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Synthesis and application of castor oil maleate and castor oil maleate-styrene copolymers as demulsifier for water-in-oil emulsions

机译:蓖麻油马来酸盐和蓖麻油原油 - 苯乙烯共聚物的合成与应用,作为油内乳液的破乳剂

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摘要

Oil industry has encountered a series of difficulties associated with flow assurance of petroleum fluids, especially those related with stable emulsion formation. Such emulsified systems could present problems during transportation, handling, and refining, because of their relation to operational factors, as follows: fluid viscosity, processing energy expenditure, and water coproduction. For this reason, the addition of interfacial active compounds, often polymers, is used in an attempt to phase separation in industrial processes. In this paper, five different chemical surfactants, referred to here as MACO 1, MACO 2, R1, R2, and R3, were synthesized based on castor oil. These additives were characterized by Fourier Transform Infrared (FTIR), Size-Exclusion Chromatography (SEC), and Thermogravimetrical Analyses (TGA). The demulsification activity was studied in synthetic emulsions by using two Brazilian crude oils and 30% (v/v) brine cut with 60 and 240 g/L NaCl, at neutral pH, and average droplet diameter of 10 mu m. Bottle tests were carried out at 60 degrees C in graduated ASTM test tubes for 2 h, varying additive concentration from 100 to 5000 ppm. Interfacial tension measurements were performed to elucidate the demulsification activity in water-oil interface, at the same bottle test experimental conditions. These results were discussed on the basis of the oil characterization, mechanisms of demulsifying action, as well as interfacial tension data. Ward and Tordai equation was applied according to asymptotic approximations to evaluate additives diffusivity. The results show that demulsification is more significant for MACO 1, with maximum water resolution of around 90% for both emulsion systems.
机译:石油工业遇到了与石油流体的流动保证相关的一系列困难,尤其是与稳定乳液形成有关的困难。这种乳化系统可能在运输,处理和精炼过程中存在问题,因为它们与运营因素有关,如下:流体粘度,加工能源支出和水共群。因此,使用界面活性化合物,通常是聚合物,以试图在工业过程中分离分离。本文基于蓖麻油合成,在此称为MACO 1,MACO 2,R1,R 2和R3的五种不同的化学表面活性剂。这些添加剂的特征在于傅里叶变换红外(FTIR),尺寸排阻色谱(SEC)和热重分析(TGA)。通过使用两种巴西原油和30%(v / v)盐水切割,在中性pH下,在中性pH下,在中性pH下,在10μm的平均液滴中,在合成乳液中研究了破乳活性。瓶试验在60℃下在梯度ASTM试管中进行2小时,从100至5000ppm的加性浓度不同。在同一瓶试验实验条件下进行界面张力测量以阐明水油界面中的破乳活性。这些结果是根据油特征,破乳作用的机制以及界面张力数据进行讨论。根据渐近近似应用病房和趋势方程,以评估添加剂扩散率。结果表明,破乳对摩洛1更大,对于乳液系统,最大水分分辨率约为90%。

著录项

  • 来源
    《Fuel》 |2020年第1期|117429.1-117429.13|共13页
  • 作者单位

    Univ Fed Ceara Dept Engn Quim Grp Pesquisa Termofluidodinam Aplicada Campus Pici Bloco 709 BR-60455760 Fortaleza Ceara Brazil;

    Univ Fed Ceara Dept Engn Quim Nucleo Anal & Desenvolvimento Proc Campus Pici Bloco 709 BR-60455760 Fortaleza Ceara Brazil;

    Univ Fed Ceara Dept Engn Quim Nucleo Anal & Desenvolvimento Proc Campus Pici Bloco 709 BR-60455760 Fortaleza Ceara Brazil;

    Univ Fed Ceara Dept Engn Quim Grp Pesquisa Termofluidodinam Aplicada Campus Pici Bloco 709 BR-60455760 Fortaleza Ceara Brazil;

    Univ Fed Ceara Dept Engn Quim Grp Pesquisa Termofluidodinam Aplicada Campus Pici Bloco 709 BR-60455760 Fortaleza Ceara Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Castor oil; Demulsifiers; Interfacial tension; Water-in-oil emulsions;

    机译:蓖麻油;破乳剂;界面张力;油 - 油乳液;

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