite composition and nanofluid concentration. Chemical Engineering Research and Design 194, pages 810-828.
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Simin Tazikeh, Ali Shafiei, Turar Yerkenov, Asset Abenov, Nurzhan Seitmaganbetov & Timur Sh. Atabaev. (2022) A systematic and critical review of asphaltene adsorption from macroscopic to microscopic scale: Theoretical, experimental, statistical, intelligent, and molecular dynamics simulation approaches. Fuel 329, pages 125379.
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Sajjad Ansari, Hamid Bahmaninia, Mohammad-Reza Mohammadi, Mehdi Ostadhassan, Saeid Norouzi-Apourvari, Mahin Schaffie, Mohammad Ranjbar & Abdolhossein Hemmati-Sarapardeh. (2022) On the evaluation of asphaltene adsorption onto dolomite surface: The roles of flow condition, composition of asphaltene, and dolomite size. Alexandria Engineering Journal 61:12, pages 9411-9425.
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Oscar E. Medina, Santiago Céspedes, Richard D. Zabala, Carlos A. Franco, Agustín F. Pérez-Cadenas, Francisco Carrasco-Marín, Sergio H. Lopera, Farid B. Cortés & Camilo A. Franco. (2022) A Theoretical and Experimental Approach to the Analysis of Hydrogen Generation and Thermodynamic Behavior in an In Situ Heavy Oil Upgrading Process Using Oil-Based Nanofluids. Catalysts 12:11, pages 1349.
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Tianguan Wang, Xiankang Zhong, Zhi Zhang, Xi Yuan, Li Zhou, Ziqi Zheng, Abdolreza Farhadian & Junying Hu. (2022) Asphaltene adsorption of Co3O4 nanoparticles modified by SiO2 film. Applied Surface Science 602, pages 154267.
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Abhishek Nayak, Shanon Viegas, Harshini Dasari & Nethaji Sundarabal. (2022) Cu-BDC and Cu 2 O Derived from Cu-BDC for the Removal and Oxidation of Asphaltenes: A Comparative Study . ACS Omega 7:39, pages 34966-34973.
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Zainb Y. Shnain, Alyaa K. Mageed, Hasan Sh. Majdi, Majid Mohammadi, Adnan A. AbdulRazak & Mohammad F. Abid. (2022) Investigating the effect of TiO2-based nanofluids in the stability of crude oil flow: parametric analysis and Gaussian process regression modeling. Journal of Petroleum Exploration and Production Technology 12:9, pages 2429-2439.
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Behzad Shojaei, Rohaldin Miri, Amin Bazyari & Levi T. Thompson. (2022) Asphaltene adsorption on MgO, CaO, SiO2, and Al2O3 nanoparticles synthesized via the Pechini-type Sol−Gel method. Fuel 321, pages 124136.
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Simin Tazikeh, Javad Sayyad Amin, Sohrab Zendehboudi & Ali Shafiei. (2022) Effects of asphaltene structure and polythiophene-coated magnetite nanoparticles on surface topography and wettability alteration of silica surface. Journal of Molecular Liquids 349, pages 118470.
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Faruk Yakasai, Mohd Zaidi Jaafar, Sulalit Bandyopadhyay, Augustine Agi & Mohd Akhmal Sidek. (2022) Application of iron oxide nanoparticles in oil recovery – A critical review of the properties, formulation, recent advances and prospects. Journal of Petroleum Science and Engineering 208, pages 109438.
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Umer Farooq, Amit Patil, Balram Panjwani & Galina Simonsen. (2021) Review on Application of Nanotechnology for Asphaltene Adsorption, Crude Oil Demulsification, and Produced Water Treatment. Energy & Fuels 35:23, pages 19191-19210.
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Xun Zhong, Jiating Chen, Ran An, Kaikai Li & Minggui Chen. (2021) A state-of-the-art review of nanoparticle applications with a focus on heavy oil viscosity reduction. Journal of Molecular Liquids 344, pages 117845.
