Tang, C.; Godskesen, B.; Aktor, H.; Rijn, M.v.; Kristensen, J.B.; Rosshaug, P.S.; Albrechtsen, H.-J.; Rygaard, M.
Procedure for Calculating the Calcium Carbonate Precipitation Potential (CCPP) in Drinking Water Supply: Importance of Temperature, Ionic Species and Open/Closed System. Water 2021, 13, 42.
https://doi.org/10.3390/w13010042
AMA Style
Tang C, Godskesen B, Aktor H, Rijn Mv, Kristensen JB, Rosshaug PS, Albrechtsen H-J, Rygaard M.
Procedure for Calculating the Calcium Carbonate Precipitation Potential (CCPP) in Drinking Water Supply: Importance of Temperature, Ionic Species and Open/Closed System. Water. 2021; 13(1):42.
https://doi.org/10.3390/w13010042
Chicago/Turabian Style
Tang, Camilla, Berit Godskesen, Henrik Aktor, Marlies van Rijn, John B. Kristensen, Per S. Rosshaug, Hans-Jørgen Albrechtsen, and Martin Rygaard.
2021. "Procedure for Calculating the Calcium Carbonate Precipitation Potential (CCPP) in Drinking Water Supply: Importance of Temperature, Ionic Species and Open/Closed System" Water 13, no. 1: 42.
https://doi.org/10.3390/w13010042
APA Style
Tang, C., Godskesen, B., Aktor, H., Rijn, M. v., Kristensen, J. B., Rosshaug, P. S., Albrechtsen, H.-J., & Rygaard, M.
(2021). Procedure for Calculating the Calcium Carbonate Precipitation Potential (CCPP) in Drinking Water Supply: Importance of Temperature, Ionic Species and Open/Closed System. Water, 13(1), 42.
https://doi.org/10.3390/w13010042