Atıf Formatları
A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

P. S. Yapicioglu Et Al. , "A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis," International Journal of Global Warming , vol.35, no.2-4, pp.281-293, 2025

Yapicioglu, P. S. Et Al. 2025. A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis. International Journal of Global Warming , vol.35, no.2-4 , 281-293.

Yapicioglu, P. S., Yesilnacar, M. İ., & BÜYÜKKAMACI, N., (2025). A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis. International Journal of Global Warming , vol.35, no.2-4, 281-293.

Yapicioglu, Pelin, Mehmet İrfan Yesilnacar, And NURDAN BÜYÜKKAMACI. "A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis," International Journal of Global Warming , vol.35, no.2-4, 281-293, 2025

Yapicioglu, Pelin S. Et Al. "A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis." International Journal of Global Warming , vol.35, no.2-4, pp.281-293, 2025

Yapicioglu, P. S. Yesilnacar, M. İ. And BÜYÜKKAMACI, N. (2025) . "A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis." International Journal of Global Warming , vol.35, no.2-4, pp.281-293.

@article{article, author={Pelin Soyertas Yapicioglu Et Al. }, title={A new approach for reduction of greenhouse gas emissions from groundwater treatment: biochar derived by solar pyrolysis}, journal={International Journal of Global Warming}, year=2025, pages={281-293} }