Pregled bibliografske jedinice broj: 1229244
Flue gases heat recovery in synthetic polyisoprene production
Flue gases heat recovery in synthetic polyisoprene production // Book of Proceedings of the 10th International Textile Clothing & Design Conference - Magic World of Textiles, ITC&DC 2022 / Dragčević, Zvonko (ur.).
Zagreb: Tekstilno-tehnološki fakultet Sveučilišta u Zagrebu, 2022. str. 395-400 (poster, međunarodna recenzija, cjeloviti rad (in extenso), znanstveni)
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Naslov
Flue gases heat recovery in synthetic polyisoprene
production
Autori
Mihelić–Bogdanić, Alka ; Špelić, Ivana
Vrsta, podvrsta i kategorija rada
Radovi u zbornicima skupova, cjeloviti rad (in extenso), znanstveni
Izvornik
Book of Proceedings of the 10th International Textile Clothing & Design Conference - Magic World of Textiles, ITC&DC 2022
/ Dragčević, Zvonko - Zagreb : Tekstilno-tehnološki fakultet Sveučilišta u Zagrebu, 2022, 395-400
Skup
10th International Textile Clothing & Design Conference - Magic World of Textiles, ITC&DC 2022
Mjesto i datum
Dubrovnik, Hrvatska, 02.10.2022. - 05.10.2022
Vrsta sudjelovanja
Poster
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Polyisoprene, flue gases heat recovery, economizer, fuel reduction
Sažetak
This article presents energy optimization in polyisoprene manufacturing using flue gases heat recovery. The flue gases heat recovery in this process reduce fuel consumption and the temperature of exhaust flue gases. This approach is based on the energy analyses, which include the technological process from the initial raw material to the finite product. One of the very common optimization methods for fuel consumption apply decreasing is boiler flue gases heat for feed water preheating presented in this paper. The evaluation of energy efficiency improvements due to heat recovery in synthetic Polyisoprene production is shown. The investigation presents the reduction possibility of natural gas consumption using flue gases heat recovery for feed water preheating. Applying economizer allows feed water preheating by returning the heat carried by flue gases back to the process. The gas consumption is reduced by 11.13%, while flue gases temperature outlet to the surroundings is lowered from \mathrm{;204\degc}; to \mathrm{;50.99\degc};, thus reducing the heat pollution in the environment.
Izvorni jezik
Engleski
Znanstvena područja
Tekstilna tehnologija, Temeljne tehničke znanosti, Interdisciplinarne tehničke znanosti
POVEZANOST RADA
Ustanove:
Tekstilno-tehnološki fakultet, Zagreb