Guía de compostaje para agricultores
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Aguilar-Paredes, A., Valdés, G., Araneda, N., Valdebenito, E., Hansen, F., & Nuti, M. (2023). Microbial community in the composting process and its positive impact on the soil biota in sustainable agriculture. Agronomy, 13(2), 542. https://doi.org/10.3390/agronomy13020542
Alokika, A., & Singh, B. (2022). Utilization of lignocellulosic plant residues for compost formation and its role in improving soil fertility. Pedosphere, 33(5), 700-716. https://doi.org/10.1016/j.pedsph.2022.11.008
Chang, R., Li, Y., Li, J., Chen, Q., Zhao, H., & Qi, Z. (2019). Influences of the thermophilic period on biodegradation and nitrogen loss in stimulated vegetable waste composting. Global Ecology and Conservation, 18, 00623. https://doi.org/10.1016/j.gecco.2019.e00623
Cucu, M. A., Gilardi, G., Pugliese, M., Matić, S., Gisi, U., Gullino, M. L., & Garibaldi, A. (2019). Influence of different biological control agents and compost on total and nitrification‐driven microbial communities at rhizosphere and soil level in a lettuce ‐ Fusarium oxysporum f. sp. lactucae pathosystem. Journal of Applied Microbiology, 126(3), 905-918. https://doi.org/10.1111/jam.14153
De Jin, R., Suh, J. W., Park, R. D., Kim, Y. W., Krishnan, H. B., & Kim, K. Y. (2005). Effect of chitin compost and broth on biological control of Meloidogyne incognita on tomato (Lycopersicon esculentum Mill.). Nematology, 7(1), 125-132. https://doi.org/10.1163/1568541054192171
El-Mahrouk, M. E.-S., & Dewir, Y. H. (2016). Physico-chemical properties of compost based waste-recycling of grape fruit as nursery growing medium. American Journal of Plant Sciences, 7(1), 48-54. https://doi.org/10.4236/ajps.2016.71005
Fialho, L. L., Da Silva, W. T. L., Milori, D. M. B. P., Simões, M. L., & Martin-Neto, L. (2010). Characterization of organic matter from composting of different residues by physicochemical and spectroscopic methods. Bioresource Technology, 101(6), 1927-1934. https://doi.org/10.1016/j.biortech.2009.10.039
Galindo Castro, L. A., Martínes Osorio, J. W., & Estrada Bonilla, G. Á. (2018). Compostaje enriquecido con fósforo como método de reaprovechamiento de los residuos orgánicos. Pro Sciences, 2(11), 7-15.https://doi.org/10.29018/issn.2588-1000vol2iss11.2018pp7-15
Lin, L., Xu, F., Ge, X., & Li, Y. (2019). Biological treatment of organic materials for energy and nutrients production -Anaerobic digestion and composting. Advances in Bioenergy, 4, 121-181. https://doi.org/10.1016/bs.aibe.2019.04.002
Liu, B., Gumpertz, M. L., Hu, S., & Ristaino, J. B. (2007). Long-term effects of organic and synthetic soil fertility amendments on soil microbial communities and the development of southern blight. Soil Biology and Biochemistry, 39(9), 2302-2316. https://doi.org/10.1016/j.soilbio.2007.04.001
Lopes, C. M., Silva, A. M. M., Estrada-Bonilla, G. A., Ferraz-Almeida, R., Vieira, J. L. V., Otto, R., et al. (2021). Improving the fertilizer value of sugarcane wastes through phosphate rock amendment and phosphate-solubilizing bacteria inoculation. J Clean Prod, 298, 12682. https://doi.org/10.1016/j.jclepro.2021.126821
Rastogi, M., Nandal, M., & Khosla, B. (2020). Microbes as vital additives for solid waste composting. Heliyon, 6(2), e03343. https://doi.org/10.1016/j.heliyon.2020.e03343
Salama, Y., Elamraoui, M., Mountadar, M., Chennaoui, M., El Amraoui, M., Mountadar, M., Doukkali, C., Jadida, E., & Mountadar, M. A. (2016). Review of compost produced from biological wastes: Sugarcane industry waste. International Journal of Food Science and Biotechnology, 1(1), 24-37. https://doi.org/10.11648/j.ijfsb.20160101.14
Zhang, T., Li, H., Yan, T., Shaheen, S. M., Niua, Y., Xie, S., Zhang, Y., Abdelrahman, H., Ali, E. F., Bolan, N. S., & Rinklebe, J. (2023). Organic matter stabilization and phosphorus activation during vegetable waste composting: Multivariate and multiscale investigation. Science of The Total Environment, 891, 164608. https://doi.org/10.1016/j.scitotenv.2023.164608
Zhang, Z., Yang, H., Wang, B., Chen, C., Zou, X., Cheng, T., & Li, J. (2023a). Aerobic co-composting of mature compost with cattle manure: Organic matter conversion and microbial community characterization. Bioresource Technology, 382, 129187. https://doi.org/10.1016/j.biortech.2023.129187
Zhang, Z., Yang, H., Wang, B., Chen, C., Zou, X., Cheng, T., & Li, J. (2023b). Aerobic co-composting of mature compost with cattle manure: Organic matter conversion and microbial community characterization. Bioresource Technology, 382, 129187. https://doi.org/10.1016/j.biortech.2023.129187


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