Toth, Andras Jozsef, Haaz, Eniko, Szilagyi, Botond, Nagy, Tibor, Tarjani, Ariella Janka, Fozer, Daniel, Andre, Anita, Valentinyi, Nora, Solti, Szabolcs and Mizsey, Peter. "COD reduction of process wastewater with vacuum evaporation"
Waste Treatment and Recovery, vol. 3, no. 1, 2018, pp. 1-7.
https://doi.org/10.1515/wtr-2018-0001
Toth, A., Haaz, E., Szilagyi, B., Nagy, T., Tarjani, A., Fozer, D., Andre, A., Valentinyi, N., Solti, S. & Mizsey, P. (2018). COD reduction of process wastewater with vacuum evaporation.
Waste Treatment and Recovery,
3(1), 1-7.
https://doi.org/10.1515/wtr-2018-0001
Toth, A., Haaz, E., Szilagyi, B., Nagy, T., Tarjani, A., Fozer, D., Andre, A., Valentinyi, N., Solti, S. and Mizsey, P. (2018) COD reduction of process wastewater with vacuum evaporation. Waste Treatment and Recovery, Vol. 3 (Issue 1), pp. 1-7.
https://doi.org/10.1515/wtr-2018-0001
Toth, Andras Jozsef, Haaz, Eniko, Szilagyi, Botond, Nagy, Tibor, Tarjani, Ariella Janka, Fozer, Daniel, Andre, Anita, Valentinyi, Nora, Solti, Szabolcs and Mizsey, Peter. "COD reduction of process wastewater with vacuum evaporation"
Waste Treatment and Recovery 3, no. 1 (2018): 1-7.
https://doi.org/10.1515/wtr-2018-0001
Toth A, Haaz E, Szilagyi B, Nagy T, Tarjani A, Fozer D, Andre A, Valentinyi N, Solti S, Mizsey P. COD reduction of process wastewater with vacuum evaporation.
Waste Treatment and Recovery. 2018;3(1): 1-7.
https://doi.org/10.1515/wtr-2018-0001
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