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Supersonic separation technology for carbon dioxide and hydrogen sulfide removal from natural gas

机译:天然气二氧化碳的超音速分离技术和硫化氢去除天然气

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摘要

A cleaner approach was proposed for removing CO2 and H2S from highly acid natural gas by supersonic separation technology. For this purpose, different structures of Laval nozzles and supersonic swirling separation devices were designed. The mathematical models of gas flow in the nozzle were established, and the supersonic flow characteristics of CH4-H2S-CO2 ternary mixture were accurately predicted by adding the real gas state equation and the transport equation to describe the rotational and irrotational flow field. The effects of nozzle structure, swirl angle of static vanes and inlet parameters on the refrigeration performance of the nozzle and the separation characteristics of the swirl device were systematically investigated. The results show that the average temperature at the nozzle outlet can be as low as 135.2 K under the condition of inlet temperature 293.15 K, inlet pressure 4 MPa and 20 mol % acid gas. It indicates that the refrigeration effect produced by high speed expansion of acid natural gas in the supersonic nozzle can provide a favorable liquefying environment for the acid components, which confirms the feasibility of capturing acid components by supersonic separation device. Better refrigeration performance can be achieved in the nozzle with higher outlet Mach number, but the pressure recovery capacity of the device will be suppressed accordingly. As swirl angle increases from 73.90 degrees to 81.79 degrees, the maximum tangential velocity in the nozzle rises from 119.6 m/s to 212.5 m/s, the separation performance of the swirl device increases, while the pressure and temperature at the same location decrease slightly. However, the increase of swirl intensity will restrict the flow capacity of the separator. For the given supersonic swirling separation device, it shows a good adaptability in separation performance when changing the inlet parameters. (C) 2020 Elsevier Ltd. All rights reserved.
机译:提出了一种通过超音速分离技术从高酸天然气中除去CO 2和H2S的清洁方法。为此目的,设计了设计的拉瓦尔喷嘴和超音速旋流分离装置的不同结构。建立了喷嘴中气流的数学模型,通过添加真实气体状态方程和传输方程来精确预测CH4-H2S-CO2三元混合物的超音流特性,以描述旋转和无测流场。系统地研究了喷嘴结构的影响,静态叶片和入口参数的旋流角和入口参数的喷嘴的制冷性能和旋流装置的分离特性。结果表明,在入口温度293.15k,入口压力4MPa和20mol%酸气体的情况下,喷嘴出口处的平均温度可以低至135.2K。它表明超声波喷嘴中酸天然气高速膨胀产生的制冷效果可以为酸性组分提供有利的液化环境,这证实了超音速分离装置捕获酸组分的可行性。具有较高出口Mach数的喷嘴可以在喷嘴中实现更好的制冷性能,但是将相应地抑制装置的压力恢复能力。随着旋流角度从73.90度增加到81.79度,喷嘴中的最大切向速度从119.6 m / s升高到212.5 m / s,旋流装置的分离性能增加,而相同位置的压力和温度略微下降。然而,涡旋强度的增加将限制分离器的流量。对于给定的超声波旋转分离装置,它显示出在改变入口参数时分离性能的良好适应性。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第15期|125689.1-125689.13|共13页
  • 作者单位

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

    China Univ Petr East China Coll Pipeline & Civil Engn Qingdao 266580 Peoples R China;

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

    Carbon dioxide; Hydrogen sulfide; Natural gas; Supersonic; Separation; Deacidification;

    机译:二氧化碳;硫化氢;天然气;超音速;分离;脱涂;
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