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Low temperature oxidation of crude oil: Reaction progress and catalytic mechanism of metallic salts

机译:原油的低温氧化:金属盐的反应进程和催化机理

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摘要

Low Temperature Oxidation (LTO) reaction between crude oil and oxygen is a main reaction during the air flooding progress. The oxygen consumption rate and the reaction progress are both major factors affecting the air flooding result. Static oxidation experiments and Thermogravimetric-Fourier Transform infrared (TG-FTIR) tests have been conducted to research the LTO reaction progress, the catalytic universality of metallic salts on the oxygen consumption capacity of crude oil, and the catalytic reaction mechanism. The results show that in the progress of the low temperature oxidation of crude oil, oxygen reacts with crude oil to produce H2O, CO2 and oxygenated hydrocarbons such as carboxylic acid, alcohol, and phenol. In the early stages, the reaction products were mainly oxygenated hydrocarbons, while CO2 was a main product in the latter stages of the reaction. In the LTO reaction, the oxygen addition and the bond scission reactions existed simultaneously, but the oxygen addition reaction was dominant at the beginning of the reaction. As the reaction progresses, the bond scission reaction is gradually enhanced. From this research, it has been noted that the metallic catalyst precursor can effectively promote the LTO reaction through both the oxygen addition and bond scission reactions. The chain initiation reaction and chain propagation reaction are the main factors limiting the oxidation of crude oil. The metallic catalyst precursor can increase the formation rate of organic peroxides and promote the oxidation reaction of crude oil. The injection of the metallic catalyst precursor during air flooding can improve the safety and widen the application of air flooding technology. The catalytic effect on the oxidation of crude oils has good universality.
机译:原油与氧气之间的低温氧化(LTO)反应是驱油过程中的主要反应。耗氧率和反应进程都是影响驱气效果的主要因素。进行了静态氧化实验和热重傅里叶变换红外光谱(TG-FTIR)试验,研究了LTO反应的进展,金属盐对原油耗氧量的催化通用性以及催化反应机理。结果表明,在原油的低温氧化过程中,氧气与原油反应生成H2O,CO2和含氧碳氢化合物,如羧酸,醇和苯酚。在早期阶段,反应产物主要是氧化烃,而在后期反应阶段,CO2是主要产物。在LTO反应中,氧加成和键断裂反应同时存在,但氧加成反应在反应开始时占主导。随着反应的进行,键断裂反应逐渐增强。从该研究中已经注意到,金属催化剂前体可通过氧加成和键断裂反应两者有效地促进LTO反应。链引发反应和链增长反应是限制原油氧化的主要因素。金属催化剂前体可以增加有机过氧化物的形成速率并促进原油的氧化反应。驱油过程中注入金属催化剂前驱体可以提高安全性,拓宽了驱油技术的应用范围。对原油氧化的催化作用具有良好的通用性。

著录项

  • 来源
    《Fuel》 |2018年第1期|336-342|共7页
  • 作者单位

    China Univ Petr East China, Inst Petr Engn, Qingdao 266580, Shandong, Peoples R China;

    China Univ Petr East China, Inst Petr Engn, Qingdao 266580, Shandong, Peoples R China;

    China Univ Petr East China, Inst Petr Engn, Qingdao 266580, Shandong, Peoples R China;

    China Univ Petr East China, Inst Petr Engn, Qingdao 266580, Shandong, Peoples R China;

    China Univ Petr East China, Inst Petr Engn, Qingdao 266580, Shandong, Peoples R China;

  • 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

    Light oil; Low temperature oxidation (LTO); Reaction progress; Metallic salts; Catalytic mechanism;

    机译:轻油;低温氧化;反应进度;金属盐;催化机理;

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