远红外辐射对糊化大米淀粉颗粒的影响

IF 2.7 3区 工程技术 Q3 ENGINEERING, CHEMICAL Drying Technology Pub Date : 2023-10-25 DOI:10.1080/07373937.2023.2272179
G. Abhiram, K. S. P. Amarathunga
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引用次数: 0

摘要

摘要为研究远红外辐射对米粉理化性质变化及糊化能耗的影响,研制了远红外干燥机样机。采用不同的FIR强度(11.2、8.5和7.8 kW m−2)和不同的时间间隔(2 ~ 16 s),对薄层米粉的糊化程度、粘度变化、颜色变化、储存过程中的酸度变化和糊化能耗进行了测定。糊化程度、颜色变化和粘度随FIR强度和曝光时间的增加而增加。与未糊化的米粉相比,糊化后的米粉在贮藏过程中酸性发育显著降低(p < 0.05)。随着杉木强度的增加,干燥速率增加,比能耗降低。结果表明,在11.2 kW m−2的FIR强度下,胶凝时间为16 s,胶凝效果最佳。这些结果证实了FIR是一种有效的米粉焙烧源。关键词:颜色变化;能耗;远红外;Abhiram:调查,概念化,方法论,写作-原稿,软件,可视化。K.S.P. Amarathunga:概念化,写作-审查和编辑,监督。披露声明作者报告无利益冲突。作者独自负责论文的内容和写作。
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Effects of far-infrared radiation on the gelatinized rice starch granules
AbstractA prototype far-infrared (FIR) dryer was developed to study the effects of far-infrared radiation on physicochemical properties changes of rice flour and energy consumption for gelatinization. A thin layer of rice flour was exposed to different FIR intensities (11.2, 8.5, and 7.8 kW m−2) and different time intervals (2–16 s). The degree of gelatinization, viscosity changes, color changes, acidity changes during storage, and energy consumption for gelatinization were measured. The degree of gelatinization, color changes, and viscosity increased with FIR intensity and exposure time. Gelatinized rice flour showed significantly (p < 0.05) lower acidity development compared to non-gelatinized flour during storage. The drying rate increased, and specific energy consumption decreased with increasing FIR intensity. It was found that optimum gelatinization can be achieved at 11.2 kW m−2 FIR intensity for 16 s. All these results confirm that FIR is an effective source of rice flour roasting.Keywords: Colour changesenergy consumptionfar-infraredgelatinizationrice flour Authors’ contributionsG. Abhiram: investigation, conceptualization, methodology, writing-original draft, software, visualization. K.S.P. Amarathunga: conceptualization, writing-review and editing, supervision.Disclosure statementThe authors report no conflicts of interest. The authors alone are responsible for the content and writing of the paper.
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来源期刊
Drying Technology
Drying Technology 工程技术-工程:化工
CiteScore
7.40
自引率
15.20%
发文量
133
审稿时长
2 months
期刊介绍: Drying Technology explores the science and technology, and the engineering aspects of drying, dewatering, and related topics. Articles in this multi-disciplinary journal cover the following themes: -Fundamental and applied aspects of dryers in diverse industrial sectors- Mathematical modeling of drying and dryers- Computer modeling of transport processes in multi-phase systems- Material science aspects of drying- Transport phenomena in porous media- Design, scale-up, control and off-design analysis of dryers- Energy, environmental, safety and techno-economic aspects- Quality parameters in drying operations- Pre- and post-drying operations- Novel drying technologies. This peer-reviewed journal provides an archival reference for scientists, engineers, and technologists in all industrial sectors and academia concerned with any aspect of thermal or nonthermal dehydration and allied operations.
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