Araştırma Makalesi

Assessment of Methanol Production Potential from Industrial By-Product Gases

Sayı: SUIC 31 Aralık 2024
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Assessment of Methanol Production Potential from Industrial By-Product Gases

Öz

As global efforts intensify to mitigate climate change, innovative strategies are being explored to convert industrial by-product gases into valuable commodities, thereby contributing to sustainable practices and reducing carbon footprints. This study focuses on the potential for methanol production from carbon monoxide (CO) and carbon dioxide (CO2) present in industrial gases, using hydrogen as a reactant. Kinetic models entered in to ASPEN HYSYS were employed to predict conversion rates, which were subsequently validated through laboratory-scale experiments. The highest conversion rates achieved were 69% for CO and 10% for CO2, highlighting the feasibility of converting waste gases into methanol, a key component in the circular economy.

Anahtar Kelimeler

Destekleyen Kurum

Erdemir

Kaynakça

  1. [1] Republic of Türkiye Ministry of Industry and Technology, & PwC. (2023, October). A low carbon pathway for the steel sector in the Republic of Türkiye. Republic of Türkiye Ministry of Industry and Technology.
  2. [2] Mac Dowell, N., Fennell, P. S., Shah, N., & Maitland, G. C. (2017). The role of CO2 capture and utilization in mitigating climate change. Nature Climate Change, 7(4), 243– 249. https://doi.org/10.1038/nclimate3231
  3. [3] Garcia, G., Arriola, E., Chen, W. H., & De Luna, M. D. (2021). A comprehensive review of hydrogen production from methanol thermochemical conversion for sustainability. Energy, 217, 119384. https://doi.org/10.1016/j.energy.2020.119384
  4. [4] Dalena, F., Senatore, A., Marino, A., Gordano, A., Basile, M., & Basile, A. (2018). Methanol production and applications: An overview. In Methanol (pp. 3–28). https://doi.org/10.1016/B978-0-444-63903-5.00001-7
  5. [5] Hoseiny, S., Zare, Z., Mirvakili, A., Setoodeh, P., & Rahimpour, M. R. (2016). Simulation-based optimization of operating parameters for methanol synthesis process: Application of response surface methodology for statistical analysis. Journal of Natural Gas Science and Engineering, 34, 439–448. https://doi.org/10.1016/j.jngse.2016.07.040
  6. [6] Ren, B. P., Xu, Y. P., Huang, Y. W., She, C., & Sun, B. (2023). Methanol production from natural gas reforming and CO2 capturing process: Simulation, design, and techno- economic analysis. Energy, 263, 125879. https://doi.org/10.1016/j.energy.2023.125879
  7. [7] Schwiderowski, P., Ruland, H., & Muhler, M. (2022). Current developments in CO2 hydrogenation towards methanol: A review related to industrial application. Current Opinion in Green and Sustainable Chemistry, 38, 100688. https://doi.org/10.1016/j.cogsc.2022.100688
  8. [8] Li, J., Ma, X., Liu, H., & Zhang, X. (2018). Life cycle assessment and economic analysis of methanol production from coke oven gas compared with coal and natural gas routes. Journal of Cleaner Production, 185, 299–308. https://doi.org/10.1016/j.jclepro.2018.02.261

Ayrıntılar

Birincil Dil

İngilizce

Konular

Eczacılık Bilimleri

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Aralık 2024

Gönderilme Tarihi

16 Ağustos 2024

Kabul Tarihi

3 Aralık 2024

Yayımlandığı Sayı

Yıl 2024 Sayı: SUIC

Kaynak Göster

APA
Inceoglu, D., Sakallı, S., Afacan, Z., Ünal, E., Işık Gülsaç, I., Er, Ö. O., & Ataç, Ö. (2024). Assessment of Methanol Production Potential from Industrial By-Product Gases. Erzincan University Journal of Science and Technology, SUIC, 37-51. https://doi.org/10.18185/erzifbed.1533652
AMA
1.Inceoglu D, Sakallı S, Afacan Z, vd. Assessment of Methanol Production Potential from Industrial By-Product Gases. Erzincan University Journal of Science and Technology. 2024;(SUIC):37-51. doi:10.18185/erzifbed.1533652
Chicago
Inceoglu, Didem, Selver Sakallı, Zeynep Afacan, vd. 2024. “Assessment of Methanol Production Potential from Industrial By-Product Gases”. Erzincan University Journal of Science and Technology, sy SUIC: 37-51. https://doi.org/10.18185/erzifbed.1533652.
EndNote
Inceoglu D, Sakallı S, Afacan Z, Ünal E, Işık Gülsaç I, Er ÖO, Ataç Ö (01 Aralık 2024) Assessment of Methanol Production Potential from Industrial By-Product Gases. Erzincan University Journal of Science and Technology SUIC 37–51.
IEEE
[1]D. Inceoglu vd., “Assessment of Methanol Production Potential from Industrial By-Product Gases”, Erzincan University Journal of Science and Technology, sy SUIC, ss. 37–51, Ara. 2024, doi: 10.18185/erzifbed.1533652.
ISNAD
Inceoglu, Didem - Sakallı, Selver - Afacan, Zeynep - Ünal, Erdal - Işık Gülsaç, Işıl - Er, Ömer Orçun - Ataç, Özlem. “Assessment of Methanol Production Potential from Industrial By-Product Gases”. Erzincan University Journal of Science and Technology. SUIC (01 Aralık 2024): 37-51. https://doi.org/10.18185/erzifbed.1533652.
JAMA
1.Inceoglu D, Sakallı S, Afacan Z, Ünal E, Işık Gülsaç I, Er ÖO, Ataç Ö. Assessment of Methanol Production Potential from Industrial By-Product Gases. Erzincan University Journal of Science and Technology. 2024;:37–51.
MLA
Inceoglu, Didem, vd. “Assessment of Methanol Production Potential from Industrial By-Product Gases”. Erzincan University Journal of Science and Technology, sy SUIC, Aralık 2024, ss. 37-51, doi:10.18185/erzifbed.1533652.
Vancouver
1.Didem Inceoglu, Selver Sakallı, Zeynep Afacan, Erdal Ünal, Işıl Işık Gülsaç, Ömer Orçun Er, Özlem Ataç. Assessment of Methanol Production Potential from Industrial By-Product Gases. Erzincan University Journal of Science and Technology. 01 Aralık 2024;(SUIC):37-51. doi:10.18185/erzifbed.1533652