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Thermoeconomic modeling for CO2 allocation in steam and gas turbine cogeneration systems

机译:蒸汽和燃气轮机热电联产系统中二氧化碳分配的热经济模型

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摘要

Thermoeconomics is a discipline that connects Thermodynamics and Economics concepts, usually used for rational cost assessment partition to the final products of a thermal plant, by means of a model that describes the cost formation process of the overall system. Generally, exergy or monetary costs of the external resources are distributed to the final products. However, environmental consideration can be incorporated in the models to calculate the environmental costs, such as specific CO2 emission of each final product. This work aims at showing how the thermoeconomic models can be adapted to allocate the overall CO2 emission of four different gas and steam turbine cogeneration systems to the final products (net power and heat), in order to determine the specific CO2 emissions (in g/kWh) of each product. This subject is important in applications of Life Cycle Assessment encompassing processes with two or more products and also in quantifying the cogeneration environmental advantage. This paper also reveals that any thermoeconomic model can be easily adapted for allocation of the overall CO2 emissions or any other pollutant to the final products of a cogeneration or multi-product plant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:热经济学是通过描述整个系统成本形成过程的模型,将热力学和经济学概念联系起来的一门学科,通常将热力学和经济学概念用于热力工厂的最终产品的合理划分。通常,外部资源的火用或金钱成本分配给最终产品。但是,可以将环境考虑因素纳入模型中以计算环境成本,例如每种最终产品的特定CO2排放量。这项工作旨在展示如何通过热经济模型将四种不同的燃气和蒸汽轮机热电联产系统的总CO2排放分配给最终产品(净功率和热量),以便确定特定的CO2排放(以g / kWh)。该主题对于生命周期评估的应用非常重要,生命周期评估包括使用两种或多种产品的过程,以及量化热电联产的环境优势。本文还揭示出,任何热经济模型都可以轻松地用于将总的CO2排放量或任何其他污染物分配给热电联产或多产品工厂的最终产品。 (C)2016 Elsevier Ltd.保留所有权利。

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