Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4826
Title: Valorization of kiwi waste through composting
Authors: Fernandes, Paulo
Pinto, Rui
Correia, Cláudia
Mourão, Isabel
Moura, Luísa
Brito, Luís Miguel
Keywords: Bacteria
C/N ratio
Compost
Fungi
Phytotoxicity
Issue Date: Apr-2024
Citation: Fernandes, P., Pinto, R., Correia, C., Mourão, I., Moura, L., & Brito, L. M. (2024). Valorization of kiwi waste through composting. Environmental Technology, 45(28), 6121-6135. https://doi.org/10.1080/09593330.2024.2326797
Abstract: Kiwi waste from the calibration process is a major environmental problem of kiwi production due to landfill deposition. This work aims to contribute to the agronomic use of recycled kiwi waste through composting. With this objective, a composting experiment was carried out with kiwi fruit waste mixed with 5%, 10% and 20% (fresh weight) of wheat straw from bundles used to protect kiwifruit trunks from frost, as abulking agent to increase aeration, in the piles 5S, 10S and 20S, respectively. The highest temperatures for piles 5S and 10S were above 60°C, whereas the temperature did not reach 40°C in the pile with the highest straw content (20S) because the aeration increased heat loss in addition to increased C/N ratio of this pile. Also, the amount of organic matter mineralized decreased with increasing amount of straw because of the high C/N ratio of the straw. The highest total N (29.7 g kg−1) and the lowest C/N ratio (13) of the compost with 5% of straw is important from the agricultural point of view to promote N availability. In contrast, the high electrical conductivity (4.6 dS m−1) of this compost increases the risk of salt accumulation in the soil. Our results show that the compost with 10% straw, with high degree of maturation, absence of poor hygiene indicators as coliforms and pathogens as Salmonella sp., high organic matter content and rich in nutrients, together with the adequate compost pH and low electrical conductivity improves compost quality.
URI: http://hdl.handle.net/20.500.11960/4826
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