微波泡沫干燥法对姜黄粉物理品质的影响

Dhinar Patliani, D. Purbasari
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引用次数: 1

摘要

姜黄(Curcuma longa L)在印度尼西亚被广泛认为是一种草药植物、食用色素和食品调味品。姜黄的高含水量会缩短原料的储存时间和质量。需要干燥,这是去除材料的水分含量的过程,目的是延长保质期。使用添加粘合剂的泡沫垫干燥方法旨在加快干燥过程并保持材料的质量。将姜黄干燥后得到的产品为姜黄粉。本研究采用完全随机设计(CRD),有两个因素,即微波炉功率的变化和显影剂(卵圆剂)的组成。研究过程分为两个阶段,即粉末的制造和物理质量的测量。制粉的各个阶段从原料的制备、剥离、降粒度、加入显影剂、干燥、然后研磨开始。第二阶段是测量物理质量,即细度模数、平均粒度、粉末含水率、颜色、吸水率、吸油率和容重。使用的功率变化为420瓦、535瓦和680瓦,而显影剂的组成为1%、2%和4%。数据分析采用双因素方差分析(ANOVA)进行统计检验,分析影响显影剂(卵圆形)变异的两个因素。调频值介于0.364 - 1.576 D值范围从0.005 - 0.0012 mm,最终水分含量值介于7.60 - 9.59%,粉水分含量值范围从9.47 - 11.43% ww, L值介于61.46 - 65.96,一个值介于13.54 - 16.05,b值介于48.21 - 52.42,DSA值介于2.78 - 3.54 ml / g, DSM值介于1.22 - 1.60 ml / g和直流值从0.38 - 0.44克/立方厘米不等。干燥功率与显影剂的组合处理受干燥功率参数的影响,即含水率、细度模数、平均粒度、亮度、红度、黄度、吸油率、吸水率和容重。而显影剂影响细粒的模量、平均晶粒尺寸、黄度和堆积密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical Quality of Turmeric Powder (Curcuma longga Linn) Result of Foam-mat Drying Method Using Microwave
Turmeric (Curcuma longa L) in Indonesia is widely known as a herbal medicinal plant, food coloring, and food flavoring. The high water content of turmeric will shorten the storage time and the quality of the ingredients. The need for drying which is the process of removing the moisture content of the material with the aim of prolonging the shelf life. The use of the foam-mat drying method with the addition of adhesives aims to speed up the drying process and maintain the quality of a material. The result of drying turmeric obtained is turmeric powder product. This study used a completely randomized design (CRD) with two factors, namely the variation of the microwave oven power and the composition of the developer agent (ovalet). The research procedure was divided into two stages, namely the manufacture of powder and continued with the measurement of physical quality. The stages of making powder begin with the preparation of raw materials, stripping, size reduction, addition of developer, drying, then grinding. The second stage is measuring physical quality, namely fineness modulus, average grain size, powder moisture content, color, water absorption, oil absorption, and bulk density. The power variations used are 420 watts, 535 watts, and 680 watts, while the composition of the developer is 1%, 2%, and 4%. Data analysis using two-way ANOVA statistical test with two factors that affect the variation of power and composition of the developer (ovalet). FM values ​​ranged from 0.364 – 1.576, D values ​​ranged from 0.005 – 0.0012 mm, final moisture content values ​​ranged from 7.60 – 9.59%, powder moisture content values ​​ranged from 9.47 – 11.43%ww , L values ​​ranged from 61.46 – 65.96, a values ​​ranged from 13.54 – 16.05, b values ​​ranged from 48.21 – 52.42, DSA values ​​ranged from 2.78 – 3.54 ml/ g, DSM values ​​ranged from 1.22 – 1.60 ml/g, and DC values ​​ranged from 0.38 – 0.44 g/cm3. The combination treatment of drying power with developer is influenced by the drying power of the parameters, namely the value of moisture content, fineness modulus, average grain size, brightness level, redness level, yellowness level, oil absorption, water absorption, and bulk density. While the developer affects the finenes modulus, average grain size, yellowness level, and bulk density.
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