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The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station

Year 2017, Volume: 20 Issue: 3, 571 - 577, 15.09.2017

Abstract

During the production of
energy from large combustion plants will cause the combustion process to air
pollution stands out various gases. That gases are quite harmful on the urban
ecosystem. Wet flue gas desulphurisation systems are preferred because of their
applicability and easily operable structures without a deep information. The
Station flue gas purification systems are designed as a gas desulphurisation
process. Each of these units has their own chimney and fluepurification
systems. In flue gas purification systems, SO2, SO3, dust
and heavy metals are purified. SO2 which occurs by fuel burning can
be increased in flue gas purification systems with 98% efficiency. The process
is worked on the basis of spraying the lime milk produced by grinding the
limestone in the mill and mixing it with water, into the waste gas in the
washing tower. The lime milk polluted after spraying process is segregated by
way of hydro cyclones and discarded. The lime milk which diminishes is taken
from the stock tank and given to the system. SO2 gas which enters in
the flue gas purification system can be increased to 500 mg/Nm3. It
is seen how important the gas desulphurisation process in preventing
environment pollution and for a healty landscape. This study has been presented
at the II. International Sustainable Buildings Symposium in the same form.

References

  • 1. http://www.yildiz.edu.tr/~erturk/course_notes/air_pol_control/air70.doc, access (2015).
  • 2. Çavuşoğlu H. ve Gülaboğlu, M.Ş., “Yaş baca gazı desülfürizasyon yöntemleri”, Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 19(4): 187-194, (2013).
  • 3. http://www.yildiz.edu.tr/~erturk/course_notes/air_pol_control/air70.doc, access (2015).
  • 4. Durmaz, A., “Türkiye'nin enerji altyapısı ve hava kirliliği”, Uluslararası Yanmadan Kaynaklanan Hava Kirliliği Sempozyumu, Ankara, (1987).
  • 5. https://www.psnh.com/EnergyProjects/Clean-Air-Project.aspx, access (2015).
  • 6. Tırıs M., Okutan H. ve Kalafatoğlu E., “Hava kirliliği kaynakları ve kontrolü” Tübitak MAM, Kimya Mühendisliği Araştırma Bölümü, 93-106, (1993).
  • 7. Sanayi Kaynaklı Hava Kirliliğinin Kontrolü Yönetmeliği T.C. Çevre ve Şehircilik Bakanlığı, Ankara, (2009).
  • 8. Ersoy Ö., “Yatağan Termik Santrali Etki Alanında Hava Kirliliği Açısından Değerlendirilmesi”, Yüksek Lisans Tezi, Gazi Üniversitesi Fen Bilimleri Enstitüsü, Ankara, (2014).
Year 2017, Volume: 20 Issue: 3, 571 - 577, 15.09.2017

Abstract

References

  • 1. http://www.yildiz.edu.tr/~erturk/course_notes/air_pol_control/air70.doc, access (2015).
  • 2. Çavuşoğlu H. ve Gülaboğlu, M.Ş., “Yaş baca gazı desülfürizasyon yöntemleri”, Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 19(4): 187-194, (2013).
  • 3. http://www.yildiz.edu.tr/~erturk/course_notes/air_pol_control/air70.doc, access (2015).
  • 4. Durmaz, A., “Türkiye'nin enerji altyapısı ve hava kirliliği”, Uluslararası Yanmadan Kaynaklanan Hava Kirliliği Sempozyumu, Ankara, (1987).
  • 5. https://www.psnh.com/EnergyProjects/Clean-Air-Project.aspx, access (2015).
  • 6. Tırıs M., Okutan H. ve Kalafatoğlu E., “Hava kirliliği kaynakları ve kontrolü” Tübitak MAM, Kimya Mühendisliği Araştırma Bölümü, 93-106, (1993).
  • 7. Sanayi Kaynaklı Hava Kirliliğinin Kontrolü Yönetmeliği T.C. Çevre ve Şehircilik Bakanlığı, Ankara, (2009).
  • 8. Ersoy Ö., “Yatağan Termik Santrali Etki Alanında Hava Kirliliği Açısından Değerlendirilmesi”, Yüksek Lisans Tezi, Gazi Üniversitesi Fen Bilimleri Enstitüsü, Ankara, (2014).
There are 8 citations in total.

Details

Subjects Engineering
Journal Section Research Article
Authors

Ömer Ersoy

Mahmut Özbay

Filiz Çetinkaya Karafakı

Demet Erol

Publication Date September 15, 2017
Submission Date September 22, 2017
Published in Issue Year 2017 Volume: 20 Issue: 3

Cite

APA Ersoy, Ö., Özbay, M., Çetinkaya Karafakı, F., Erol, D. (2017). The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station. Politeknik Dergisi, 20(3), 571-577. https://doi.org/10.2339/politeknik.339367
AMA Ersoy Ö, Özbay M, Çetinkaya Karafakı F, Erol D. The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station. Politeknik Dergisi. September 2017;20(3):571-577. doi:10.2339/politeknik.339367
Chicago Ersoy, Ömer, Mahmut Özbay, Filiz Çetinkaya Karafakı, and Demet Erol. “The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station”. Politeknik Dergisi 20, no. 3 (September 2017): 571-77. https://doi.org/10.2339/politeknik.339367.
EndNote Ersoy Ö, Özbay M, Çetinkaya Karafakı F, Erol D (September 1, 2017) The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station. Politeknik Dergisi 20 3 571–577.
IEEE Ö. Ersoy, M. Özbay, F. Çetinkaya Karafakı, and D. Erol, “The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station”, Politeknik Dergisi, vol. 20, no. 3, pp. 571–577, 2017, doi: 10.2339/politeknik.339367.
ISNAD Ersoy, Ömer et al. “The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station”. Politeknik Dergisi 20/3 (September 2017), 571-577. https://doi.org/10.2339/politeknik.339367.
JAMA Ersoy Ö, Özbay M, Çetinkaya Karafakı F, Erol D. The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station. Politeknik Dergisi. 2017;20:571–577.
MLA Ersoy, Ömer et al. “The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station”. Politeknik Dergisi, vol. 20, no. 3, 2017, pp. 571-7, doi:10.2339/politeknik.339367.
Vancouver Ersoy Ö, Özbay M, Çetinkaya Karafakı F, Erol D. The Environmental Importance of Flue Gas Purification Systems; Case of Yatağan Thermal Power Station. Politeknik Dergisi. 2017;20(3):571-7.