synthesis of sodium nanoparticles for promising extraction of heavy oil

  • lipid nanoparticles Sigma-Aldrich

    Search results for lipid nanoparticles at Sigma-Aldrich. Compare Products: Select up to 4 products. *Please select more than one item to compare

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  • Experimental and Theoretical Study of Viscosity Reduction

    In this sense, the main objective of this paper is to provide unexpected experimental evidence of heavy oil and extra-heavy crude oils viscosity reduction resulting from the presence of nanoparticles (NPs) of different chemical natures (SiO 2, Fe 3 O 4, and Al 2 O 3), particle size, surface acidity, and concentration at low-volume fractions.

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  • IOP Conference Series: Materials Science and Engineering

    The essential oil that is eucalyptus oil and virgin coconut oil (VCO) added with variations up to 2 wt% as antimicrobial to bacteria and fungi on tomatoes and cauliflowers. The results showed that the smallest degree of swelling is obtained on the sample with 2 wt% VCO amount 457.52%.

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  • BIOFABRICATION AND EXTRACTION OF NANOPARTICLES

    successful report of nanoparticles synthesis assisted by living plants and their extracts was in the year 2002, when gold nanoparticles ranging 2 to 20 nm, was found in alfalfa seedlings[7]. Phytoremediation or the use of plants in metal extraction has appeared as a very promising

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  • solid phase synthesis Sigma-Aldrich

    Solid-Phase Modular Synthesis of Park Nucleotide and Lipids I and II Analogues. Akira Katsuyama et. al Chemical & pharmaceutical bulletin, 66(1), undefined (2018-1-10)

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  • Lignin nanoparticles enter the scene: A promising

    Mar 01, 2021· Lignin is the second most abundant natural polymer in Earth, present in all types of plants (Becker and Wittmann, 2019) (Fig. 1A), and the main available renewable resource based on aromatic units (Lievonen et al., 2016; Schneider et al., 2020).Lignin is located in greater quantity in the secondary cell wall and widespread in the middle lamella (Fig. 1B), being commonly distributed in

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  • Improving heavy oil recovery, part (I): synthesis

    Improving heavy oil recovery, part (I): synthesis and salicylaldehyde (Salen, S). The second step is the formation of sodium alkoxide of Pluronic F-127 (AP). oil recovery. The primary stage is the extraction of oil under natural driving forces existing in the reservoir. Secondary recovery refers to the increase in the cumulative oil

    Get Price
  • IOP Conference Series: Materials Science and Engineering

    The essential oil that is eucalyptus oil and virgin coconut oil (VCO) added with variations up to 2 wt% as antimicrobial to bacteria and fungi on tomatoes and cauliflowers. The results showed that the smallest degree of swelling is obtained on the sample with 2 wt% VCO amount 457.52%.

    Get Price
  • (PDF) Green synthesis of copper oxide nanoparticles using

    Thus, green synthesis of nanoparticles is the most convenient, simple, and environmentally friendly way, and by avoiding the use of toxic chemicals and the generation of harmful/dangerous by

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  • Synthesis and application of monodisperse hydrophobic

    Synthesis and application of monodisperse hydrophobic magnetite nanoparticles as an oil spill collector using an ionic liquid 13 It was also found that porous adsorbents possessing a balance of both superhydrophobicity and superoleophilicity are promising materials. 10–16 More recently, Arabian heavy crude oil (1 mL) was spread over

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  • The greener synthesis of nanoparticles: Trends

    Review on 'green' methods for synthesis of nanoparticles using natural products. Polyphenols in plant extracts can act as chelating/reducing and capping agents. One-step processes without surfactants and capping agents. Techniques for a given metal nanoparticle can also be applied to other metals. Discussion of experimental setup for biosynthesis of silver nanoparticles.

