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Comprehensive exergy analysis of a commercial tomato paste plant with a double-effect evaporator

机译:带有双效蒸发器的商业番茄酱工厂的综合火用分析

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In this study, a detailed exergy evaluation of a commercial tomato paste plant with a double-effect evaporator was conducted in order to provide information on the system thermodynamic inefficiencies. Using energy and exergy balance equations, all components of the plant were analyzed individually and their exergetic parameters were calculated on the basis of actual operational data. The required data were obtained from Nazchin tomato paste factory located in Tehran, Iran. In addition, it was attempted to quantify the exergy utilized for processing a given amount of the tomato paste. The results showed that over 82% of the total destroyed exergy in the plant occurred in the boiler combination as the main component wasting exergy. Furthermore, exergy analysis introduced this combination as the main equipment rejecting exergy to the ambient where 4.79% of its total exergy input was lost. The rational exergy efficiency of the first- and second-effect evaporative units was found to be 65.33% and 56.60%, respectively. The specific exergy consumption of the tomato paste production was also determined as 16.83 MJ/kg. Generally, exergy concept and its extensions could be served as a powerful assessment technique to optimize the design and performance of multiple-effect evaporation systems employed in food industry. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,对具有双效蒸发器的商业番茄酱工厂进行了详细的火用评估,以提供有关系统热力学效率低下的信息。使用能量和火用平衡方程,分别分析了工厂的所有组件,并根据实际运行数据计算了它们的充满能参数。所需数据来自位于伊朗德黑兰的Nazchin番茄酱工厂。另外,尝试量化用于加工给定量的番茄酱的本能。结果表明,超过82%的工厂已被破坏的总火用是锅炉组合中的主要成分,这是浪费火用的主要因素。此外,火用分析将这种组合作为主要设备,拒绝将火用到周围环境中,在该环境中,其总火用输入损失了4.79%。发现第一效蒸发单元和第二效蒸发单元的合理火用效率分别为65.33%和56.60%。番茄酱生产的比火用比也确定为16.83 MJ / kg。通常,火用概念及其扩展可以用作一种强大的评估技术,以优化食品工业中使用的多效蒸发系统的设计和性能。 (C)2016 Elsevier Ltd.保留所有权利。

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