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首页> 外文期刊>Journal of Food Research >Modeling Single-Screw Extrusion Processing Parameters and Resulting Extrudate Properties of DDGS-Based Nile Tilapia (Oreochromis niloticus) Feeds
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Modeling Single-Screw Extrusion Processing Parameters and Resulting Extrudate Properties of DDGS-Based Nile Tilapia (Oreochromis niloticus) Feeds

机译:基于DDGS的尼罗罗非鱼(Oreochromis niloticus)饲料的单螺杆挤出加工参数模型和所得挤出物特性

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摘要

A single-screw laboratory extruder was used to conduct an L 18 (2 2 ′ 3 6 ) Taguchi fractional factorial study of aquafeed processing. The ingredients were based on a formulation for nutritionally-balanced Nile tilapia diets containing distillers dried grains with solubles (DDGS) and soybean meal as the main protein sources, in addition to constant amounts of corn flour, whey, and fishmeal. The effects of three levels of DDGS (20, 30 and 40%), soybean meal (30, 40 and 50%), ingredient moisture content (20, 30 and 40% db), screw speed (100, 150 and 200 rpm), die dimension (L/D ratios of 5, 9 and 13), barrel temperature (80-100-100°C, 80-120-120°C and 80-140-140°C) and two levels of screw configuration (compression ratios of 2:1 and 3:1) on extrudate physical properties (moisture content, water activity, bulk density, unit density, expansion ratio, pellet durability index, water absorption and solubility indices, water stability, color) and extruder processing parameters (resulting temperatures, die pressure, extruder torque, mass flow rate, apparent viscosity, and specific mechanical energy) were determined. Data from raw materials, processing conditions, and extrudate properties were used to develop surface response curves and equations. However, predominantly low R 2 values (< 0.5) only permitted linear relationships between some independent parameters and response variables. Regarding main effects, die pressure significantly decreased with higher DDGS levels, moisture content, temperature, lower die L/D, and higher screw compression. Expansion ratio decreased significantly with higher moisture content and lower die L/D. Significant differences in color were caused by changes in DDGS levels and moisture content. In summary, DDGS, moisture content, die dimension, and extrusion conditions had the biggest impact on most of the extrudate physical properties and processing conditions. Different combinations of these independent factors can be used to achieve desired extrudate physical properties and processing conditions.
机译:使用单螺杆实验室挤出机进行水产饲料加工的L 18(2 2′3 6)Taguchi分数阶乘研究。这些成分基于营养均衡的尼罗罗非鱼日粮配方,除恒定量的玉米粉,乳清和鱼粉外,还包含酒糟,可溶物(DDGS)和豆粕作为主要蛋白质来源。三种水平的DDGS(20、30和40 %),豆粕(30、40和50 %),成分水分含量(20、30和40 %db),螺杆转速(100、150和30)的影响200 rpm),模具尺寸(L / D比为5、9和13),料筒温度(80-100-100°C,80-120-120°C和80-140-140°C)和两个水平的螺杆配置(压缩比为2:1和3:1)对挤出物的物理性能(水分,水分活度,堆积密度,单位密度,膨胀比,颗粒耐久性指数,吸水率和溶解度指数,水稳定性,颜色)和确定了挤出机的加工参数(温度,模头压力,挤出机扭矩,质量流率,表观粘度和比机械能)。来自原材料,加工条件和挤出物特性的数据被用于开发表面响应曲线和方程。但是,主要是较低的R 2值(<0.5)仅允许某些独立参数和响应变量之间存在线性关系。在主要影响方面,模具压力随着DDGS水平,水分含量,温度,较低的模具L / D和较高的螺杆压缩而显着降低。随着水分含量的增加和模头L / D的降低,膨胀率显着下降。颜色的显着差异是由DDGS水平和水分含量的变化引起的。总之,DDGS,水分含量,模头尺寸和挤出条件对大多数挤出物的物理性能和加工条件影响最大。这些独立因素的不同组合可用于实现所需的挤出物物理性能和加工条件。

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