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  • Secondary Oil Recovery Using Graphene-Based Amphiphilic

    Synthesis of sodium nanoparticles for promising extraction of heavy oil. Materials Today Physics 2021, 16,100276. Synergistic effects of Janus graphene oxide and surfactants on the heavy oil/water interfacial tension and their application to enhance heavy oil recovery. Synthesis of graphene-based amphiphilic Janus nanosheets via

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  • Sodium nanofluid helps heavy oil recovery Engineering360

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  • Synthesis of sodium nanoparticles for promising extraction

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  • Silica Nanoparticle Assisted Polymer Flooding of Heavy

    Polymer flooding based enhanced oil recovery (EOR) has been proven to be effective and successful for heavy crude oil systems due to its ability to achieve favorable mobility ratios driven by viscosity alterations. Nanoparticles have the potential to intensify favorable mobility ratios as well as various other mechanisms responsible for EOR. This work addresses the interfacial tension (IFT

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  • Special Issue "Hydrothermal Synthesis of Nanoparticles"

    Hydrothermal synthesis of nanoparticles is a processing technique that has gained particular interest in material science in the last two decades. The recent developments in the preparation of nanoparticles by heterogeneous chemical solution reactions favored the production of a large number of advanced functional materials.

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  • (PDF) Green synthesis of copper oxide nanoparticles using

    Thus, green synthesis of nanoparticles is the most convenient, simple, and environmentally friendly way, and by avoiding the use of toxic chemicals and the generation of harmful/dangerous by

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  • Synthesis of Sodium Nanoparticles for Promising Extraction

    Synthesis of Sodium Nanoparticles for Promising Extraction of Heavy Oil D. Luo, Z. Ren, Synthesis of Sodium Nanoparticles for Promising Extraction of

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  • The greener synthesis of nanoparticles: Trends

    Review on 'green' methods for synthesis of nanoparticles using natural products. Polyphenols in plant extracts can act as chelating/reducing and capping agents. One-step processes without surfactants and capping agents. Techniques for a given metal nanoparticle can also be applied to other metals. Discussion of experimental setup for biosynthesis of silver nanoparticles.

    Get Price
  • Nanoparticle Synthesis an overview ScienceDirect Topics

    Nanoparticle Synthesis. Nanoparticle synthesis using green tea leaf extract [9,10], extract of Terminalia chebula fruit [11], Oolong and black tea leaf extract [3,12], banana peel along with Colocasia esculenta leaves extract [13], sorghum bran extract [14], eucalyptus leaf extract [15], and Tridax procumbens [16] have been carried out.

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  • Green synthesis of metal nanoparticles using

    Mar 26, 2021· Nanoparticles now play a key role in most technologies, including medicine, cosmetics, agriculture and the food sciences [].Recently, the synthesis of metal nanoparticles (MtNPs) using microorganisms and plants has been recognized as an efficient and green method for further exploitation of microorganisms as nanofactories [].Given the challenges facing the international community,

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  • Synthesis and Characterization of β-Mo2C Nanoparticles

    Synthesis and Characterization of β-Mo2C Nanoparticles Supported on Bone Char. August 2017; DOI: 10.13140/RG.2.2.20566.75843. Conference: XXVI International Materials Research Congress

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  • Improving heavy oil recovery, part (I): synthesis

    1. Introduction The heavy crude oil is mainly composed of high molecular weight paraffin, asphaltenes, and resins and a low concentration of aromatic and naphthene components. 1,2 This oil has an API of less than twenty and a high viscosity and density. Indeed, these properties cause low flowability in porous media and pipeline transportation. 2,3 Thus, the heavy crude oil production process

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  • Greener synthesis of chemical compounds and materials

    The magnetite nanoparticles (Fe 2 O 3) were prepared from Fe 3+ and Fe 2+ salts (2 : 1 molar ratio) using Anthemis pseudocotula extract,and, after functionalization, were used for capture of heavy components in crude oil. Doped iron oxide nanoparticles can also be obtained from plant extracts.

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  • Magnetic nanoparticles Wikipedia

    Magnetic nanoparticles are a class of nanoparticle that can be manipulated using magnetic fields.Such particles commonly consist of two components, a magnetic material, often iron, nickel and cobalt, and a chemical component that has functionality. While nanoparticles are smaller than 1 micrometer in diameter (typically 1–100 nanometers), the larger microbeads are 0.5–500 micrometer in

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  • Synthesis of sodium nanoparticles for promising extraction

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  • Sodium nanofluid helps extract heavy oil Physics World

    Oct 16, 2020· Since most heavy oil resources are located below the surface, the second, in situ, recovery method is more common.In recent years, researchers have developed both thermal and non-thermal variants of these in situ techniques.The former, which include cold production with sands, vapour extraction, chemical injection and "flooding" the oil with steam, can be used for thin layers of oil

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  • Synthesis of enhanced phosphonic functional groups

    Synthesis and functionalization of a mesoporous silica nanoparticle based on the sol–gel process and applications in controlled release. Accounts of

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  • Google Scholar

    Google Scholar provides a simple way to broadly search for scholarly literature. Search across a wide variety of disciplines and sources: articles, theses, books, abstracts and court opinions.

