Performance of modified first-stage French Vertical Flow Constructed Wetlands under extreme operational conditions

Author:

Arévalo-Durazno María Belén1ORCID,García Zumalacarregui Jorge Alejandro23ORCID,Ho Long4,Narváez Andrea2,Alvarado Andrés25ORCID

Affiliation:

1. a Facultad de Ciencia y Tecnología, Universidad del Azuay, Av. 24 de Mayo 7-77 y Hernán Malo, Cuenca, Ecuador

2. b Departamento de Recursos Hídricos y Ciencias Ambientales, Universidad de Cuenca, Av. Víctor Albornoz y Calle de los Cerezos, Cuenca, Ecuador

3. c Facultad de Ciencias Agropecuarias, Universidad de Cuenca, Av. 12 de Octubre y Diego de Tapia, Cuenca, Ecuador

4. d Department of Animal Sciences and Aquatic Ecology, Ghent University, Coupure Links 653, Ghent, Belgium

5. e Facultad de Ingeniería, Universidad de Cuenca, Av. Víctor Albornoz y Calle de los Cerezos, Cuenca, Ecuador

Abstract

Abstract Operation conditions considerably affect the removal efficiency of wastewater treatment systems, and yet we still lack data on how these systems function under extreme dilution rates and climatic conditions at high altitudes. Here, we applied two modified First-Stage French Vertical Flow Constructed Wetlands (FS-FVFCWs) for sewage treatment in Northern Tropical Andes. Specifically, within 18 months, we conducted a pilot-scale experiment at two hydraulic loading rates (HLRs) of 0.94 and 0.56 m d−1, representing 2.5 and 1.5 times the recommended design values, with two different feeding/resting periods to investigate the impact of HLRs and operational strategy on system performance. We found that chemical oxygen demand (COD) and total suspended solids (TSS) removal was satisfactory, with average values of 53 ± 18 and 69 ± 16%, respectively. Moreover, reducing HLRs resulted in higher removal efficiency for COD, from 46 ± 15 to 64 ± 15%, but had no impact on TSS removal, with 3 days of feeding and 6 days of resting. For an equal time of feeding and resting, COD and TSS removals were not affected by the modified HLR. These findings suggest that high HLRs can be applied to FS-FVFCW without compromising the system operation and obtaining satisfactory results, leading to opportunities to reduce areas and costs.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference28 articles.

1. Influence of hydraulic loading rate and recirculation on oxygen transfer in a vertical flow constructed wetland;Science of the Total Environment,2019

2. Treatment wetlands,2017

3. A critical review of wastewater quality variation and in-sewer processes during conveyance in sewer systems;Water Research,2023

4. Performance of the first stage of the French system of vertical flow constructed wetlands with only two units in parallel: Influence of pulse time and instantaneous hydraulic loading rate;Water Science and Technology,2018

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