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首页> 外文期刊>Journal of the Science of Food and Agriculture >Nutrient variation and availability of wheat DDGS, corn DDGS and blend DDGS from bioethanol plants
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Nutrient variation and availability of wheat DDGS, corn DDGS and blend DDGS from bioethanol plants

机译:来自生物乙醇工厂的小麦DDGS,玉米DDGS和混合DDGS的营养成分变化和有效性

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BACKGROUND: The dramatic increase in bioethanol production in Canada has resulted in millions of tonnes of different types of new co-products: wheat dried distillers grains with solubles (DDGS), corn DDGS and blend DDGS (e.g. wheat:corn=70:30). There is an urgent need to systematically evaluate the nutritive value of different types of DDGS. Little research has been conducted to determine the magnitude of the differences in nutritive value among wheat DDGS, corn DDGS and blend DDGS and between different bioethanol plants. The objectives of this study were to compare different types of DDGS and different bioethanol plants in terms of: (1) chemical profiles; (2) mineral concentrations of sulfur (S), calcium (Ca) and phosphorus (P); (3) protein and carbohydrate subfractions associated with different degradation rates; (4) digestible component nutrients and energy values; and (5) in situ rumen availability of each DDGS component.RESULTS: The results showed that chemical profiles differed among wheat DDGS, corn DDGS and blend DDGS. Mineral profiles were different among the three types of DDGS with wheat DDGS lower in S (3.9 vs. 7.2 g kgp# DM), higher in Ca (1.8 vs. 0.5 g kgp# DM) and P (9.1 vs. 7.7 g kgp# DM) than corn DDGS, but similar to blend DDGS. Wheat DDGS had the lowest and corn DDGS had the highest energy values (TDN, DEX, MEX, NELX for dairy; NEm and NEg beef cattle) while blend DDGS was in between. Wheat DDGS was lower in the intermediately degradable CP fraction (PB2: 277 vs. 542 g kgp# CP) and higher in the rapidly non-protein degradable fraction (163 vs. 114 g kgp# CP) and slowly degradable CP fraction (PB3: 512 vs. 279 g kgp# CP) than corn DDGS, but similar to blend DDGS. For carbohydrate subfractions, wheat DDGS was higher in non-structural carbohydrate fraction (NSC: 483 vs. 184 g kgp# CHO), higher in highly degradable free sugars fraction (CA: 359 vs. 91 g kgp# CHO), higher in unavailable CHO (CC: 204 vs. 142 g kgp# CHO), similar in rapidly degradable CHO fraction (average 108 g kgp# CHO), lower in intermediately degradable CHO (CB2: 313 vs. 674 g kgp# CHO) than corn DDGS. Wheat DDGS had higher in situ CP degradability and lower NDF degradability than corn DDGS, but similar degradability to blend DDGS.CONCLUSION: Among the three types of DDGS, they differed in chemical characterisation, mineral concentration (S, Ca, P), estimated energy values for both beef and dairy cattle, protein and carbohydrate subfractions, in situ degradability. Bioethanol plants also had significant impact on nutritive value of DDGS. The energy values (DEX, MEX, NELX, NEm and NEg) in wheat DDGS were similar to wheat and corn suggesting wheat DDGS as an alternative to wheat and corn in dairy and beef diets. The energy values (DEX, MEX, NELX, NEm and NEg) in corn DDGS were significantly higher than in corn, indicating that corn DDGS is superior to corn in dairy and beef diets. The energy values (DEX, MEX, NELX, NEm and NEg) in the blend DDGS were higher than that in wheat DDGS but similar to corn DDGS, suggesting blend DDGS as an alternative to corn and superior to wheat and wheat DDGS in dairy and beef diets. Copyright
机译:背景:加拿大生物乙醇产量的急剧增长已导致数百万吨不同类型的新副产品:小麦干酒糟和可溶物(DDGS),玉米DDGS和混合DDGS(例如,小麦:玉米= 70:30) 。迫切需要系统地评估不同类型DDGS的营养价值。几乎没有进行任何研究来确定小麦DDGS,玉米DDGS和混合DDGS以及不同生物乙醇植物之间的营养价值差异。这项研究的目的是在以下方面比较不同类型的DDGS和不同的生物乙醇工厂:(1)化学特性; (2)矿物质中硫(S),钙(Ca)和磷(P)的浓度; (3)与不同降解率相关的蛋白质和碳水化合物亚组分; (4)易消化成分的养分和能量值;结果:结果表明,小麦DDGS,玉米DDGS和混合DDGS的化学特性有所不同。三种DDGS的矿物质特征有所不同,其中小麦DDGS的S含量较低(分别为3.9和7.2 g kgp#DM,Ca分别较低(1.8 vs.0.5 g kgp#DM)和P(9.1 vs. 7.7 g kgp#DM)。 DM)比玉米DDGS高,但与掺混DDGS类似。小麦DDGS的能量值最低,而玉米DDGS的能量值最高(乳品的TDN,DEX,MEX,NELX; NEm和NEg肉牛),而DDGS介于两者之间。小麦DDGS的中等可降解CP组分含量较低(PB2:277比542 g kgp#CP),而快速非蛋白质可降解组分(163 vs. 114 g kgp#CP)和缓慢降解的CP组分(PB3:比玉米DDGS高512克和279克kgp#CP),但与掺混DDGS相似。就碳水化合物的细分而言,小麦DDGS的非结构性碳水化合物含量较高(NSC:483 vs. 184 g kgp#CHO),高度可降解的游离糖含量较高(CA:359 vs. 91 g kgp#CHO),较高的无糖含量CHO(CC:204 vs. 142 g kgp#CHO),在可快速降解的CHO分数(平均108 g kgp#CHO)中相似,在中等可降解CHO(CB2:313 vs. 674 g kgp#CHO)中比玉米DDGS低。小麦DDGS的原位CP降解能力和NDF降解能力均比玉米DDGS高,但与DDGS混合的降解能力相似。结论:三种DDGS在化学特性,矿物质浓度(S,Ca,P),估计能量方面存在差异牛肉和奶牛的数值,蛋白质和碳水化合物的含量,原位降解性。生物乙醇工厂也对DDGS的营养价值产生重大影响。小麦DDGS中的能量值(DEX,MEX,NELX,NEm和NEg)与小麦和玉米相似,表明小麦DDGS在乳制品和牛肉日粮中可以替代小麦和玉米。玉米DDGS中的能量值(DEX,MEX,NELX,NEm和NEg)显着高于玉米,这表明在牛奶和牛肉日粮中,玉米DDGS优于玉米。混合DDGS中的能量值(DEX,MEX,NELX,NEm和NEg)高于小麦DDGS,但与玉米DDGS相似,表明混合DDGS作为玉米的替代品,在乳制品和牛肉中优于小麦和小麦DDGS。饮食。版权

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