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Exergy and energy analysis of a load regulation method of CVO of air separation unit

机译:空分装置CVO负荷调节方法的火用能分析

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Generally in the Chinese iron and steel industry, the electricity consumption of cryogenic air separation unit (ASU) is about 14% of the overall electricity use. To reduce the electricity consumption, the combined variable oxygen (CVO) supply method for ASU is proposed. The exergy calculation program for ASU was developed and the detailed analysis of CVO method was performed. The results show that the general exergy efficiency (GEE) of ASU combined with a liquefaction unit is increased by 11 %-31 %. The consumption of unit oxygen, the total electricity consumption and the overall consumption of unit oxygen (OCUO) was compared. The OCUO is a suitable method to evaluate the energy-saving potential of CVO. Compared with the load regulation method of Automatic Load Control (ALC), the OCUO and the unit consumption of compression of CVO reduced more than 4.47% and 30%, respectively. It means that CO2 emission of every reduction 1% of gaseous oxygen release in a year in Chinese iron and steel industry will contribute approximately 0.75% to the 2020s CO2 emission reduction target of China. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通常,在中国钢铁工业中,低温空气分离装置(ASU)的耗电量约占总用电量的14%。为了减少电力消耗,提出了用于ASU的组合可变氧气(CVO)供应方法。开发了用于ASU的火用计算程序,并对CVO方法进行了详细分析。结果表明,与液化单元结合的ASU的总火用效率(GEE)提高了11%-31%。比较了单位氧气的消耗量,总电力消耗和单位氧气的总体消耗量(OCUO)。 OCUO是评估CVO节能潜力的合适方法。与自动负载控制(ALC)的负载调整方法相比,CCU的OCUO和压缩单位消耗分别减少了4.47%和30%以上。这意味着,中国钢铁行业每年减少1%的气态氧气释放量所产生的CO2排放量,将为中国2020年的CO2减排目标贡献约0.75%。 (C)2015 Elsevier Ltd.保留所有权利。

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