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Sustainable applications utilizing sulfur, a by-product from oil and gas industry: A state-of-the-art review

机译:利用硫的可持续应用,来自石油和天然气行业的副产品:全美审查

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摘要

This paper presents a review of current routes to utilize sulfur and sulfuric acid. Sulfur is a by-product from sour gas and crude oil processing and the precursor of sulfuric acid. As an oversupply is projected for the near-term future, it is prudent to investigate new sulfur applications and market domains that may facilitate a balancing of supply and demand. This consideration is especially relevant for the UAE, and the Middle East in general, due to the requirement to develop sulfur-rich sour gas resources to meet increasing energy needs. The goal of this review is to understand current sulfur oversupply, not as a problem, but as an opportunity to develop more sustainable technologies. Current routes are reviewed, and possible new applications and their potential as a sulfur sink and a sustainable alternative to existing technologies are discussed. Although sulfur is currently in oversupply, less than 5% positive balance according to Harrisson (2016), it must be noted that it is also a critical component in fertilizer production, having a direct impact on the food supply for the world's growing population. Should the world find itself in a sulfur shortage in the future (which could be possible in the long-term (beyond 2030) as a result of growth in renewable energies, shale gas/oil proliferation and population growth), this would be a much greater problem than the current slight oversupply situation, thus making it important to consider sulfur recoverability as a key factor for any sulfur sink technologies explored.
机译:本文提出了对利用硫和硫酸的电流途径的综述。硫是由酸气和原油加工和硫酸前体的副产物。随着供过于求的是近期未来,谨慎调查新的硫磺应用和市场域,这些域可能有助于提供供需平衡。这一考虑因素与阿联酋和中东特别相关,总的来说,由于要求富含富含硫的酸性气体资源来满足越来越多的能源需求。本综述的目标是了解当前的硫磺供过于求,而不是作为一个问题,而是一个发展更可持续技术的机会。讨论了当前的路线,并讨论了可能的新应用及其作为硫磺水槽的潜力和现有技术的可持续替代品。虽然硫磺目前正在供过于求,但根据哈里森(2016年)的正余额小于5%,必须指出的是,它也是肥料生产中的关键成分,对世界不断增长的人口的食品供应直接影响。如果世界在未来的硫磺缺乏(长期(超越2030)中可能在可再生能源的增长,页岩气/石油增殖和人口增长的结果中找到自己,这将是一个更大的问题比目前的略有供过于求的情况,从而认为硫可恢复性作为探索任何硫磺水池技术的关键因素。

著录项

  • 来源
    《Waste Management》 |2019年第7期|78-89|共12页
  • 作者单位

    Department of Chemical Engineering Khalifa University of Science and Technology Masdar Institute Masdar City PO Box 54224 Abu Dhabi United Arab Emirates;

    Department of Chemical Engineering Khalifa University of Science and Technology Masdar Institute Masdar City PO Box 54224 Abu Dhabi United Arab Emirates Center for Catalysis and Separation Khalifa University of Science and Technology P.O. Box 127788 Abu Dhabi United Arab Emirates;

    Department of Mechanical and Materials Engineering Khalifa University of Science and Technology Masdar Institute Masdar City PO Box 54224 Abu Dhabi United Arab Emirates Dubai Electricity and Water Authority (DEWA) Research and Development Center United Arab Emirates;

    UniverSul Consulting PO Box 109760 Abu Dhabi United Arab Emirates;

    Department of Mechanical and Materials Engineering Khalifa University of Science and Technology Masdar Institute Masdar City PO Box 54224 Abu Dhabi United Arab Emirates;

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

    Sulfur; Sulfuric acid; Oversupply; Sulfur utilization; Sulfur sustainable technologies; By-product management;

    机译:硫;硫酸;供过于求;硫磺利用;硫磺可持续技术;副产品管理;

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