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Power Generation by Organic Rankine Cycle from Low Temperature Waste Heat of Metallurgical Industry

机译:冶金行业低温余热利用有机朗肯循环发电

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Organic Rankine Cycle (ORC) is an effective technology for low-grade waste heat power generation. In this paper, the thermal-dynamic performance of ORC system, in which low-temperature waste heat (from 40-140°C) is used as heat source, was evaluated with software RefProp8.0. The result indicates that in the range of low temperature, the working fluids like R601, R601a, R600a, R141b, R245fa and R245ca have better thermal performance. Furthermore, pilot-scale experiment using R245fa as working fluid was conducted, which validated the operation of the system for low-grade waste heat recovery. Finally, the economic feasibility of ORC has been analyzed for an ORC system using the waste heat from quenching water of blast furnace slag (80°C). According to the analysis, the project is reasonable in economy because the recovery period of investment is less than 4.2 years and environment-friendly since the CO_2 emissions can be reduced by almost 43650.68t annually.
机译:有机朗肯循环(ORC)是用于低等级余热发电的有效技术。本文使用软件RefProp8.0对ORC系统的热力学性能进行了评估,在该系统中,将低温废热(从40-140°C开始)用作热源。结果表明,在低温范围内,R601,R601a,R600a,R141b,R245fa和R245ca等工作流体具有较好的热性能。此外,以R245fa作为工作流体进行了中试实验,验证了该系统用于低品位余热回收的运行。最后,对于ORC系统的经济可行性进行了分析,该系统使用高炉矿渣(80°C)淬火水​​产生的废热。根据分析,该项目在经济上是合理的,因为投资的回收期不到4.2年,并且由于每年可以减少近43650.68t的CO_2排放,因此对环境友好。

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