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Exergy Analysis of Air Separation Unit Products

机译:空分装置产品的火用分析

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摘要

Air separation unit (ASU) is the largest energy consume plant,about 15%-20% consumption of overall energy in steel industry.Therefore,improving the operating efficiency of ASU is an effective way to achieve energy saving and emission reduction.The detail exergy calculation is presented in this study and the product exergy analysis of an actual 40000 Nm3/h ASU in Tangshan Tangsteel gases Co.,Ltd.is evaluated using the developed exergy calculation program.The results show that: the molar exergy contained in oxygen is the largest among all gaseous products,liquid argon contains the largest molar exergy among all liquid products,and liquid products get larger exergy value than the gaseous.In a same environmental condition with a same air feed mass flow,the process would be more efficient by improving liquid production in the rated load operation of the expander.
机译:空分装置(ASU)是最大的能源消耗工厂,约占钢铁行业总能源消耗的15%-20%。因此,提高ASU的运行效率是实现节能减排的有效途径。本文采用计算方法进行了计算,并使用已开发的火用计算程序对唐山唐钢气体有限公司实际40000 Nm3 / h ASU的产品火用分析进行了评估,结果表明:在所有气态产物中最大,液态氩在所有液态产物中具有最大的摩尔本能值,并且液态产物比气态具有更大的本值。在相同的环境条件下,相同的空气进料质量流量,通过改进工艺可以提高效率液体在膨胀机的额定负荷下运行。

著录项

  • 来源
  • 会议地点 Chengdu(CN)
  • 作者单位

    School of metallurgical and ecological engineering, University of Science Technology Beijing, Beijing, China;

    Tangshan tangsteel gases Co., Ltd., Tangshan, China;

    School of mechanical engineering, University of Science Technology Beijing, Beijing, China;

    School of mechanical engineering, University of Science Technology Beijing, Beijing, China;

    School of mechanical engineering, University of Science Technology Beijing, Beijing, China;

    School of mechanical engineering, University of Science Technology Beijing, Beijing, China;

    School of metallurgical and ecological engineering, University of Science Technology Beijing, Beijing, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TB346;
  • 关键词

    air separation unit; exergy analysis; efficiency; energy saving;

    机译:空分装置;能值分析;效率;节能;
  • 入库时间 2022-08-26 14:01:23

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