Optimisation of On-Site Wastewater Treatment Efficiency and Recovery Based on Nutrient Mobility and Adsorption Kinetics Modelling Using Hydrus-2d Coupled with Phreeqc

Author:

Hamisi Rajabu,Renman Agnieszka,Renman Gunno,Wörman Anders,Thunvik Roger

Publisher

Elsevier BV

Reference43 articles.

1. Prediction of Phosphate Adsorption Amount, Capacity and Kinetics via Machine Learning: A Generally Physical-Based Process and Proposed Strategy of Using Descriptive Text Messages to Enrich Datasets;B Zhou;Chem. Eng. J,2024

2. Existing Evidence Related to Soil Retention of Phosphorus from On-Site Wastewater Treatment Systems in Boreal and Temperate Climate Zones: A Systematic Map;I Envall;Environ. Evid,2023

3. Long-Term Phosphorus Sorption and Leaching in Sand Filters for Onsite Treatment Systems;R Hamisi;Sci. Total Environ,2022

4. Runoff and Nutrient Losses during Winter Periods in Cold Climates-Requirements to Nutrient Simulation Models;J Deelstra;J. Environ. Monit,2009

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