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通过使用对氧气具有高阻隔性的下一代阻隔膜来提高农场青贮窖顶层玉米青贮饲料的质量。

Improving corn silage quality in the top layer of farm bunker silos through the use of a next-generation barrier film with high impermeability to oxygen.

作者信息

Borreani G, Tabacco E

机构信息

Department of Agricultural, Forest and Food Sciences (DISAFA), University of Torino, Via L. da Vinci 44, 10095 Grugliasco, Italy.

Department of Agricultural, Forest and Food Sciences (DISAFA), University of Torino, Via L. da Vinci 44, 10095 Grugliasco, Italy.

出版信息

J Dairy Sci. 2014;97(4):2415-26. doi: 10.3168/jds.2013-7632. Epub 2014 Feb 22.

Abstract

This study examined the effect on the fermentation, chemical, and microbiological quality of corn silage covered with a new-generation high oxygen barrier film (HOB) made with a special grade of ethylene-vinyl alcohol (EVOH) compared with a standard polyethylene film (PE). Two bunkers (farms 1 and 2) were divided into 2 parts lengthwise so that half of the silo would be covered with PE film and the other with HOB film. Plastic net bags with fresh chopped corn were buried in the upper layer (close to and far from the wall) and in the central part of the bunkers. During spring-summer consumption, the bags were unloaded, weighed, and subsampled to analyze the dry matter (DM) content, neutral detergent fiber and starch contents, pH, lactic and monocarboxylic acids, yeast and mold counts, aerobic and anaerobic spore-former counts, and aerobic stability. We also determined the economic benefit of applying the novel covering. The top layer of silage conserved under the HOB film had a higher lactic acid content and lower pH; lower counts of yeasts, molds, and aerobic and anaerobic spore-formers; higher aerobic stability; and lower DM losses than the silage conserved under the PE film. The use of the HOB film prevented almost all of the silage in the upper layer from spoiling; only 2 out of 32 samples had a mold count >6log10 cfu/g. This led to a net economic gain when the HOB film was used on both farms due to the increased DM recovery and reduced labor time required to clean the upper layer, even though the HOB film cost about 2.3 times more than the PE film. Furthermore, use of the HOB film, which ensures a longer shelf life of silage during consumption, reduced the detrimental effect of yeasts, molds, and aerobic and anaerobic spore-formers on the nutritional and microbiological quality of the unloaded silage.

摘要

本研究考察了用特殊等级乙烯 - 乙烯醇(EVOH)制成的新一代高氧阻隔膜(HOB)覆盖玉米青贮饲料,与标准聚乙烯膜(PE)相比,对青贮饲料发酵、化学和微生物质量的影响。两个青贮窖(农场1和农场2)沿长度方向分为两部分,使青贮窖的一半用PE膜覆盖,另一半用HOB膜覆盖。装有新鲜切碎玉米的塑料网袋埋在上层(靠近墙壁和远离墙壁处)以及青贮窖的中部。在春夏季节取用青贮饲料时,将袋子取出、称重并取子样,以分析干物质(DM)含量、中性洗涤纤维和淀粉含量、pH值、乳酸和一元羧酸含量、酵母和霉菌数量、需氧和厌氧芽孢形成菌数量以及有氧稳定性。我们还确定了使用新型覆盖物的经济效益。与用PE膜保存的青贮饲料相比,用HOB膜保存的青贮饲料顶层乳酸含量更高、pH值更低;酵母、霉菌、需氧和厌氧芽孢形成菌数量更少;有氧稳定性更高;DM损失更低。使用HOB膜几乎可防止上层所有青贮饲料变质;32个样品中只有2个霉菌数量>6log10 cfu/g。尽管HOB膜的成本约为PE膜的2.3倍,但由于DM回收率提高以及清洁上层所需的劳动时间减少,在两个农场使用HOB膜都带来了净经济收益。此外,使用HOB膜可确保青贮饲料在取用期间有更长的保质期,减少了酵母、霉菌、需氧和厌氧芽孢形成菌对取出的青贮饲料营养和微生物质量的不利影响。

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