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乙酸和乳酸对玉米秸秆青贮料有氧稳定性和甲烷产率的影响 被引量:22

Effects of acetic and lactic acid in corn stover silage on aerobic stability and methane yield rate
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摘要 根据热电偶原理采用无纸记录仪测定温度,研究不同质量浓度乙酸和乳酸对玉米秸秆青贮料有氧稳定性及干物质的影响,并通过批次厌氧发酵工艺,分析不同质量比的乙酸和乳酸对提高青贮料甲烷产率的作用。结果表明:乙酸能有效提高青贮料的有氧稳定性,且随乙酸浓度的增加,青贮料有氧稳定性提高。相应地,乙酸添加量为10%和8%的处理干物质损失分别为1%和3%,而乙酸量添加为2%和没有添加乙酸的处理干物质损失分别为20%和25%,且干物质损失率(x)与甲烷产量减少率(y)呈线性正相关:y=0.705x+1.224(R2=0.986 2)。在仅以乙酸和乳酸为原料的厌氧发酵体系中,高浓度乙酸的甲烷产率显著高于高浓度乳酸(P<0.05);而在烘干青贮料发酵体系中,乙酸添加量为17%和13%的处理甲烷产率与相同添加量乳酸的处理相比,差异性不显著(P>0.05)。综合评价,乙酸对青贮料的主要贡献在于增加其出料期的有氧稳定性,减少干物质损失,进而提高物料甲烷产率。 Effects of acetic(A)and lactic acid(L)on the aerobic stability of silage were determined by adding mixture of A and L with various mass ratios of A/L to prepared corn stover silage.In addition,the roles of acetic and lactic improving methane yield rate(MYR)of silage in the presence of exposure to ambient air were analyzed using three feedstocks including the silage before and after the aerobic stability test,mixtures of A/L and stove-dried silage with different ratios of A/L.For this purpose,the aerobic stability tests and anaerobic digestion tests were respectively performed using paperless recorder with thermocouple theory and several bath reactors.The results showed that addition of acetic acid significantly extended the aerobic stability of silage and the stability increased along with the increased acetic acid concentration.Accordingly,dry matter(DM)loss of the treatments adding 10% and 8% acetic acid was 1% and 3%respectively,whereas adding 2% and without acetic acid loss 20% and 25% DM respectively.The linear relationship between DM loss of silage(x)and its methane yield decrease(y)was expressed as:y=0.705x+1.224(R^2=0.986 2).MYR of higher acetic acid concentration was significantly higher(P〈0.05)than that of higher lactic acid concentration in anaerobic digestion system with acetic and lactic acid as only feedstock.However,adding17% and 13% acetic acid had less effect on MYR compared to those treatment by adding the same ratios of lactic acid in the stovedried silage.A comprehensive assessment showed increasing acetic acid concentration in silage was beneficial for its aerobic stability,DM loss and MYR.These results suggested that heterofermentative ensiling with higheracetic acid concentration was an effective method of storing fresh feedstock during the feed-out period in the presence of exposure to ambient air for biogas production.
出处 《中国农业大学学报》 CAS CSCD 北大核心 2015年第1期44-52,共9页 Journal of China Agricultural University
基金 国家科技支撑计划(2012BAD14B06) 北京市重点学科经费
关键词 乙酸 乳酸 青贮料 有氧稳定性 厌氧发酵 甲烷产率 acetic acid lactic acid silage aerobic stability anaerobic digestion methane yield rate(MYR)
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参考文献24

