Effect of different processing conditions to obtain expanded extruded based on cowpea

Q3 Agricultural and Biological Sciences
I. C. V. Silva, K. J. Damasceno-Silva, J. M. Hashimoto, C. W. P. D. Carvalho, J. Ascheri, M. C. Galdeano, M. M. Rocha
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引用次数: 0

Abstract

Abstract Cowpea is grown mainly in regions with a hot semi-arid climate, where other pulses do not develop satisfactorily. It is the 4th most produced pulse in the world, thus supplying the domestic and export markets. Following the trends of the food products market, a study was carried out to identify the best condition of the extrusion process, to transform these nutritious grains into quality expanded products and ready for consumption. The grains were decorticated and transformed into cotyledon flour. This flour was conditioned and the Evolum HT25 twin screw extruder feeder was adjusted to a rate of 7 kg h-1. A Box-Behnken 23 design was used, considering the following variables and levels: extrusion temperature from 100 °C to 140 °C (in the 7th to 10th zone), screw speed (300 to 700 rpm) and conditioning moisture from 12% to 16%. The temperature affected linearly and negatively (p ≤ 0.05) the sectional expansion index (2.65 to 7.64). The screw speed interfered linearly and positively (p ≤ 0.05) in the longitudinal (1.12 to 9.32) and volumetric (4.91 to 24.15) expansion index, and negatively with the water absorption index (3.05 to 3.86 g g-1). The screw speed (positive linear and negative quadratic), the moisture content (negative quadratic) and the interaction (positive) between the two interfered (p ≤ 0.05) in the water solubility index (25.89% to 33.85%). The hardness value (1.24 to 2.83 N) was affected (p ≤ 0.05) by screw speed (negative linear and positive quadratic), temperature (negative quadratic), moisture (positive quadratic), and interactions of moisture with temperature and screw speed. To obtain a hardness value close to that of commercial extrudates and high-water solubility, the maximum global desirability obtained was 0.81 for extrusion at 135.6 °C, 700 rpm and 12% moisture.
不同加工条件对获得以豇豆为基础的膨化挤出物的影响
豇豆主要生长在炎热的半干旱气候地区,在这些地区,其他豆类的生长都不令人满意。它是世界上第四大生产的脉冲,因此供应国内和出口市场。根据食品市场的趋势,进行了一项研究,以确定挤压工艺的最佳条件,将这些营养谷物转化为优质的膨化产品并准备消费。籽粒脱皮,转化为子叶粉。对该面粉进行了调理,并将Evolum HT25双螺杆给料机调整为7 kg h-1的速率。采用Box-Behnken 23设计,考虑以下变量和水平:挤出温度从100°C到140°C(在第7到第10区),螺杆速度(300到700转/分)和调节水分从12%到16%。温度对截面膨胀指数(2.65 ~ 7.64)呈线性负相关(p≤0.05)。螺杆转速与纵向膨胀指数(1.12 ~ 9.32)和体积膨胀指数(4.91 ~ 24.15)呈线性正相关(p≤0.05),与吸水指数(3.05 ~ 3.86 g-1)呈负相关(p≤0.05)。螺杆转速(正线性和负二次)、含水率(负二次)及其相互作用(正)对水溶性指数(25.89% ~ 33.85%)有干扰(p≤0.05)。硬度值(1.24 ~ 2.83 N)受螺杆转速(负线性和正二次)、温度(负二次)、水分(正二次)以及水分与温度和螺杆转速的交互作用影响(p≤0.05)。为了获得接近商业挤出物的硬度值和高水溶性,在135.6°C, 700转/分和12%水分的条件下,获得的最大总体理想值为0.81。
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来源期刊
Brazilian Journal of Food Technology
Brazilian Journal of Food Technology Agricultural and Biological Sciences-Food Science
CiteScore
2.20
自引率
0.00%
发文量
32
审稿时长
35 weeks
期刊介绍: The Brazilian Journal of Food Technology (BJFT) is an electronic rolling pass publication with free access, whose purpose is to publish unpublished articles based on original research results and technological information that significantly contribute to the dissemination of new knowledge related to production and evaluation of food in the areas of science, technology, food engineering and nutrition (non-clinical). Manuscripts of national or international scope are accepted, presenting new concepts or experimental approaches that are not only repositories of scientific data. The Journal publishes original articles, review articles, scientific notes, case reports, and short communication in Portuguese and English. The submission of a manuscript presupposes that the same paper is not under analysis for publication in any other divulging vehicle. Articles specifically contemplating analytical methodologies will be accepted as long as they are innovative or provide significant improvement to existing methods. It is at the discretion of the Editors, depending on the subject relevance, the acceptance of works with test results of industrialized products without the information necessary to manufacture them. Papers aimed essentially at commercial propaganda will not be accepted.
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