Otro
A novel synthesis of perovskite bismuth ferrite nanoparticles
Registro en:
Processing and Application of Ceramics, v. 5, n. 3, p. 171-179, 2011.
1820-6131
3233942511496583
8161025003780724
1922357184842767
3573363486614904
Autor
Biasotto, Glenda
Simoes, Aexandre Zírpoli
Foschini, Cesar
Antônio, G. S.
Varela, Jorge A.
Zaghete, Maria Aparecida
Resumen
Abstract. Biochar is the solid by-product of biomass pyrolysis. It is a promising soil conditioner and can be a material with high aggregate economic value, since its performance can improve plant’s nutrient utilization and reduce the usage of conventional fertilizers. Biochar can be used in the formulation of new types of fertilizers as polymeric microbeads. These microbeads can be enriched with biochar and nutrients in its matrix to form fertilizers of slow release of nutrients. Thus, as a promising agricultural material, it is important to assess the environmental hazards caused by the implementation of these microbeads. In this context, seeds were sown in a soil-less Petri dish with microbeads produced with biochar from sugarcane enriched with or without phosphate. The seeds germination and its vitality were evaluated by the first germination count (FGC) and the germination speed index (GSI). The short-term effects showed that the microbeads, in general, assessed by the means of FGC, GSI and mass gain showed the best performance, suggesting that the environment created by these materials provided the best chemical and physical interaction with the embryonic axes.