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FREISLEBEN, V.; JEGLA, Z.; KRŇÁVEK, M.
Originální název
Analytical approach for energy retrofit of waste gas-to-energy units
Anglický název
Druh
Článek WoS
Originální abstrakt
Thermal oxidation represents an efficient and reliable technology for processing industrial waste gases containing combustible pollutants, for example, Volatile Organic Compounds. Thermal oxidation units (or waste gas-to-energy units) enable the heat utilization of the waste gases, which thus become a promising energy source. This is, however, very energy-intensive process requiring a huge amount of primary fuel, which is dependent on the heat recovery efficiency. This paper presents a straightforward and fairly accurate graphic-numerical method for the Energy Retrofit of waste gas-to-energy units, which doesńt require any advanced computational approach. There are provided tailor-made formulas for estimation of maximum reachable fuel savings and tools for the design of specific technological modifications, which results in the increase of the heat recovery efficiency, energy demand reduction, operational costs savings and environmental pollution mitigation, while the unit́s operational safety is also considered. The method is further applied to the Energy Retrofit of a standard industrial unit and a modern compact unit for thermal processing of waste gases. Finally, the developed method́s accuracy was successfully verified by the comparison with non-linear simulation of both studied industrial units.
Anglický abstrakt
Klíčová slova
Waste gas-to-energy unit; Energy retrofit; Conceptual design method; Heat recovery shifting diagram; Primary fuel saving
Klíčová slova v angličtině
Autoři
Rok RIV
2023
Vydáno
13.06.2022
Nakladatel
Elsevier Ltd
Místo
London, UK
ISSN
1359-4311
Periodikum
APPLIED THERMAL ENGINEERING
Svazek
214
Číslo
1
Stát
Spojené království Velké Británie a Severního Irska
Strany od
118828-1
Strany do
118828-14
Strany počet
14
URL
https://www.sciencedirect.com/science/article/pii/S1359431122007682
Dokumenty
1-s2.0-S1359431122007682-main