Microbial Populations, Fermentation End-Products, and Aerobic Stability of Corn Silage Treated with Ammonia or a Propionic Acid-Based Preservative
Микробные популяции, конечные продукты ферментации и аэробная стабильность кукурузного силоса, обработанного аммиаком или консервантом на основе пропионовой кислоты
2000-07-01
SCID: 54.1/wfs2qv8w
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aerobic stabilityammonia treatmentcorn silagelactic acid bacteriapropionic acid preservative
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Abstract (AI)
We studied the effects of ammonia treatment on microbial populations during the fermentation of corn silage. We also compared the effects of ammonia to a preservative containing buffered propionic acid and other antifungal compounds on the fermentation and aerobic stability of corn silage. In the first experiment, whole-plant corn was ensiled without treatment or treated with ammonia-N to supply an additional 0.3% N (fresh-forage basis). The addition of ammonia immediately increased silage pH and had no effect on numbers of lactic acid bacteria, but delayed their growth compared with untreated silage. Numbers of enterobacteria declined more slowly, but numbers of yeasts and molds declined more quickly in silage treated with ammonia. During the early stages of ensiling, lactic acid increased more rapidly in untreated than in treated silage. The reverse was true for acetic acid concentrations. When exposed to air, growth of yeasts and molds was delayed in ammonia-treated silage. In a second experiment, various levels (0.1 to 0.3%, fresh weight) of ammonium-N or a preservative with buffered propionic acid were added to whole-plant corn and allowed to ensile for 106 d. Silage treated with ammonia had a greater ratio of L- to D-lactic acid than did other silages. Untreated silage was aerobically stable for 32.3 h, whereas the low (42 h) and moderate (52.7 h) concentrations of both additives numerically improved aerobic stability. High concentrations of ammonia-N (0.3%) or a buffered propionic acid preservative (0.3%), markedly improved the aerobic stability of corn silage (82 and 69 h for ammonia and propionic acid-treated silage, respectively).
Key Findings
1
Ammonia delayed yeast and mold growth after air exposure, improving the aerobic stability of corn silage.
2
Ammonia slowed enterobacteria decline but accelerated yeast and mold reduction during ensiling compared with untreated silage.
3
Ammonia treatment immediately increased corn silage pH and delayed lactic acid bacterial growth without changing their population size.
4
High ammonia-N (0.3%) and buffered propionic acid (0.3%) increased aerobic stability from 32.3 hours in untreated silage to 82 and 69 hours, respectively; ammonia produced the greatest improvement.
5
Untreated silage accumulated lactic acid faster initially, whereas ammonia-treated silage developed higher acetic acid concentrations during early fermentation.
Research Object
whole-plant corn silage treated with ammonia or a buffered propionic acid-based preservative
Research Subject
microbial population dynamics, fermentation end-products, and aerobic stability during ensiling and air exposure
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2000-07-01
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