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Updated: Sep 6, 2026

Method to Produce Durable Pellets at Lower Energy Consumption Using High Moisture Corn Stover and a Corn Starch Binder in a Flat Die Pellet Mill
Published on: June 15, 2016
Effect of coupled temperature-humidity drying on multi-scale structure and in vitro digestibility of corn resistant
Qing Su1, Lirong Chen1, Linlin Sun1
1Crop Research Institute, Shandong Academy of Agricultural Sciences, Jinan 250100, China.
Abstract:
This study investigates the effects of varying drying temperatures and humidity levels on the molecular structure and digestive properties of resistant starch (RS). The RS content of 60/95 (temperature/relative humidity) sample was 45.39%, significantly higher than that of all other groups. This sample also exhibited the highest crystallinity at 45.73%. The hydrolysis curves for all RS samples showed a gradual increase from 0 to 180 min, with 60/95 demonstrating the lowest hydrolysis rate. High-temperature and high-humidity drying conditions promoted the development of a more complete B-type crystalline cell structure, forming a denser multi-crystalline phase that enhanced resistance to enzymatic digestion. Conversely, the crystal form of 80/95 transformed from type B to type A, achieving the highest long-range order (IR 1047/1022 = 0.978). However, the A-type crystal structure of 80/95 exhibited defects, with loosely arranged grains. This research provides novel insights and processing strategies for the production of RS with improved functional properties.
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