Author
Listed:
- Miłosz Zardzewiały
(Department of Food and Agriculture Production Engineering, University of Rzeszow, St. Zelwerowicza 4, 35-601 Rzeszów, Poland)
- Katarzyna Szopka
(Institute of Soil Science, Plant Nutrition and Environmental Protection, Wrocław University of Environmental and Life Sciences, St. Norwida 25, 50-375 Wrocław, Poland)
- Dariusz Gruszka
(Institute of Soil Science, Plant Nutrition and Environmental Protection, Wrocław University of Environmental and Life Sciences, St. Norwida 25, 50-375 Wrocław, Poland)
- Tomasz R. Sekutowski
(Institute of Soil Science and Plant Cultivation–State Research Institute, St. Czartoryskich 8, 24-100 Puławy, Poland)
- Marcin Bajcar
(Department of Bioenergetics, Food Analysis and Microbiology, Institute of Food Technology and Nutrition, College of Natural Sciences, University of Rzeszow, St. 2D Cwiklinskiej, 35-601 Rzeszów, Poland)
- Bogdan Saletnik
(Department of Bioenergetics, Food Analysis and Microbiology, Institute of Food Technology and Nutrition, College of Natural Sciences, University of Rzeszow, St. 2D Cwiklinskiej, 35-601 Rzeszów, Poland)
- Józef Gorzelany
(Department of Food and Agriculture Production Engineering, University of Rzeszow, St. Zelwerowicza 4, 35-601 Rzeszów, Poland)
Abstract
A very important issue in urban agglomerations is the proper management of green waste while reducing its negative impact on the environment. One potential solution is the utilization of green biomass—originating from the maintenance of parks, squares, and home gardens—for the production of compost and compost-based pellets as organic fertilizers. The aim of this study was to produce compost-based pellets intended for fertilization purposes from compost derived from green waste and conifer sawdust, and to analyze their mechanical and chemical properties. Ten variants of pellets with different compost-to-sawdust ratios were evaluated. Compost-based pellets exhibited the highest initial mechanical strength; however, their resistance to external loads decreased over time, whereas the best long-term stability was observed in pellets containing 50% sawdust. The seasoning process influenced the stabilization or improvement of the mechanical properties of certain mixtures. Chemical analyses showed that compost-based pellets contained the highest concentrations of nutrients (N, P, K), while increasing the proportion of sawdust reduced their fertilizing value. No exceedances of permissible heavy metal limits were detected. The results confirm the suitability of compost-based pellets made from green biomass as a sustainable alternative to mineral fertilizers, supporting the principles of the circular economy.
Suggested Citation
Miłosz Zardzewiały & Katarzyna Szopka & Dariusz Gruszka & Tomasz R. Sekutowski & Marcin Bajcar & Bogdan Saletnik & Józef Gorzelany, 2025.
"Method of Management and Determination of Quality of Waste from Green Areas for the Production of Pellets Used for Fertilization Purposes,"
Sustainability, MDPI, vol. 17(22), pages 1-15, November.
Handle:
RePEc:gam:jsusta:v:17:y:2025:i:22:p:10250-:d:1795740
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