Palamarchuk, I.; Priss, O.; Zozulyak, O.; Kiurcheva, L.; Vasylenko, O.; Dyadyura, K.; Romanowska-Duda, Z.; Obraniak, A.; Szufa, S.; Hutsol, T.
Hybrid Technology of Beet Pulp Dewatering with Process Intensification in a Convection Dryer as an Element of Sustainable Processing of Agro-Industrial Waste into Bioenergy. Sustainability 2025, 17, 10327.
https://doi.org/10.3390/su172210327
AMA Style
Palamarchuk I, Priss O, Zozulyak O, Kiurcheva L, Vasylenko O, Dyadyura K, Romanowska-Duda Z, Obraniak A, Szufa S, Hutsol T.
Hybrid Technology of Beet Pulp Dewatering with Process Intensification in a Convection Dryer as an Element of Sustainable Processing of Agro-Industrial Waste into Bioenergy. Sustainability. 2025; 17(22):10327.
https://doi.org/10.3390/su172210327
Chicago/Turabian Style
Palamarchuk, Igor, Olesia Priss, Oksana Zozulyak, Liudmyla Kiurcheva, Oksana Vasylenko, Konstiantyn Dyadyura, Zdzislawa Romanowska-Duda, Andrzej Obraniak, Szymon Szufa, and Taras Hutsol.
2025. "Hybrid Technology of Beet Pulp Dewatering with Process Intensification in a Convection Dryer as an Element of Sustainable Processing of Agro-Industrial Waste into Bioenergy" Sustainability 17, no. 22: 10327.
https://doi.org/10.3390/su172210327
APA Style
Palamarchuk, I., Priss, O., Zozulyak, O., Kiurcheva, L., Vasylenko, O., Dyadyura, K., Romanowska-Duda, Z., Obraniak, A., Szufa, S., & Hutsol, T.
(2025). Hybrid Technology of Beet Pulp Dewatering with Process Intensification in a Convection Dryer as an Element of Sustainable Processing of Agro-Industrial Waste into Bioenergy. Sustainability, 17(22), 10327.
https://doi.org/10.3390/su172210327