RESUMO -Objetivou-se com este trabalho avaliar o efeito de dietas com diferentes concentrações de fibra em detergente neutro oriunda da forragem (FDNf) sobre os parâmetros ruminais (pH e amônia) em cabras leiteiras. Foram utilizados cinco cabras não-lactantes fistuladas no rúmen arranjadas em delineamento quadrado latino 5 × 5, utilizando-se os níveis de FDNf (19, 27, 35, 42 Effect of levels of neutral detergent fiber derived from forage on microbial efficiency and digestive parameters in dairy goatsABSTRACT -The objective of this study was to evaluate the effect of diets with different neutral detergent fiber levels derived from the forage (NDFf), on ruminal parameters (pH and ammonia) in dairy goats. Five non-lactating goats were used, with fistulae in the rumen. The animals were arranged in a 5 × 5 Latin square using the NDFf levels (19, 27, 35, 42 and 18%), as independent variables. The increase in the NDFf levels of the rations reduced linearly the coefficients of apparent digestibility of DM, OM, EE and NSC and affected the NDF digestibility coefficient quadratically. The coefficients of ruminal digestibility of DM, OM and NDF increased linearly with the variation in the NDFf levels. However, reduction was observed in the coefficient of intestinal digestibility of DM, OM, CP and NDF. The increase in the NDFf contents and the collection times influenced the ruminal pH, but the ruminal ammonia only affected by the collection times. The efficiency of microbial protein synthesis, when expressed in g/kg TDN, was influenced by the increase in NDFf levels, was best at the 29.57% NDFf level.
Leaching and nitrous oxide (N2O) emissions can represent substantial nitrogen (N) losses from chemical fertilizers, and slow-release fertilizers (SRFs) can mitigate these effects. Thus, biochar can be an alternative from an agronomic and environmental point of view to synthesize SRFs due to its physicochemical characteristics. We investigated the effect of nitrogenous organomineral fertilizers (OMF-N) formulated based on activated biochar on N losses by leaching and N2O emissions. The OMF-N were developed from a dry mechanical pelleting process with different biochar and urea proportions (2:1; 1:2, and 1:4). Three experiments were conducted using four fertilizer sources (urea, OMF-N 2:1, OMF-N 1:2, and OMF-N 1:4): i. to analyze the kinetics of N release from OMF-N at times: 5, 15, 30, 60, 90, and 120 min; ii. for N2O emission analysis determined at 3, 6, 10, 14, 24, 44, 54, 64, 74, 84, 104, and 118 days after application to the soil; and iii. for a double factorial design that was adopted to analyze N leaching, consisting of the combination of applying 160 kg N ha−1 of fertilizers in PVC columns at different depths (20, 40, 60, and 80 cm) and analyzed at five times (1, 7, 14, 21, and 28 days). FTIR spectroscopic analysis, specific surface area, porosity, and surface morphology showed physicochemical interactions of N of the OMF with biochar; the N from the OMF interacts physically and chemically binds to the functional surfaces of biochar, delaying the dissolution flow. The OMF-N proved capable of retaining 48% to 60% more NH4+ and reduced the release of Ntotal from urea from 27% to 60%, as well as reduced N2O emissions from 47% to 66%. Although absolute CO2 emissions intensified with the application of OMF-N, its use provides C sequestration in the soil to due to the recalcitrant C of the biochar, which results in a positive input-output balance in the system. The NO3− concentration profiles revealed that the OMF-N application was able to reduce leaching in the soil to a depth of 80 cm. These studies enabled better understanding of the processes involved in the biochar:urea interaction and revealed that biochar can be used as an organic matrix in the synthesis of SRF.
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