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Search results for: ZERO-EMISSION CO2 POWER PLANT

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Search results for: ZERO-EMISSION CO2 POWER PLANT

  • Katedra Automatyki i Energetyki

    Mikroprocesorowe urządzenia pomiarowo-rejestrujące i systemy monitorowania wykorzystujące technologie sieciowe, systemy sterowania urządzeniami i procesami technologicznymi. Systemy sterowania w obiektach energetyki odnawialnej, skupionych i rozproszonych. Modelowanie i symulacja obiektów dynamicznych, procesów oraz systemów sterowania i kontroli; projektowanie interfejsów operatorskich. Systemy elektroenergetyczne i automatyki...

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Zespół Systemów i Urządzeń Energetyki Cieplnej

    intensyfikacja wymiany ciepła, nowoczesne wymienniki ciepła, wysokotemperaturowe pompy ciepła, mikrosiłownie ORC i inne

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Search results for: ZERO-EMISSION CO2 POWER PLANT

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Search results for: ZERO-EMISSION CO2 POWER PLANT

  • Optimizing CO2 Purification in a Negative CO2 Emission Power Plant

    In the pursuit of mitigating CO2 emissions, this study investigates the optimisation of CO2 purification within a Negative CO2 Emission Power Plant using a spray ejector condenser (SEC) coupled with a separator. The approach involves direct-contact condensation of vapour, primarily composed of an inert gas (CO2), facilitated by a subcooled liquid spray. A comprehensive analysis is presented, employing a numerical model to simulate...

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  • A study of a compact high-efficiency zero-emission power plant with oxy-fuel combustion

    Publication

    - Year 2019

    This paper discusses the application of global trends in gas cycles technology using oxy-fuel combustion. This is followed by a demonstration of a design solution for a new cycle with two enhanced energy-converting devices, namely a wet combustion chamber and a spray-ejector condenser. The proposed gas and steam cycle unit is contained within a single turbine, whose benefits combine those offered by gas turbines (high inlet temperatures)...

  • A novel concept of negative CO2 emission power plant for utilization of sewage sludge

    Publication
    • P. Ziółkowski
    • J. Badur
    • H. Pawlak-kruczek
    • L. Niedzwiecki
    • M. Kowal
    • K. Krochmalny

    - Year 2020

    Carbon Capture and Storage (CSS) technology is considered an important “bridge technology”, allowing effective abatement of CO2 emissions for power units using fossil fuels. However, if biomass is used in a power plant, equipped with CCS system, negative CO2 emissions can be achieved. In practice, wide development of such technologies would enable not only reduction of CO2 emissions, but also reversal of the harm done so far. In...

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  • Development of a spray-ejector condenser for the use in a negative CO2 emission gas power plant

    Publication

    - ENERGY - Year 2023

    One promising solution for developing low-emission power technologies is using gaseous fuel combustion in pure oxygen when the exhaust gas mixture is composed of H2O and CO2, and where CO2 is separated after steam condensation. The paper presents the results of computational analyses providing to the Spray-Ejector Condenser (SEC) development, which is one of the crucial components of the negative CO2 gas power plant (nCO2PP) cycle...

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  • Compact High Efficiency and Zero-Emission Gas-Fired Power Plant with Oxy-Combustion and Carbon Capture

    Publication

    - ENERGIES - Year 2022

    Reduction of greenhouse gases emissions is a key challenge for the power generation industry, requiring the implementation of new designs and methods of electricity generation. This article presents a design solution for a novel thermodynamic cycle with two new devices—namely, a wet combustion chamber and a spray-ejector condenser. In the proposed cycle, high temperature occurs in the combustion chamber because of fuel combustion...

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