Herzog, S.P.; Eisenstein, W.A.; Halpin, B.N.; Portmann, A.C.; Fitzgerald, N.J.M.; Ward, A.S.; Higgins, C.P.; McCray, J.E.
Co-Design of Engineered Hyporheic Zones to Improve In-Stream Stormwater Treatment and Facilitate Regulatory Approval. Water 2019, 11, 2543.
https://doi.org/10.3390/w11122543
AMA Style
Herzog SP, Eisenstein WA, Halpin BN, Portmann AC, Fitzgerald NJM, Ward AS, Higgins CP, McCray JE.
Co-Design of Engineered Hyporheic Zones to Improve In-Stream Stormwater Treatment and Facilitate Regulatory Approval. Water. 2019; 11(12):2543.
https://doi.org/10.3390/w11122543
Chicago/Turabian Style
Herzog, Skuyler P., William A. Eisenstein, Brittnee N. Halpin, Andrea C. Portmann, Nicole J. M. Fitzgerald, Adam S. Ward, Christopher P. Higgins, and John E. McCray.
2019. "Co-Design of Engineered Hyporheic Zones to Improve In-Stream Stormwater Treatment and Facilitate Regulatory Approval" Water 11, no. 12: 2543.
https://doi.org/10.3390/w11122543
APA Style
Herzog, S. P., Eisenstein, W. A., Halpin, B. N., Portmann, A. C., Fitzgerald, N. J. M., Ward, A. S., Higgins, C. P., & McCray, J. E.
(2019). Co-Design of Engineered Hyporheic Zones to Improve In-Stream Stormwater Treatment and Facilitate Regulatory Approval. Water, 11(12), 2543.
https://doi.org/10.3390/w11122543