  • 1Kalae P. The required characteristics of ensiled crops used as a feedstock for biogas production: A review[J]. J Agrobiolog, 2011,28(2) ~85-96.
  • 2Weiland P. Biogas production: Current state and perspectives[J]- Appl Microbiol Biotechnolog, 2010,85 (4) ~ 849-860.
  • 3Peymanfar S, Kermanshahi R K. The effect of bacteria, enzymes and inulin on fermentation and aerobic stability of corn silage[J]. Iran J Microbial, 2012,4(4) : 180-186.
  • 4Danner H, Holzer M, Mayrhuber E, et al. Acetic acid increases stability of silage under aerobic eonditions[J]. Appl MicrobioI Biotechnolog, 2003,69 (1) : 562-567.
  • 5Wilkinson J M, Davies D R. The aerobic stability of silage:Key findings and recent developments[J]. Grass and Forage Sci, 2013,68(1) :1-19.
  • 6Filya I, Sucu E. The effects of lactic acid bacteria on the fermentation, aerobic stability and nutritive value of maize silage[J]. Grass and Forage Sci,2010,65(4) :446-455.
  • 7McDonald P, Henderson A R, Heron S J E. The Biochemistry of Silage~M~. 2nd ed. Marolw: Chalcombe Publications, 1991 : 341.
  • 8Vervaeren H, Hostyn K, Ghekiere G, et al. Biological ensilage additives as pretreatment for maize to increase the biogas productionEJ~. Renew Energy,2010,35(9) :2089-2093.
  • 9Herrmann C, Heiermann M, Idler C. Effects of ensiling, silage additives and storage period on methane formation of biogas erops[J]. Bioresour Technol,2011,102(8) :5153-5161.
  • 10张涛,崔宗均,李建平,杨立国,康玉凡,胡跃高.不同发酵类型青贮菌制剂对青贮发酵的影响[J].草业学报,2005,14(3):67-71. 被引量:58

二级参考文献43

  • 1曹建峰.秸秆的综合利用技术分析[J].能源研究与信息,2006,22(1):22-25. 被引量:25
  • 2高丽娟,王小芬,杨洪岩,李献梅,崔宗均.秸秆发酵乳酸菌复合系SFC-2的构建及其组成多样性研究[J].环境科学,2007,28(5):1088-1094. 被引量:16
  • 3Oude Elferink S J W H,Driehuis F,Gottschal J C,et al.Aneaerobic degradation of lactic acid to acetic acid and 1,2 propanedial,a novel fermentation pathway in Lactobacillus buchneri helps to improve the aerobic stability of maize silage[A].Proc.Ⅻ Int.Silage Conf[C].Sweden:Swedish Univ.Agric.Sci.,Uppsala,1999.266-267.
  • 4Taylor C C,Ranjit N J,Ma J,et al.The effect of treating whole-plant barley with Lactobacillus buchneri 40788 on silage fermentation,aerobic stability,and nutritive value for dairy cows[J].Journal of Dairy Science,2002,85:1526-1532.
  • 5Wilkins R J,Hutchison R F,Harris C E.The voluntary intake of silage by sheep.1.Interrelationships between silage composition and intake[J].J.Agric.Sci.Camb.,1971,77:531-537.
  • 6Rook A J,Gill M.Prediction of the voluntary intake of grass silges by beef cattle.1.Linear regression analyses[J].Anim.Prod.,1990,50:425-438.
  • 7Ranjit N K,Taylor C C,Kung L Jr.Effect of Lactobacillus buchneri 40788 on the fermentation,aerobic stability and nutritive value of maize silage[J].Grass Forage Science,2002,57:73-81.
  • 8Driehuis F,Oude Elferink S J W H,van Wikselaar P G.Fermentation characteristics and aerobic stability of grass silage inoculated with Lactobacillus buchneri,with or without homofermentative lactic acid bacteria[J].Grass Forage Science,2001,56:330-343.
  • 9Filya I.The effect of Lactobacillus buchneri and Lactobacillus plantarum on the fermentation,aerobic stability,and ruminal degradability of low dry matter corn and sorghum silages[J].Dairy Science,2003,86:3575-3581.
  • 10Stokes M R.Effects of an enzyme mixture,an inoculant,and their interaction on silage fermentation and dairy production[J].Journal of Dairy Science,1992,75:764.

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