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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of particle size distribution, compositional and color properties of ground corn on quality of distillers dried grains with solubles (DDGS)
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Effects of particle size distribution, compositional and color properties of ground corn on quality of distillers dried grains with solubles (DDGS)

机译:玉米粉的粒度分布,组成和颜色特性对蒸馏水干谷物含可溶性物质(DDGS)的质量的影响

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Oftentimes, corn processors believe that ground corn (raw material) and distillers dried grains with solubles (DDGS) are interrelated in certain quality parameters. Yet, previous studies, although rather limited, have not established this relationship. In this study, six ground corn samples and their resulting DDGS were analyzed for particle size distribution (PSD), using a series of six selected US standard sieves: Nos. 8, 12, 18, 35, 60, and 100, and a pan. The original sample and sieve sized fractions were measured for contents of moisture, protein, oil, ash and starch, and Surface color. Total carbohydrate (CHO) and total non-starch CHO were also calculated. Results show that the geometric mean diameter (d(gw)) of particles varied with individual corn and DDGS samples, and that d(gw) of DDGS was larger than that of corn (0.696 vs. 0.479 mm, average values), indicating that during conversion of corn to DDGS, certain particles became enlarged. For dgw and mass frequency of individual particle size classes, the relationship between ground corn and DDGS varied, but PSD of the whole sample was well correlated between them (r = 0.807). Upon conversion from corn to DDGS, on an average, protein was concentrated 3.59 times: oil, 3.40 times; ash, 3.32 times; and total non-starch CHO, 2.89 times. There were some positive correlations in contents of protein and non-starch CHO and in L value between corn and DDGS. Yet, variations in nutrients and color attributes were larger in DDGS than in corn. For either corn or DDGS, these variations were larger in sieved fractions than in the whole fraction. Raw material, processing method and addition of yeasts are among major factors considered for causing larger variations in these attributes among DDGS. The study partially supports the common belief by processors that quality attributes of corn affect those of DDGS.
机译:通常,玉米加工者认为,磨碎的玉米(原料)和带有可溶物的DDGS干酒糟(DDGS)在某些质量参数上相互关联。然而,先前的研究尽管相当有限,但尚未建立这种关系。在这项研究中,使用一系列六个精选的美国标准筛子(第8、12、18、35、60和100号)和一个锅,分析了六个玉米粉样品及其所得的DDGS的粒度分布(PSD)。 。测量原始样品和筛分大小的馏分的水分,蛋白质,油,灰分和淀粉含量以及表面颜色。还计算了总碳水化合物(CHO)和总非淀粉CHO。结果表明,颗粒的几何平均直径(d(gw))随单个玉米和DDGS样品的不同而变化,并且DDGS的d(gw)大于玉米的直径(0.696 vs. 0.479 mm,平均值),表明在玉米转化为DDGS的过程中,某些颗粒变大了。对于单个颗粒大小类别的dgw和质量频率,玉米粉和DDGS之间的关系有所不同,但整个样品的PSD之间存在很好的相关性(r = 0.807)。从玉米转化为DDGS时,平均蛋白质浓缩为3.59倍:油为3.40倍;油为3.40倍。灰分3.32倍非淀粉CHO总量为2.89倍。玉米和DDGS之间蛋白质和非淀粉CHO的含量以及L值呈正相关。然而,DDGS中养分和颜色属性的变化大于玉米。对于玉米或DDGS,筛分的这些差异要大于整个分数。原材料,加工方法和酵母的添加是导致DDGS这些属性发生较大变化的主要因素。该研究部分支持加工者的普遍信念,即玉米的品质属性会影响DDGS的品质属性。

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