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Petrakopoulou, F., Tsatsaronis, G., &, Morosuk, T., (2012). Advanced exergoenvironmental analysis of a near-zero emission power plant with chemical looping combustion, Environmental Science & Technology, 46, 3001-3007.
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Conventional and advanced exergetic analyses applied to a combined cycle power plant
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Petrakopoulou, F., Tsatsaronis, G., Morosuk, T., &, Carassai, A., (2012). Conventional and advanced exergetic analyses applied to a combined cycle power plant, Energy, 41, 146-152.
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Cziesla, F., Tsatsaronis, G., &, Gao, Z., (2006). Avoidable thermodynamic inefficiencies and costs in an externally fired combined cycle power plant, Energy, 31, 1472-1489.
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Petrakopoulou, F., Boyano, A., Cabrera, M., &, Tsatsaronis, G., (2011). Exergoeconomic and exergoenvironmental analyses of a combined cycle power plant with chemical looping technology, International Journal of Greenhouse Gas Control, 5, 475-482.
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Advanced exergetic analysis: Approaches for splitting the exergy destruction into endogenous and exogenous parts
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Kelly, S., Tsatsaronis, G., &, Morosuk, T., (2009). Advanced exergetic analysis: Approaches for splitting the exergy destruction into endogenous and exogenous parts, Energy, 34, 384-391.
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How to calculate the parts of exergy destruction in an advanced exergetic analysis
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Ziebik, A. Kolenda, Z. Stanek, W. (Eds.), Cracow, Gliwice
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Morosuk, T., &, Tsatsaronis, G., (2008). How to calculate the parts of exergy destruction in an advanced exergetic analysis. In, Ziebik, A., Kolenda, Z., Stanek, W., (Eds.), Proceedings of the 21st International Conference on Efficiency, Costs, Optimization, Simulation and Environmental Impact of Energy Systems (pp. 185-94), Cracow, Gliwice.
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Tsatsaronis, G., &, Morosuk, T., (2007). Advanced exergoeconomic evaluation and its application to compression refrigeration machines. In: ASME IMECE Proceedings, (pp. 859-68), Seattle, WA, USA.
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