Atıf Formatları
Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

A. ÇAĞLAK Et Al. , "Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects," Process Safety and Environmental Protection , vol.201, 2025

ÇAĞLAK, A. Et Al. 2025. Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects. Process Safety and Environmental Protection , vol.201 .

ÇAĞLAK, A., Kurtoglu Akkaya, G., & SARI ERKAN, H., (2025). Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects. Process Safety and Environmental Protection , vol.201.

ÇAĞLAK, Abdulkadir, Gulizar Kurtoglu Akkaya, And Hanife SARI ERKAN. "Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects," Process Safety and Environmental Protection , vol.201, 2025

ÇAĞLAK, Abdulkadir Et Al. "Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects." Process Safety and Environmental Protection , vol.201, 2025

ÇAĞLAK, A. Kurtoglu Akkaya, G. And SARI ERKAN, H. (2025) . "Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects." Process Safety and Environmental Protection , vol.201.

@article{article, author={Abdulkadir ÇAĞLAK Et Al. }, title={Electrocoagulation as a stand-alone and hybrid strategy for medium-density fibreboard wastewater treatment: Performance, energy consumption and radical oxidant effects}, journal={Process Safety and Environmental Protection}, year=2025}