Municipal waste compost was evaluated under open field conditions for replacing synthetic fertilizers in a vegetable three-year succession. Three compost rates, 45 t ha–1, 30 t ha–1 and 15 t ha–1 (dry matter), and compost at 15 t ha–1 combined with 25%, and 50% of the full synthetic nitrogen rate, were compared to full and none synthetic nitrogen fertilizations. Crop succession was: tomato followed by endive in the first year; eggplant and, then, broccoli in the second year; tomato and, then, endive/broccoli, in the third year. The application of compost at a dose of at least 30 t ha–1 or at 15 t ha–1 with the addition of 25% of the full synthetic nitrogen rate, in Spring-Summer cycle, sustained growth and yield at levels comparable with those of synthetic nitrogen fertilization. However, only a very poor residual effect of the compost soil treatment on the yield of Autumn-Winter crops, was observed. Monitoring of nitrate content into the soil during cropping sea-sons, a reduction of the risk of groundwater pollution was dis-played due to nitrates released by compost, respect to synthetic nitrogen fertilizer. The cumulative effects of compost application on soil properties were detected at the end of the field trials, reg-istering changes in chemical parameters analysed, except for phosphorus and boron.

Municipal organic waste compost replaces mineral fertilization in the horticultural cropping systems, reducing the pollution risk / Zaccardelli, M.; Pane, C.; Di Mola, I.; Ronga, D.; Mori, M.. - In: ITALIAN JOURNAL OF AGRONOMY. - ISSN 2039-6805. - 16:2(2021). [10.4081/ija.2021.1756]

Municipal organic waste compost replaces mineral fertilization in the horticultural cropping systems, reducing the pollution risk

Di Mola I.;Mori M.
2021

Abstract

Municipal waste compost was evaluated under open field conditions for replacing synthetic fertilizers in a vegetable three-year succession. Three compost rates, 45 t ha–1, 30 t ha–1 and 15 t ha–1 (dry matter), and compost at 15 t ha–1 combined with 25%, and 50% of the full synthetic nitrogen rate, were compared to full and none synthetic nitrogen fertilizations. Crop succession was: tomato followed by endive in the first year; eggplant and, then, broccoli in the second year; tomato and, then, endive/broccoli, in the third year. The application of compost at a dose of at least 30 t ha–1 or at 15 t ha–1 with the addition of 25% of the full synthetic nitrogen rate, in Spring-Summer cycle, sustained growth and yield at levels comparable with those of synthetic nitrogen fertilization. However, only a very poor residual effect of the compost soil treatment on the yield of Autumn-Winter crops, was observed. Monitoring of nitrate content into the soil during cropping sea-sons, a reduction of the risk of groundwater pollution was dis-played due to nitrates released by compost, respect to synthetic nitrogen fertilizer. The cumulative effects of compost application on soil properties were detected at the end of the field trials, reg-istering changes in chemical parameters analysed, except for phosphorus and boron.
2021
Municipal organic waste compost replaces mineral fertilization in the horticultural cropping systems, reducing the pollution risk / Zaccardelli, M.; Pane, C.; Di Mola, I.; Ronga, D.; Mori, M.. - In: ITALIAN JOURNAL OF AGRONOMY. - ISSN 2039-6805. - 16:2(2021). [10.4081/ija.2021.1756]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/909035
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