This study examined the impact of different bio-based and biodegradable mulching films (TSCs) and soil conditioners (SCs) on plant productivity and fruit quality in a tomato cultivation trial under non-irrigated conditions. In particular, different TSCs were developed based on xanthan gum (XG) or gelatine (GEL) mixed with wood fibres (WFs), while SCs were produced using XG and cellulose fibres. A total of 72 plants of Solanum lycopersicum var. cerasiforme were planted. The yield and number of fruits were measured at harvest, followed by physico-chemical analyses, while plant root systems were examined at the end of the experimental period. The results highlighted that the GEL-based TSCs improved the total fruit yield compared to the control (+50% on average). Furthermore, improved fruit yield was also observed for the XG-based SCs when applied in the soil with a higher organic content. Overall, no significant differences in fruit quality (i.e., Brix degree, carotenoids, lutein and potassium content) and plant root system parameters were found for all the treatments applied. At the end of the test, it was noticed that GEL-based films substantially retained their consistency due to their greater density and thickness, while XG-based films were more disintegrated, indicating higher biodegradation

Sorze, A.; Valentini, F.; Nardin, T.; Larcher, R.; Bösing, J.; Hirschmüller, S.; Dorigato, A.; Pegoretti, A. (2025-10-11). Bio-based mulching films and soil conditioners for non-irrigated tomato cultivation: toward plastic-free and water-efficient crop production. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 26 (20): 9894. doi: 10.3390/ijms26209894 handle: https://hdl.handle.net/10449/93177

Bio-based mulching films and soil conditioners for non-irrigated tomato cultivation: toward plastic-free and water-efficient crop production

Nardin, T.;Larcher, R.;
2025-10-11

Abstract

This study examined the impact of different bio-based and biodegradable mulching films (TSCs) and soil conditioners (SCs) on plant productivity and fruit quality in a tomato cultivation trial under non-irrigated conditions. In particular, different TSCs were developed based on xanthan gum (XG) or gelatine (GEL) mixed with wood fibres (WFs), while SCs were produced using XG and cellulose fibres. A total of 72 plants of Solanum lycopersicum var. cerasiforme were planted. The yield and number of fruits were measured at harvest, followed by physico-chemical analyses, while plant root systems were examined at the end of the experimental period. The results highlighted that the GEL-based TSCs improved the total fruit yield compared to the control (+50% on average). Furthermore, improved fruit yield was also observed for the XG-based SCs when applied in the soil with a higher organic content. Overall, no significant differences in fruit quality (i.e., Brix degree, carotenoids, lutein and potassium content) and plant root system parameters were found for all the treatments applied. At the end of the test, it was noticed that GEL-based films substantially retained their consistency due to their greater density and thickness, while XG-based films were more disintegrated, indicating higher biodegradation
Degradable polymers
Gelatine
Mulch
Soil conditioner
Sustainability
Tomato
Topsoil cover
Xanthan
Settore AGRI-06/B - Chimica agraria
11-ott-2025
Sorze, A.; Valentini, F.; Nardin, T.; Larcher, R.; Bösing, J.; Hirschmüller, S.; Dorigato, A.; Pegoretti, A. (2025-10-11). Bio-based mulching films and soil conditioners for non-irrigated tomato cultivation: toward plastic-free and water-efficient crop production. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 26 (20): 9894. doi: 10.3390/ijms26209894 handle: https://hdl.handle.net/10449/93177
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10449/93177
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