Saleh Mayra A D, Padilha Pedro M, Hauptli Lucélia, Berto Dirlei A
Department of Animal Production, Lageado Farm, Faculty of Animal Science and Veterinary Medicine, UNESP - São Paulo State University, Botucatu Campus, 18618-000 Botucatu, São Paulo Brazil.
Department of Chemistry and Biochemistry, Institute of Biosciences, UNESP - São Paulo State University, Botucatu Campus, Rubião Junior District, 18618-970 Botucatu, São Paulo Brazil.
J Anim Sci Biotechnol. 2015 Aug 4;6(1):32. doi: 10.1186/s40104-015-0030-3. eCollection 2015.
A sample preparation method based on ultrasound assisted-extraction (UAE) of Ca, Mg and P from swine feed has been described. The experiment was performed to cover the variables influencing the sonication process and, the method validation using standard reference material. Final solutions obtained upon sonication were analyzed by flame atomic absorption spectrometry (for Ca and Mg) and by UV-vis spectrophotometry (for P). The best conditions for metal extraction were as follows: sample mass: 100 mg in 20 mL 0.10 mol/L HCl, a particle size: <60 μm, sonication time: 5 cycles of 10 s and ultrasound power: 102 W. The UAE method was applied in digestibility assays in different piglet feeds and their results showed that it is highly comparable (P > 0.05) to the other methods used for such purposes, as block digestion, and offered a Ca, Mg and P method of quantification limit of 10.6, 12.4 and 14 mg/kg, respectively. The major advantages of the UAE method compared to other methods are the high treatment rate, low reagent usage in the extracts and, it does not generate toxic residues that might negatively affect human health and the environment, accompanied by good precision and accuracy.
本文描述了一种基于超声辅助萃取(UAE)从猪饲料中提取钙、镁和磷的样品制备方法。进行该实验以涵盖影响超声处理过程的变量,以及使用标准参考物质进行方法验证。超声处理后得到的最终溶液通过火焰原子吸收光谱法(用于测定钙和镁)和紫外可见分光光度法(用于测定磷)进行分析。金属提取的最佳条件如下:样品质量:100毫克,置于20毫升0.10摩尔/升盐酸中,粒径:<60微米,超声处理时间:5个循环,每个循环10秒,超声功率:102瓦。UAE方法应用于不同仔猪饲料的消化率测定,结果表明,与用于此类目的的其他方法(如批量消化法)相比,该方法具有高度可比性(P>0.05),并且钙、镁和磷的定量限分别为10.6、12.4和14毫克/千克。与其他方法相比,UAE方法的主要优点是处理速度快、提取物中试剂用量低,并且不会产生可能对人类健康和环境产生负面影响的有毒残留物,同时具有良好的精密度和准确性。