Development of expanded extrusion food products for an Advanced Life Support system.

D V Zasypkin, T C Lee
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引用次数: 0

Abstract

Extrusion processing was proposed to provide texture and to expand the variety of cereal food products in an isolated Advanced Life Support (ALS) system. Rice, wheat, and soy are the baseline crops selected for growing during long-term manned space missions. A Brabender single-screw laboratory extruder (model 2003, L/D 20:1), equipped with round nozzles of various lengths, was used as a prototype of a small-size extruder. Several concepts were tested to extend the variety and improve the quality of the products, to decrease environmental loads, and to promote processing stability. These concepts include: the blending of wheat and soybean flour, the extrusion of a coarser rice flour, separation of wheat bran, and optimization of the extruder nozzle design. An optimal nozzle length has been established for the extrusion of rice flour. Bran separating was necessary to improve the quality of wheat extrudates.

为高级生命支持系统开发膨化挤压食品。
建议进行挤压加工,以便在隔离的高级生命支持(ALS)系统中提供口感并增加谷物食品的种类。大米、小麦和大豆是选择在长期载人太空任务中种植的基本作物。一台配有不同长度圆形喷嘴的 Brabender 单螺杆实验室挤压机(2003 型,长径比 20:1)被用作小型挤压机的原型。为了扩大产品种类、提高产品质量、减少环境负荷和提高加工稳定性,对几个概念进行了测试。这些概念包括:小麦粉和大豆粉的混合、较粗米粉的挤压、麦麸的分离以及挤压机喷嘴设计的优化。为挤压米粉确定了最佳喷嘴长度。要提高小麦挤压物的质量,必须分离麦麸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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