首页> 外文期刊>Journal of dairy science >Influence of ensiling temperature, simulated rainfall, and delayed sealing on fermentation characteristics and aerobic stability of corn silage.
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Influence of ensiling temperature, simulated rainfall, and delayed sealing on fermentation characteristics and aerobic stability of corn silage.

机译:青贮温度,模拟降雨和封闭时间对玉米青贮饲料发酵特性和有氧稳定性的影响。

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The aim of this study was to determine how delayed silo sealing, high ensiling temperatures, and rainfall at harvest affect the fermentation and aerobic stability of corn silage. One-half of each of 4 replicated, 6x1.5 m plots of a corn hybrid was harvested at 35% dry matter (Dry), and each of the other halves was harvested after they were sprinkled with sufficient water to simulate 4 mm of rainfall (Wet). Six representative (2 kg) subsamples were taken from the Wet and Dry forage piles and ensiled immediately (Prompt). Three hours later, 6 additional representative (2 kg) samples were taken from each pile and ensiled (Delay). Half of the bags from each moisture x sealing time treatment combination were stored for 82 d in a 40 degrees C incubator (Hot) and the other half were stored in a 20 degrees C air-conditioned room (Cool). A 2 (moisture treatments) x 2 (sealing times) x 2 (ensiling temperatures) factorial design with 3 replicates per treatment was used for the study. Wetting the corn silage increased concentrations of NH3-N, ethanol, and acetic acid. Ensiling at 40 instead of 20 degrees C increased pH, in vitro digestibility, and concentrations of NH3-N, residual water-soluble carbohydrates and acid detergent insoluble crude protein. The higher ensiling temperature also reduced concentrations of neutral and acid detergent fiber and lactic and acetic acid. Delayed sealing reduced concentrations of NH3-N and total volatile fatty acids. Wetting, high temperature ensiling, and delayed sealing each reduced yeast counts slightly, and marginally (8 h) increased aerobic stability. Hot-Wet-Delay silages were more stable than other silages but had the lowest lactic to acetic acid ratio, and total volatile fatty acid concentration. This study indicates that the fermentation of corn silage is adversely affected by wet conditions at harvest and high ensiling temperatures, whereas delayed silo sealing for 3 h caused no adverse effects..
机译:这项研究的目的是确定筒仓密封延迟,青贮温度高和收获时的降雨如何影响玉米青贮饲料的发酵和有氧稳定性。在35%干物质(干)下收获4个重复的6x1.5 m玉米杂交地中的一半,其余两半撒上足够的水以模拟4毫米的降雨后收获(湿)。从湿和干饲料堆中采集了六个代表性样品(2千克),并立即进行了青贮(提示)。三个小时后,从每堆样品中再采集6个代表性样品(2千克)并进行青贮(延迟)。来自每种水分x密封时间处理组合的袋子的一半在40摄氏度的恒温箱(Hot)中保存82 d,另一半在20摄氏度的空调室(Cool)中保存。本研究使用2(水分处理)×2(密封时间)×2(封口温度)析因设计,每个处理重复3次。润湿玉米青贮饲料可增加NH3-N,乙醇和乙酸的浓度。在40而不是20摄氏度下封存会提高pH值,体外消化率和NH3-N的浓度,残留的水溶性碳水化合物和酸性洗涤剂不溶的粗蛋白。较高的包皮温度也降低了中性和酸性洗涤剂纤维以及乳酸和乙酸的浓度。延迟密封会降低NH3-N和总挥发性脂肪酸的浓度。湿润,高温蒸煮和延迟密封每个都会使酵母数量略有减少,并且略微增加(8小时)有氧稳定性。热湿延迟青贮饲料比其他青贮饲料更稳定,但乳酸与乙酸的比例最低,总挥发性脂肪酸浓度也最低。这项研究表明,玉米青贮饲料的发酵受到收获时潮湿条件和较高的青贮温度的不利影响,而延迟贮仓封闭3 h则没有造成不利影响。

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