Solid Removal across the Bed Depth in Media Filters for Drip Irrigation Systems

Author:

Duran-Ros Miquel1ORCID,Pujol Joan1ORCID,Pujol Toni2ORCID,Cufí Sílvia1ORCID,Arbat Gerard1ORCID,Ramírez de Cartagena Francisco1ORCID,Puig-Bargués Jaume1ORCID

Affiliation:

1. Department of Chemical and Agricultural Engineering and Technology, University of Girona, C/Maria Aurèlia Capmany 61, 17003 Girona, Catalonia, Spain

2. Department of Mechanical Engineering and Industrial Construction, University of Girona, C/Universitat de Girona 4, 17003 Girona, Catalonia, Spain

Abstract

Pressurized sand media filters are commonly used in drip irrigation systems to prevent emitter clogging. However, the performance of these filters may be improved with more information about the retention of solids at different bed depths under different filter operation conditions and irrigation water sources. In this study, experiments in a scaled sand media filter were conducted to clog the filter with two different filtration velocities (30 and 60 m h−1) and two-particle types (inorganic from A4 coarse sand dust and organic from a reclaimed effluent). The suspended solids retained in slices of 5 mm (in the first 20 mm of the bed) and 20 mm (from 20 to 200 mm depth) thick were determined following the van Staden and Haarhoff (2011) procedure. The solids retained in each slice per mass of media were significantly (p < 0.05) affected by the interaction between the filtration velocity, the bed depth, and the particle type. The solids retained in the first 5 mm of the bed were significantly higher than at other depths. Moreover, inorganic solids were retained more in upper slices than organic ones. Therefore, media depths may be adjusted depending on the irrigation water source to optimize media use.

Funder

Spanish Research Agency and the European Regional Development Fund

Publisher

MDPI AG

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference40 articles.

1. Food and Agriculture Organization of the United Nations (2021). The State of the World’s Land and Water Resources for Food and Agriculture—Systems at Breaking Point. Synthesis Report 2021, FAO.

2. Efficient Water and Energy Use in Irrigation Modernization: Lessons from Spanish Case Studies;Tarjuelo;Agric. Water Manag.,2015

3. Lamm, F.R., Ayars, J.E., and Nakayama, F.S. (2007). Microirrigation for Crop Production. Design, Operation and Management, Elsevier.

4. Lamm, F.R., Ayars, J.E., and Nakayama, F.S. (2007). Microirrigation for Crop Production. Design, Operation and Management, Elsevier.

5. International Commission on Irrigation & Drainage (2022, December 21). Annual Report 2021–2022. Available online: https://icid-ciid.org/icid_data_web/ar_2021.pdf.

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