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Article

Sustained Phosphorus Removal by Calcareous Materials in Long-Term (Two Years) Column Experiment

by
Solvei Mundbjerg Jensen
1,2,3,*,
Helmer Søhoel
4,
Frances Helen Blaikie
4,5,
Carlos Alberto Arias
1,2 and
Hans Brix
1,2
1
Department of Biology, Aarhus University, Ole Worms Allé 1, Aarhus C, 8000 Aarhus, Denmark
2
Centre for Water Technology (WATEC), Aarhus University, Ny Munkegade 120, Aarhus C, 8000 Aarhus, Denmark
3
Sino-Danish Centre for Education and Research (SDC), Niels Jensens Vej 2, Aarhus C, 8000 Aarhus, Denmark
4
Coating and Polymer Technology, Danish Technological Institute (DTI), Kongsvang Allé 29, Aarhus C, 8000 Aarhus, Denmark
5
Blaikie Science Solutions, Invermay AgResearch Campus, Puddle Alley 176, Mosgiel 9053, New Zealand
*
Author to whom correspondence should be addressed.
Water 2022, 14(5), 682; https://doi.org/10.3390/w14050682
Submission received: 25 January 2022 / Revised: 14 February 2022 / Accepted: 18 February 2022 / Published: 22 February 2022
(This article belongs to the Section Wastewater Treatment and Reuse)

Abstract

(1) Phosphorus (P) removal has proven difficult in decentralized wastewater treatment systems, and external filters installed with a highly P sorbent material have been proposed to improve the P removal. In particular, calcium (Ca) rich materials have shown promising results. (2) Eight materials (five calcareous materials, one quartz sand, and two Sol–Gel coated calcareous materials) were tested in columns fed with P-spiked tap water for two years. The experiment was operated under four periods with increased P concentration from 3.3 to 21.5 mg P L−1, and with increased surface loading rate from 18 to 227 mm d−1. After termination, the element content was measured in four column height fractions. (3) Initially, all columns removed P effectively and the calcareous materials (CAT, CAT A, and CAT C) maintained an effective removal until termination, while increases in effluent P concentration were detected already after 7 weeks for SAN and after 80–90 weeks for OPO, PHO, CAL, and HYG. The highest P content for materials were measured for the bottom fraction closest to the inlet distribution. For most materials, we observed a good agreement between the maximum sorption capacity (Qmax) and the P content in the bottom fraction; however, a discrepancy was observed for CAL, CAT A, and CAT C. (4) In conclusion, the calcareous materials provided a consistent P removal for all 24 months. Additionally, the Sol–Gel coating had a minimal effect on the P removal capacity contrary to previous findings in batch experiments for the coated materials.
Keywords: phosphorus; filter; material; media; Sol–Gel coating; total P binding capacity; sorption; Langmuir; constructed wetlands; treatment wetlands phosphorus; filter; material; media; Sol–Gel coating; total P binding capacity; sorption; Langmuir; constructed wetlands; treatment wetlands
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MDPI and ACS Style

Jensen, S.M.; Søhoel, H.; Blaikie, F.H.; Arias, C.A.; Brix, H. Sustained Phosphorus Removal by Calcareous Materials in Long-Term (Two Years) Column Experiment. Water 2022, 14, 682. https://doi.org/10.3390/w14050682

AMA Style

Jensen SM, Søhoel H, Blaikie FH, Arias CA, Brix H. Sustained Phosphorus Removal by Calcareous Materials in Long-Term (Two Years) Column Experiment. Water. 2022; 14(5):682. https://doi.org/10.3390/w14050682

Chicago/Turabian Style

Jensen, Solvei Mundbjerg, Helmer Søhoel, Frances Helen Blaikie, Carlos Alberto Arias, and Hans Brix. 2022. "Sustained Phosphorus Removal by Calcareous Materials in Long-Term (Two Years) Column Experiment" Water 14, no. 5: 682. https://doi.org/10.3390/w14050682

APA Style

Jensen, S. M., Søhoel, H., Blaikie, F. H., Arias, C. A., & Brix, H. (2022). Sustained Phosphorus Removal by Calcareous Materials in Long-Term (Two Years) Column Experiment. Water, 14(5), 682. https://doi.org/10.3390/w14050682

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