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首页> 外文期刊>Food and Bioproducts Processing. Transactions of the Institution of Chemical Engineers, Part C >Novel method and machine for dehulling of guar seeds and optimisation of dehulling process
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Novel method and machine for dehulling of guar seeds and optimisation of dehulling process

机译:瓜尔豆种子脱壳及脱壳工艺优化的新方法,新机

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Traditional guar processing method to produce guar gum splits comprises of splitting, germ separation, heating and dehulling heated splits through cutting and scratching in which 12-17% endosperm are lost. A novel pretreatment method and machine was developed to dehull guar seeds prior to splitting. The process involved steeping seeds in ethanol solution (0.2-0.4% concentration), conditioning for 5 min followed by dehulling through compressive- shear- and abrasive-forces applied simultaneously using the developed machine. The machine comprised of hopper, feed regulator, under-runner discs of wire mesh for dehulling pretreated seeds, and aspirator to separate hull. Pretreated guar seeds moved between discs in compressed condition, thus subjected to abrasive and shear forces to remove hull. Dehulling efficiency increased with moisture content and rotational speed up to 75.8 +/- 1.7% (d.b.) and 90 rpm, respectively and then decreased. Second order polynomial model described the relationship between dehulling efficiency, moisture content and rotational speed. Process conditions were optimised using surface plot and contour plot. Optimum range of moisture content and peripheral speed were 74-80% (d.b.) and 2.76-3.2 ms(-1) (88-102 rpm), respectively at which a dehulling efficiency of 91.67 +/- 5% was observed with 3.48% split formation. Capacity of the machine was 80 kg h(-1) pretreated seeds at 90 rpm. (C) 2016 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:传统的瓜尔胶生产瓜尔豆胶碎片的方法包括裂解,胚芽分离,加热和通过切割和刮擦去皮加热的碎片,其中损失了12-17%的胚乳。开发了一种新颖的预处理方法和机器,用于在瓜果瓜种子分裂之前将其脱壳。该过程涉及将种子浸入乙醇溶液(浓度为0.2-0.4%)中,调节5分钟,然后通过使用开发的机器同时施加的压缩剪切力和磨削力进行脱壳。该机器由料斗,进料调节器,用于脱壳预处理的种子的金属丝网下盘和用于分离外壳的抽气机组成。预处理过的瓜尔豆种子在压缩状态下在圆盘之间移动,因此受到磨蚀力和剪切力以去除船体。脱壳效率随含水量和转速分别增加至75.8 +/- 1.7%(d.b.)和90 rpm而增加,然后降低。二阶多项式模型描述了脱壳效率,水分含量和转速之间的关系。使用表面图和轮廓图来优化工艺条件。含水量和圆周速度的最佳范围分别为74-80%(db)和2.76-3.2 ms(-1)(88-102 rpm),在此条件下,观察到的脱壳效率为91.67 +/- 5%,而去皮效率为3.48%分裂形成。机器的容量是在90 rpm下80 kg h(-1)预处理的种子。 (C)2016年化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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