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首页> 外文期刊>Energy Conversion & Management >Techno-economic evaluation of waste heat recovery by organic Rankine cycle using pure light hydrocarbons and their mixtures as working fluid in a crude oil refinery
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Techno-economic evaluation of waste heat recovery by organic Rankine cycle using pure light hydrocarbons and their mixtures as working fluid in a crude oil refinery

机译:使用纯轻质烃及其混合物作为工作油,通过有机朗肯循环回收废热的技术经济评价

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This paper summarizes the results of a study aimed at using isobutane, butane, isopentane and pentane as working fluid of an organic Rankine cycle utilizing heat of an air cooler. Ranking of different working fluids based on the maximum achievable power output, cycle efficiency, heat recovery, required heat exchanger area, attainable CO2 emission reduction, and payback period was performed. By applying pure components, the extractable turbine power varied in the range of 452-678 kW and the CO2 emission reduction potential was in the range of 723-1085 t/y in which isobutane provided the best results. Economic calculation involving both the capital and operating expenditures was conducted, which showed that the estimated payback periods were between 3.4 and 4.6 years with the best result of butane. The results of calculations that were obtained by using working fluids composed from pairs of light hydrocarbons showed that the extractable turbine power was higher for mixtures of butanes than those for butanes/pentanes and pentane mixtures. Based on the payback period, the hydrocarbon mixtures were composed from isobutane/butane in 25:75 and 50:50, and butane/pentane in 75:25 mass ratios that can be applied as favourable working fluids.
机译:本文总结了旨在使用异丁烷,丁烷,异戊烷和戊烷作为利用空气冷却器热量的有机朗肯循环的工作流体的研究结果。根据最大可实现的功率输出,循环效率,热回收,所需的热交换器面积,可实现的CO2排放量减少以及投资回收期对不同的工作流体进行排名。通过使用纯组分,可提取的涡轮机功率在452-678 kW范围内变化,CO2减排潜力在723-1085 t / y范围内,其中异丁烷提供了最佳效果。进行了涉及资本和运营支出的经济计算,结果表明,预计回收期在3.4至4.6年之间,其中丁烷的效果最佳。通过使用由轻烃对组成的工作流体获得的计算结果表明,丁烷混合物的可萃取涡轮功率高于丁烷/戊烷和戊烷混合物的可萃取涡轮功率。基于投资回收期,烃混合物由质量比为25:75和50:50的异丁烷/丁烷和质量比为75:25的丁烷/戊烷组成,可以用作有利的工作流体。

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