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Effect of Dietary Inclusion of Medium-Chain Saturated Fatty Acids on Ammonia and Methane Emitting Potential ofDairy Manure

机译:中链饱和脂肪酸膳食包裹物对多金属粪肥氨和甲烷发射电位的影响

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Two experiments with lactating dairy cows were conducted to evaluate the effect of dietary inclusion of medium-chain saturated fatty acids (lauric and myristic, Exp. 1 and coconut oil, Exp. 2) on the ammonia and methane emitting potential of dairy manure. Experiment 1 was a replicated 3x3 Latin square design trial with 6 cows and Experiment 2 was a completely randomized block design trial with 36 cows and also involved dietary crude protein levels as a treatment. Individual cow (Exp. 1; n = 6) or composite (Exp. 2; n = 2) fecal and urine samples were combined in a 1.7:1 (w/w; feces and urine, respectively) ratio and ammonia and methane emitting potential of manure was measured in a steady-state gas emission system. In Exp. 1, the end-point cumulative ammonia emission was greater for lauric acid than for the control. Diets had marginal effect on manure methane emissions. In Exp. 2, dietary protein level had a profound effect on ammonia emissions; the low-crude protein diet had 37% lower ammonia emissions compared with the high-crude protein diet. The end-point cumulative methane emission was drastically increased by coconut oil compared with the control. Overall, individual medium-chain saturated fatty acids fed to dairy cows had biologically insignificant effects on the ammonia and methane emitting potential of manure as measured in these experiments. A larger dose of coconut oil caused a sizable increase in cumulative methane emission from dairy manure.
机译:进行了两次乳酸奶牛的两项实验,以评估膳食包裹中链饱和脂肪酸(LaURIC和Myristic,Exp.1和椰子油,Exp.2)对乳制品粪便的氨和甲烷发光潜力的影响。实验1是一种复制的3x3拉丁方形设计试验,6奶牛,实验2是一个完全随机的块设计试验,36牛,也涉及膳食粗蛋白水平作为治疗。单个牛(Exp.1; n = 6)或复合(Exp.2; n = 2)粪便和尿液样品在1.7:1(w / w;粪便和尿液中)比例和氨和甲烷发光在稳态气体排放系统中测量粪肥的潜力。在exp。 1,月桂酸的末端累积氨排放比对照更大。饮食对粪便甲烷排放有边缘效应。在exp。 2,膳食蛋白质水平对氨排放产生了深远的影响;与高粗蛋白质饮食相比,低粗蛋白饮食具有37%的氨排放。与对照相比,末端点累积甲烷排放通过椰子油大大增加。总体而言,送入乳制品奶牛的个体中链饱和脂肪酸对这些实验中测量的粪便和甲烷发光潜力的生物显着影响。较大剂量的椰子油导致乳制品粪便累积甲烷排放量增加。

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