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Emissions of volatile organic compounds from crude oil processing - Global emission inventory and environmental release

机译:原油加工挥发性有机化合物排放 - 全球排放库存和环境释放

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摘要

Airborne Volatile organic compounds (VOCs) are known to have strong and adverse impacts on human health and the environment by contributing to the formation of tropospheric ozone. VOCs can escape during various stages of crude oil processing, from extraction to refinery, hence the crude oil industry is recognised as one of the major sources of VOC release into the environment. In the last few decades, volatile emissions from crude oil have been investigated either directly by means of laboratory and field-based analyses, or indirectly via emission inventories (EIs) which have been used to develop regulatory and controlling measures in the petroleum industry. There is a vast amount of scattered data in the literature for both regional emissions from crude oil processing and scientific measurements of VOC releases. This paper aims to provide a critical analysis of the overall scale of global emissions of VOCs from all stages of oil processing based on data reported in the literature. The volatile compounds, identified via EIs of the crude oil industry or through direct emissions from oil mass, are collected and analysed to present a global-scale evaluation of type, average concentration and detection frequency of the most prevalent VOCs. We provide a critical analysis on the total averages of VOCs and key pieces of evidence which highlights the necessity of implementing control measures to regulate crude oil volatile emissions (CVEs) in primary steps of extraction-to-refinery pathways of crude oil processing. We have identified knowledge gaps in this field which are of importance to control the release of VOCs from crude oil, independent of oil type, location, operating conditions and metrological parameters.
机译:已知空气挥发性有机化合物(VOC)通过促进对流层臭氧的形成,对人体健康和环境产生强烈和不利影响。 VOC可以在原油加工的各个阶段逃脱,从提取到炼油厂,因此原油工业被认为是VOC释放到环境中的主要来源之一。在过去的几十年中,原油的挥发性排放已经直接通过实验室和基础的分析来调查,或间接通过排放库存(EIS),这些分析已被用于制定石油工业中的监管和控制措施。来自原油加工的区域排放和VOC释放的科学测量,在文献中有大量的分散数据。本文旨在基于文献中报告的数据,对来自所有石油加工的所有阶段的VOCS全球排放的总规模进行了批判性分析。通过原油工业EIS或通过来自油质量的直接排放的挥发性化合物被收集并分析并分析全球范围评估,对最普遍的VOC的类型,平均浓度和检测频率。我们对VOC的总平均值和关键证据的总平均值提供了批判性分析,突出了实施控制措施的必要性,以便在原油加工萃取炼油途径的主要步骤中规范原油挥发排放(CVES)。我们已经确定了该领域的知识差距,这重视从原油,独立于油型,位置,操作条件和计量参数控制VOC的释放。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul20期|138654.1-138654.15|共15页
  • 作者单位

    Department of Mechanical Aerospace and Civil Engineering School of Engineering the University of Manchester Manchester M13 9PL UK;

    Department of Mechanical Aerospace and Civil Engineering School of Engineering the University of Manchester Manchester M13 9PL UK;

    Department of Mechanical Aerospace and Civil Engineering School of Engineering the University of Manchester Manchester M13 9PL UK;

    Department of Mechanical Aerospace and Civil Engineering School of Engineering the University of Manchester Manchester M13 9PL UK;

    Department of Mechanical Aerospace and Civil Engineering School of Engineering the University of Manchester Manchester M13 9PL UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crude oil; VOCs; Emission inventory; Health effects; Control measures;

    机译:原油;VOCS;排放库存;健康效果;控制措施;

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