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Supercritical water oxidation of coal in power plants with low CO2 emissions
Authors:Franco Donatini  Gianluca Gigliucci  Juri Riccardi  Massimo Schiavetti  Roberto Gabbrielli  Stefano Briola
Affiliation:1. ENEL GEM, Area Tecnica Ricerca, Via A. Pisano 120, 56100 Pisa, Italy;2. Università di Pisa, Dipartimento di Energetica, Via Diotisalvi 2, 56126 Pisa, Italy
Abstract:In this paper, the application of Super Critical Water Oxidation (SCWO) to direct combustion at low temperature of coal fine particles with pure oxygen for power generation is presented, including also a novel method for capturing and storing carbon dioxide as liquid. A detailed simulation model of a 100 MWth coal-fired SWCO plant with low CO2 emissions characterised by a steam cooled membraned SC reactor has been developed using Aspen Plus software. According to the well-known Semenov's thermal-ignition theory, the coal particle ignition temperature in SCW conditions has been also evaluated and the results have been integrated within the Aspen Plus model. This has been tested under different operating conditions. The simulation results are presented and the effects of the main plant operating conditions, such as ignition temperature, coal particle size and combustion pressure on the plant performances are discussed. The gross and net thermodynamic efficiencies of the power plant have been estimated to be around 44% and 28%, respectively. The pure oxygen production process results the main energy penalty.
Keywords:Supercritical water oxidation  Coal clean combustion  Low CO2 emissions
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