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Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations
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A. B. ÖZTÜRK Et Al. , "Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations," Waste Management , vol.203, 2025

ÖZTÜRK, A. B. Et Al. 2025. Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations. Waste Management , vol.203 .

ÖZTÜRK, A. B., Kourilova, X., Buchtikova, I., & Obruca, S., (2025). Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations. Waste Management , vol.203.

ÖZTÜRK, Abdullah Et Al. "Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations," Waste Management , vol.203, 2025

ÖZTÜRK, Abdullah B. Et Al. "Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations." Waste Management , vol.203, 2025

ÖZTÜRK, A. B. Et Al. (2025) . "Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations." Waste Management , vol.203.

@article{article, author={Abdullah Bilal ÖZTÜRK Et Al. }, title={Techno-economic assessment of polyhydroxyalkanoates production from lignocellulosic biomass employing halophilic and thermophilic microbial platform: Effect of fermentation conditions and downstream operations}, journal={Waste Management}, year=2025}