Araştırma Makalesi

Hydrogen production from groundnut shell via circulating fluidized bed technology

Cilt: 8 Sayı: 1 31 Mart 2021
PDF İndir
EN

Hydrogen production from groundnut shell via circulating fluidized bed technology

Öz

In this study, hydrogen production performances of groundnut shells in a circulating fluidized bed gasifier is evaluated by employing a previously developed and validated model. Basically, we simulate a circulating fluidized bed gasification system that is connected to a water-gas shift reactor, for hydrogen purification with the gasifier temperature of 1150 K. We find that the amount of hydrogen gas produced from circulating fluidized bed gasification of groundnut shells increases from 49.25 kmol to 68.83 kmol (per 1000 kg of raw groundnut shells) when the gasifier is integrated with water-gas shift reactor. We observe that it is possible to obtain a high yield of hydrogen gas from the gasification of groundnut shells. Therefore, we conclude that the groundnut shell is a remarkable feedstock for bioenergy.

Anahtar Kelimeler

Kaynakça

  1. International Energy Agency Report, 2017. www.iea.org/publications/freepublications/ (19 September2019).
  2. Deborah, P., Francesca, V. and Giuseppe, G. 2015. Analysis of the environmental impact of a biomass plant for the production of bioenergy. Renewable and Sustainable Energy Reviews, 51, 634-647.
  3. Eghtedaei, R., Mirhosseini, S. A., Esfahani, M. J., Foroughi, A. and Akbari, H. 2017. Co-gasification of biomass and municipal solid waste for hydrogen-rich gas production. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 39(14), 1491-1496.
  4. Xiang, X., Gong, G., Shi, Y., Cai, Y. and Wang, C. 2018. Thermodynamic modeling and analysis of a serial composite process for biomass and coal co-gasification. Renewable and Sustainable Energy Reviews, 82, 2768-2778.
  5. Mahapatra, S. and Dasappa, S. 2014. Influence of surface area to volume ratio of fuel particles on gasification process in a fixed bed. Energy for Sustainable Development, 19, 122-129.
  6. Panwar, N. L., Kothari, R. and Tyagi, V. V. 2012. Thermo chemical conversion of biomass – ecofriendly energy routes. Renewable and Sustainable Energy Reviews, 16(4), 1801-1816.
  7. Sansaniwal, S. K., Pal, K., Rosen, M. A. and Tyagi, S. K. 2017. Recent advances in the development of biomass gasification technology: A comprehensive review. Renewable and sustainable energy reviews, 72, 363-384.
  8. Saxena, R. C., Seal, D., Kumar, S. and Goyal, H. B. 2008. Thermo-chemical routes for hydrogen rich gas from biomass: a review. Renewable and Sustainable Energy Reviews, 12(7), 1909-1927.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

31 Mart 2021

Gönderilme Tarihi

4 Ekim 2020

Kabul Tarihi

31 Ocak 2021

Yayımlandığı Sayı

Yıl 2021 Cilt: 8 Sayı: 1

Kaynak Göster

APA
Lütfüoğlu, B. C., Pehlivan, E., Akyürek, Z., Akyüz, A. Ö., & Güngör, A. (2021). Hydrogen production from groundnut shell via circulating fluidized bed technology. International Journal of Energy Applications and Technologies, 8(1), 27-32. https://doi.org/10.31593/ijeat.804913
AMA
1.Lütfüoğlu BC, Pehlivan E, Akyürek Z, Akyüz AÖ, Güngör A. Hydrogen production from groundnut shell via circulating fluidized bed technology. International Journal of Energy Applications and Technologies. 2021;8(1):27-32. doi:10.31593/ijeat.804913
Chicago
Lütfüoğlu, Bekir Can, Esat Pehlivan, Zuhal Akyürek, Ali Özhan Akyüz, ve Afşin Güngör. 2021. “Hydrogen production from groundnut shell via circulating fluidized bed technology”. International Journal of Energy Applications and Technologies 8 (1): 27-32. https://doi.org/10.31593/ijeat.804913.
EndNote
Lütfüoğlu BC, Pehlivan E, Akyürek Z, Akyüz AÖ, Güngör A (01 Mart 2021) Hydrogen production from groundnut shell via circulating fluidized bed technology. International Journal of Energy Applications and Technologies 8 1 27–32.
IEEE
[1]B. C. Lütfüoğlu, E. Pehlivan, Z. Akyürek, A. Ö. Akyüz, ve A. Güngör, “Hydrogen production from groundnut shell via circulating fluidized bed technology”, International Journal of Energy Applications and Technologies, c. 8, sy 1, ss. 27–32, Mar. 2021, doi: 10.31593/ijeat.804913.
ISNAD
Lütfüoğlu, Bekir Can - Pehlivan, Esat - Akyürek, Zuhal - Akyüz, Ali Özhan - Güngör, Afşin. “Hydrogen production from groundnut shell via circulating fluidized bed technology”. International Journal of Energy Applications and Technologies 8/1 (01 Mart 2021): 27-32. https://doi.org/10.31593/ijeat.804913.
JAMA
1.Lütfüoğlu BC, Pehlivan E, Akyürek Z, Akyüz AÖ, Güngör A. Hydrogen production from groundnut shell via circulating fluidized bed technology. International Journal of Energy Applications and Technologies. 2021;8:27–32.
MLA
Lütfüoğlu, Bekir Can, vd. “Hydrogen production from groundnut shell via circulating fluidized bed technology”. International Journal of Energy Applications and Technologies, c. 8, sy 1, Mart 2021, ss. 27-32, doi:10.31593/ijeat.804913.
Vancouver
1.Bekir Can Lütfüoğlu, Esat Pehlivan, Zuhal Akyürek, Ali Özhan Akyüz, Afşin Güngör. Hydrogen production from groundnut shell via circulating fluidized bed technology. International Journal of Energy Applications and Technologies. 01 Mart 2021;8(1):27-32. doi:10.31593/ijeat.804913