淀粉
电介质
材料科学
马铃薯淀粉
电导率
损耗系数
介电损耗
颗粒(地质)
复合材料
化学工程
化学
食品科学
光电子学
物理化学
工程类
作者
Beh Chong You,Ee Meng Cheng,Nashrul Fazli Mohd Nasir,M.S. Abdul Majid,Shing Fhan Khor,M.J.M. Ridzuan,Emma Ziezie Mohd Tarmizi,Kyung‐Sub Lee
出处
期刊:Agriculture
[MDPI AG]
日期:2022-05-29
卷期号:12 (6): 783-783
被引量:10
标识
DOI:10.3390/agriculture12060783
摘要
The effect of starch granule sizes, shapes, composition, and frequency on the dielectric properties (dielectric constant, loss factor, and conductivity) of native and hydrothermally modified starches (potato, corn, and rice starch) are investigated in this work. Dielectric properties are determined from 5 Hz to 5 GHz. The modified starches exhibit lower dielectric properties than the native starches from 5 Hz to 5 GHz due to the disruption of the native polysaccharide’s molecular arrangement. The modified potato starch shows the highest loss factor (208.12 at 50 Hz and 19.95 at 500 Hz) and stable conductivity (~5.33 × 10−7 S/m at 50 Hz and 500 Hz) due to the larger continuous network structure after hydrothermal modification. The rice starch shows the largest difference in dielectric constant (47.30%) and loss factor (71.42%) between the modified form and native form in the frequency range of 5 MHz–5 GHz. This is due to the restriction of dipole motions in the closely packed structure after hydrothermal modification. The findings indicate that the quality of starch modification can be characterized by dielectric properties for assisting starch-based plastic production’s design.
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