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  • Cellulose supported promising magnetic sorbents

    In a recent development, the authors have synthesized Fe 3 O 4 nanoparticles (NPs) and partially carbonized cellulose nanocrystals based CMS using the chemical precipitation method for extraction of triazole fungicides and triazine herbicide from water (Yi et al., 2019).The individualized spherical form of aerobeads CMS was developed with very low density (0.005 g/cm 3) and highly

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  • Inexpensive, non-toxic nanofluid could be a game-changer

    Sodium is also a light element, allowing the researchers to create sodium nanoparticles within the silicone oil, using a kitchen blender. While the paper focuses on using the nanofluid to enhance recovery of heavy oil, Ren said it also could be used in the production of light oil, as well as for more general household uses, such as clearing a

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  • Inexpensive, non-toxic nanofluid could be a game-changer

    Sodium is also a light element, allowing the researchers to create sodium nanoparticles within the silicone oil, using a kitchen blender. While the paper focuses on using the nanofluid to enhance recovery of heavy oil, Ren said it also could be used in the production of light oil, as well as for more general household uses, such as clearing a

    Get Price
  • Google Scholar

    Google Scholar provides a simple way to broadly search for scholarly literature. Search across a wide variety of disciplines and sources: articles, theses, books, abstracts and court opinions.

    Get Price
  • Low-Cost, Eco-Friendly Nanofluid can Efficiently Recover

    Sodium also happens to be a light element, and this enabled the team to produce sodium nanoparticles inside the silicone oil, with the help of a kitchen blender. Although the study focuses mainly on applying the nanofluid to improve the recovery of heavy oil, it could also be used in the production of light oil, and for more general household

    Get Price
  • (PDF) Biosynthesis of silver nanoparticles using lemon

    The present investigation shows the extracellular synthesis of highly stable silver nanoparticles by biotransformation using the extract of lemon leaves by controlled reduction of the Ag+ ion to Ag0.

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  • Enhancing oil recovery using nanoparticles—a review

    This review study aims to facilitate and encourage the researchers who are interested in enhancing oil recovery using nanoparticles. This paper presents the oil displacement mechanisms and the potential of 4 different types of nanoparticles (SiO 2, Al 2 O 3, Fe 2 O 3, TiO 2) in enhancing the oil recovery. Results of laboratory experiments have

    Get Price
  • Inexpensive, non-toxic nanofluid could be a game-changer

    More information: Dan Luo et al, Synthesis of Sodium Nanoparticles for Promising Extraction of Heavy Oil, Materials Today Physics (2020).

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  • Improving heavy oil recovery, part (I): synthesis

    Improving heavy oil recovery, part (I): synthesis and salicylaldehyde (Salen, S). The second step is the formation of sodium alkoxide of Pluronic F-127 (AP). oil recovery. The primary stage is the extraction of oil under natural driving forces existing in the reservoir. Secondary recovery refers to the increase in the cumulative oil

    Get Price
  • mineral oil Sigma-Aldrich

    Search results for mineral oil at Sigma-Aldrich. Mineral oil standard mixture Type A and B for EN 14039 and ISO 16703. 1 Product Result

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  • Frontiers Waste-Derived Nanoparticles: Synthesis

    Aug 31, 2020· For the past few decades, a plethora of nanoparticles have been produced through various methods and utilized to advance technologies for environmental applications, including water treatment, detection of persistent pollutants, and soil/water remediation, amongst many others. The field of materials science and engineering is increasingly interested in increasing the sustainability of the

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  • New frontiers in the biosynthesis of metal oxide

    Green synthesis of iron (III) oxide nanorods mediated by polyphenols present in Omani mango (Disambiguation) tree leaves has been carried out by Al-ruqeishi et al. [].The synthesized Fe 2 O 3 nanorods with an average length and diameter of 15 nm and 3 nm, respectively, were obtained. The as-synthesized material was successfully applied in heavy crude oil cracking for reduction of dynamic