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Simin Tazikeh, Javad Kondori, Sohrab Zendehboudi, Javad Sayyad Amin & Faisal Khan. (2021) Molecular dynamics simulation to investigate the effect of polythiophene-coated Fe3O4 nanoparticles on asphaltene precipitation. Chemical Engineering Science 237, pages 116417.
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B. Mirzayi, M. Younesi & A. Nematollahzadeh. (2021) A New Investigation on Asphaltene Removal from Crude Oil: Experimental Study in Flow–Loop System Using Maghemite Nanoparticles. Petroleum Chemistry 61:5, pages 640-648.
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Jipeng Xu, Su Xue, Jinli Zhang, You Han & Shuqian Xia. (2020) Molecular Design of the Amphiphilic Polymer as a Viscosity Reducer for Heavy Crude Oil: From Mesoscopic to Atomic Scale. Energy & Fuels 35:2, pages 1152-1164.
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Mohammad Sadegh Mazloom, Abdolhossein Hemmati-Sarapardeh, Maen M. Husein, Hassan Shokrollahzadeh Behbahani & Sohrab Zendehboudi. (2020) Application of nanoparticles for asphaltenes adsorption and oxidation: A critical review of challenges and recent progress. Fuel 279, pages 117763.
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Kaibo Zhou, Xiang Zhou, Jie Liu & Zhen Huang. (2020) Application of magnetic nanoparticles in petroleum industry: A review. Journal of Petroleum Science and Engineering 188, pages 106943.
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Daniel Montes, Jonathan Henao, Esteban A. Taborda, Jaime Gallego, Farid B. Cortés & Camilo A. Franco. (2020) Effect of Textural Properties and Surface Chemical Nature of Silica Nanoparticles from Different Silicon Sources on the Viscosity Reduction of Heavy Crude Oil. ACS Omega 5:10, pages 5085-5097.
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Simin Tazikeh, Javad Sayyad Amin & Sohrab Zendehboudi. (2020) Experimental study of asphaltene precipitation and metastable zone in the presence of polythiophene-coated Fe3O4 nanoparticles. Journal of Molecular Liquids 301, pages 112254.
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Zeinab Hosseini-Dastgerdi & Seyyed Salar Meshkat. (2019) An experimental and modeling study of asphaltene adsorption by carbon nanotubes from model oil solution. Journal of Petroleum Science and Engineering 174, pages 1053-1061.
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Yousef Kazemzadeh, Mohammad Sharifi & Masoud Riazi. (2018) Optimization of Fe 3 O 4 /Chitosan nanocomposite concentration on the formation and stability of W/O emulsion . Materials Research Express 6:3, pages 035031.
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Yousef Kazemzadeh, Mohammad Sharifi & Masoud Riazi. (2018) Mutual Effects of Fe 3 O 4 /Chitosan Nanocomposite and Different Ions in Water for Stability of Water-in-Oil (w/o) Emulsions at Low–High Salinities . Energy & Fuels 32:12, pages 12101-12117.
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Yousef Kazemzadeh, Mohammad Sharifi, Masoud Riazi, Hosein Rezvani & Morteza Tabaei. (2018) Potential effects of metal oxide/SiO2 nanocomposites in EOR processes at different pressures. Colloids and Surfaces A: Physicochemical and Engineering Aspects 559, pages 372-384.
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Azadeh Amrollahi Biyouki, Negahdar Hosseinpour & Nashaat N. Nassar. (2018) Pyrolysis and Oxidation of Asphaltene-Born Coke-like Residue Formed onto in Situ Prepared NiO Nanoparticles toward Advanced in Situ Combustion Enhanced Oil Recovery Processes. Energy & Fuels 32:4, pages 5033-5044.
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Sajad Kiani, Sajjad Ansari, Abdolhossein Hemmati-Sarapardeh, Nkiru L. Ezeonyeka & Andrew Barron. (2022) Mechanistic Investigation of Asphaltene Adsorption and Oxidation by Nanoparticles: A New Solution to an Old Problem. SSRN Electronic Journal.
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