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Enzyme complex supplementation in different nutrient levels diets on pigs feces excretion and anaerobic digestion

机译:不同营养水平日粮中添加酶复合物对猪粪便的排泄和厌氧消化

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This research aimed to evaluate enzyme supplementation in diets with different nutritional levels for pigs in their feces excretion and anaerobic digestion. Fifty four gilts were placed on diets formulated to achieve 100 or 95 or 90 % of a pig's nutrient requirements, with the addition of an enzyme complex containing amylase, ?2-glucanase, cellulase, pectinase, xylanase, protease and phytase (diets 100E, 95E and 90E) or without the enzymes (diets 100, 95 and 90). The trial was divided into three periods (1, 1-2 and 1-3) based on the animal weight. The enzyme complex reduced (p < 0.05) excretions per period and per unit of weight gain (residue coefficients) of organic matter (OM) in Period 1, of N, Ca, Zn and Na in Period 1-2, and of Na excretions and residue coefficients in Period 1-3. Animals fed diet 95E had lower excretions (p < 0.05) of dry (DM), organic and mineral matters, N, Ca, Fe, Mn and Cu, and lower residue coefficients (p < 0.05) of DM, OM, P, Fe, Mn and Cu compared with the animals fed diet 95, in Period 1-3. Numerically, the enzyme complex improved biogas and methane production potentials in anaerobic digestion of the feces. The use of an enzyme complex in a diet formulated to provide 95 % of the gilts' nutrient requirements reduced fecal excretion and positively affected the anaerobic digestion of feces. These data show that pig nutrition and feeding are important tools for reducing the potential environmental impact of pig production.
机译:这项研究旨在评估猪排泄和厌氧消化中不同营养水平的日粮中添加酶的能力。在配置成能满足猪营养需求100%或95%或90%的日粮中添加五十只后备母猪,并添加含有淀粉酶,β2-葡聚糖酶,纤维素酶,果胶酶,木聚糖酶,蛋白酶和植酸酶的酶复合物(饮食100E, 95E和90E)或不添加酶(饮食100、95和90)。根据动物的体重,该试验分为三个时期(1、2、3和3)。酶复合物可减少(p <0.05)每个时期的排泄物,以及每个时期的有机物(OM)在1-2期间的N,Ca,Zn和Na和1-2排泄物中每单位重量增加(残留系数)的有机物(OM)。周期1-3中的残差系数。饲喂95E饲料的动物的干(DM),有机和矿物质,N,Ca,Fe,Mn和Cu的排泄量较低(p <0.05),而DM,OM,P,Fe的残留系数较低(p <0.05)在1-3期,与饲喂95号饲料的动物相比,其Mn和Cu含量更高。在数值上,酶复合物改善了粪便厌氧消化中沼气和甲烷的产生潜力。日粮中使用酶复合物可满足小母猪95%的营养需求,可减少粪便排泄,并积极影响粪便的厌氧消化。这些数据表明,猪的营养和饲喂是减少猪生产对环境潜在影响的重要工具。

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