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Utilization of canteen food waste as ruminant feed and its effect on ruminal fermentation characteristics in vitro

机译:食堂食品废物的利用作为反刍动物饲料及其对体外瘤胃发酵特性的影响

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Organic waste is dominated by food waste that can cause environmental pollution if it's not handled properly. Food waste still contains plenty of nutrients such as carbohydrates, proteins, fats, and minerals that useful for ruminant feed. This study aimed to evaluate the effect of food waste as ruminant feed using in vitro. Randomized block design was used in this experiment with 5 ration treatments and 3 groups of taken rumen liquor frequencies. The treatments consisted of P0: 30% Napier grass+70% concentrate; P1: 30% Napier grass+8% food waste+62% concentrate; P2: 30% Napier grass+16% food waste+54% concentrate; P3: 30% Napier grass+24% food waste+46% concentrate; and P4: 30% Napier grass+32% food waste+38% concentrate. The measured parameters were pH, volatile fatty acid (VFA), ammonia, microbial protein synthesis, methane gas production, in vitro dry matter (IVDMD), and organic matter digestibility (IVOMD). The results showed that the usage of food waste in ration as ruminant feed was able to increased ammonia, VFA, microbial protein synthesis, IVDMD, and IVOMD without interrupting the fermentation in the rumen. The diet treatments did not have a significant effect on rumen pH, ammonia and microbial protein synthesis, but showed a significant increment in methane gas production and a very significant increment in VFA, IVDMD, and IVOMD compared to control. The use of 32% food waste in ration showed the highest production of ammonia, VFA, and microbial protein synthesis as well as the highest number of IVDMD and IVOMD. The use of food waste up to 32% was able to support the fermentability and digestibility.
机译:有机废物是由食物垃圾占主导地位,如果它没有正确处理,可能会导致环境污染。食物废物仍然含有大量营养素,如碳水化合物,蛋白质,脂肪和矿物质,可用于反刍动物饲料。本研究旨在使用体外评估食物垃圾作为反刍动物饲料的影响。在该实验中使用随机嵌段设计,其中5个配备5个配对处理和3组取瘤液频率。该治疗由P0:30%Napier Grass + 70%浓缩物组成; P1:30%Napier Grass + 8%食物垃圾+ 62%浓缩物; P2:30%Napier Grass + 16%的食物垃圾+ 54%浓缩物; P3:30%Napier Grass + 24%食物垃圾+ 46%浓缩物;和P4:30%Napier Grass + 32%的食物垃圾+ 38%浓缩物。测量的参数是pH,挥发性脂肪酸(VFA),氨,微生物蛋白质合成,甲烷气体生产,体外干物质(IVDMD)和有机物质消化率(IVOMD)。结果表明,作为反刍动物饲料的粮食废物的用法能够增加氨,VFA,微生物蛋白合成,IVDMD和Ivomd而不会中断瘤胃中的发酵。饮食治疗对瘤胃pH,氨和微生物蛋白质合成没有显着影响,但在与对照中,VFA,IVDMD和IVOMD中的甲烷气体生产和非常显着的增量效果。使用32%的食物垃圾在配备中显示出最高产量的氨,VFA和微生物蛋白质合成以及最多的IVDMD和Ivomd。食物浪费的使用高达32%能够支持发酵性和消化率。

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