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空气分离装置

空气分离装置

展示如何从液相空气中提取气体,然后在工业用空气分离装置(ASU)中通过分馏工艺进行分离,再压缩成液体。 气瓶.

蒸馏产生的最典型气体:氮气、氧气和氩气(经常被称为 "空气中的气体",与其他来源产生的气体相对,通常带有 "氩 "字)。 化学过程)

使用了英国 BOC 的片段示例:

[embedyt] https://www.youtube.com/watch?v=vUybtRlaLLw[/embedyt]

相关阅读与技术

  • Cryogenic distillation: understanding the principles and operation of cryogenic distillation, which is the primary method used in air separation units to separate gases like nitrogen, oxygen, and argon.
  • 变压吸附 (PSA): exploring this technology as an alternative or complementary method to separate gases based on their 吸附 在不同压力条件下的性能。
  • Membrane separation technology: studying the use of membrane processes for gas separation, which can be an energy-efficient alternative for specific applications within air separation.
  • Material science for cryogenics: investigating materials suitable for low-temperature operations to enhance the durability and efficiency of air separation equipment.
  • Safety and environmental considerations: developing safety protocols and understanding environmental impacts associated with air separation operations, including handling cryogenic substances safely.
  • Industrial applications of separated gases: understanding the various industrial applications and markets for the gases produced in air separation units, such as in steel manufacturing, chemical processing, and healthcare.
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    Historical Context

    (if date is unknown or not relevant, e.g. "fluid mechanics", a rounded estimation of its notable emergence is provided)

    涵盖的主题: 空气分离装置、分馏、低温蒸馏、变压吸附 (PSA)、膜分离技术、气体分离、氮气、氧气、氩气、工业应用、安全协议、环境影响、低温操作、气瓶、化学加工、钢铁制造和医疗保健。

    1. 玛丽-霍梅尼克

      请提供更多信息,说明这些工艺对环境的影响,例如温室气体排放

    2. 艾拉-特兰托

      不同分离技术的能耗和效率?

    3. Liv

      空气分离装置,令人着迷的技术!但能耗如何?与其他气体分离方法相比如何?

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