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  • Magnetic nanoparticles Wikipedia

    Magnetic nanoparticles are a class of nanoparticle that can be manipulated using magnetic fields.Such particles commonly consist of two components, a magnetic material, often iron, nickel and cobalt, and a chemical component that has functionality. While nanoparticles are smaller than 1 micrometer in diameter (typically 1–100 nanometers), the larger microbeads are 0.5–500 micrometer in

    Get Price
  • Advances in Synthesis and Applications of Microalgal

    Nanoparticle synthesis through a biosynthetic route (via microorganisms or plant extracts) is a much simpler technique in comparison with physical and chemical methods and has attracted considerable interest all over the world [23–25].Microorganisms such as fungi, bacteria, and yeast play vital role in remediation of metal ions.

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  • Green synthesis of iron oxide nanoparticles (IONPs)

    Plant mediated NPs synthesis is currently the most efficient method to produce large scale NPs in a short time. The bioactive components contained in the plant extract act as reducing and capping agents in the synthesis process and reduce the metal ions to NPs 12,13 Therefore, no additional surfactants or capping agents are required for the synthesis. 14 The metal ions in the

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  • Advances in Synthesis and Applications of Microalgal

    Nanoparticle synthesis through a biosynthetic route (via microorganisms or plant extracts) is a much simpler technique in comparison with physical and chemical methods and has attracted considerable interest all over the world [23–25].Microorganisms such as fungi, bacteria, and yeast play vital role in remediation of metal ions.

    Get Price
  • Greener synthesis of chemical compounds and materials

    The magnetite nanoparticles (Fe 2 O 3) were prepared from Fe 3+ and Fe 2+ salts (2 : 1 molar ratio) using Anthemis pseudocotula extract,and, after functionalization, were used for capture of heavy components in crude oil. Doped iron oxide nanoparticles can also be obtained from plant extracts.

    Get Price
  • Preparation of silica supported nanoscale zero valence

    When compared with the original heavy oil sample the viscosity reduction rate was 77.17%, showing promising potential in the industrial production of heavy crude oils. View Show abstract

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  • Green synthesis of metal nanoparticles using

    Mar 26, 2021· Nanoparticles now play a key role in most technologies, including medicine, cosmetics, agriculture and the food sciences [].Recently, the synthesis of metal nanoparticles (MtNPs) using microorganisms and plants has been recognized as an efficient and green method for further exploitation of microorganisms as nanofactories [].Given the challenges facing the international community,

    Get Price
  • Enhancing oil recovery using nanoparticles—a review

    This review study aims to facilitate and encourage the researchers who are interested in enhancing oil recovery using nanoparticles. This paper presents the oil displacement mechanisms and the potential of 4 different types of nanoparticles (SiO 2, Al 2 O 3, Fe 2 O 3, TiO 2) in enhancing the oil recovery. Results of laboratory experiments have

    Get Price
  • Current Research on Silver Nanoparticles: Synthesis

    R. D. Rivera-Rangel, M. P. González-Muñoz, M. Avila-Rodriguez, T. A. Razo-Lazcano, and C. Solans, "Green synthesis of silver nanoparticles in oil-in-water microemulsion and nano-emulsion using geranium leaf aqueous extract as a reducing agent," Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 536, pp. 60–67, 2018.

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  • Current Research on Silver Nanoparticles: Synthesis

    R. D. Rivera-Rangel, M. P. González-Muñoz, M. Avila-Rodriguez, T. A. Razo-Lazcano, and C. Solans, "Green synthesis of silver nanoparticles in oil-in-water microemulsion and nano-emulsion using geranium leaf aqueous extract as a reducing agent," Colloids and Surfaces A: Physicochemical and Engineering Aspects, vol. 536, pp. 60–67, 2018.

    Get Price
  • Synthesis and Characterization of β-Mo2C Nanoparticles

    Synthesis and Characterization of β-Mo2C Nanoparticles Supported on Bone Char. August 2017; DOI: 10.13140/RG.2.2.20566.75843. Conference: XXVI International Materials Research Congress

    Get Price
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