首页> 外文OA文献 >Twin-screw Extrusion Processing of Vegetable-Based Yellow Perch (Perca flavescens) Diets Containing Fermented High Protein Soybean Meal and Graded Levels of Distillers Dried Grains with Solubles
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Twin-screw Extrusion Processing of Vegetable-Based Yellow Perch (Perca flavescens) Diets Containing Fermented High Protein Soybean Meal and Graded Levels of Distillers Dried Grains with Solubles

机译:含发酵高蛋白大豆粉和分级含酒糟酒糟的蔬菜基黄鲈(Perca flavescens)日粮的双螺杆挤出加工

摘要

A pilot-plant twin screw extrusion study was performed in two twice-replicated trials with the goal of producing vegetable-based protein feeds for juvenile yellow perch. Two isocaloric (3.06 kcal/g) experimental diets were balanced to contain 20% and 40% DDGS, and a constant amount (20 %) of fermented high protein soybean meal (PepSoyGen, PSG), as the fishmeal protein replacers, in combination with appropriate amounts of other required ingredients; crude protein content was targeted at 40 %. A fishmeal-based diet was used as a control. To obtain cohesive extrudates, extrusion processing conditions were varied, including conditioner steam (0.11-0.16 kg/min), extruder water (0.11-0.19 kg/min), and screw speed (230-300 rpm). Increasing DDGS from 0 to 40% led to a considerable rise in bulk density, L*, b*, and unit density, but to a decrease in aw and expansion ratio by 12.6, 14.4, 23, 21, 31, and 13 %, respectively. Compared to the control diet, the lowest unit density and the highest bulk density of 791.6 kg/m3 and 654.5 kg/m3 were achieved with the diets containing 20 and 40% DDGS, respectively; changes in DDGS content did not affect the extrudate moisture content, absorption index, or thermal properties. Raising DDGS content from 0 to 40% resulted in a curvilinear increase in water solubility and a* of the extrudates by 13.4 and 35%, respectively. All extrudates had high durability of more than 98%, and low aw of less than 0.5. Overall, this initial study yielded physically viable feeds for yellow perch. Further extrusion studies are needed to determine optimal DDGS-based diet for yellow perch.
机译:在两个两次重复的试验中进行了中试植物双螺杆挤出研究,目的是生产用于少年黄鲈的植物性蛋白质饲料。两种等热量(3.06 kcal / g)实验饮食经均衡以包含20%和40%DDGS,以及恒定量(20%)的发酵高蛋白豆粕(PepSoyGen,PSG)作为鱼粉蛋白替代品,与适量的其他所需成分;粗蛋白含量目标为40%。以鱼粉为基础的饮食作为对照。为了获得粘性挤出物,改变挤出加工条件,包括调节剂蒸汽(0.11-0.16kg / min),挤出机水(0.11-0.19kg / min)和螺杆速度(230-300rpm)。 DDGS从0%增加到40%导致堆积密度,L *,b *和单位密度显着增加,但aw和膨胀率分别降低了12.6、14.4、23、21、31和13%,分别。与对照日粮相比,日粮分别含20%和40%DDGS的最低单位密度和最高堆积密度分别为791.6 kg / m3和654.5 kg / m3; DDGS含量的变化不会影响挤出物的水分含量,吸收指数或热性能。将DDGS含量从0%提高到40%,可使水溶性和挤出物的a *曲线分别增加13.4和35%。所有挤出物均具有超过98%的高耐久性,以及低于0.5的低aw。总的来说,这项最初的研究产生了具有物理可行性的黄色鲈鱼饲料。需要进一步的挤压研究来确定黄鲈的最佳基于DDGS的饮食。

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