starch nanoparticles
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2022 ◽  
Vol 177 ◽  
pp. 114481
Author(s):  
C.N. Bernardo ◽  
I.C.S. Kling ◽  
W.H. Ferreira ◽  
C.T. Andrade ◽  
R.A. Simao

2022 ◽  
Vol 369 ◽  
pp. 130882
Author(s):  
Xin Pan ◽  
Pei Liu ◽  
Yiwei Wang ◽  
Yan-ling Yi ◽  
Huang-qin Zhang ◽  
...  

LWT ◽  
2022 ◽  
Vol 154 ◽  
pp. 112572
Author(s):  
Mengwei Wang ◽  
Xiaoyu Chen ◽  
Liyang Zhou ◽  
Yang Li ◽  
Jie Yang ◽  
...  

2022 ◽  
pp. 615-664
Author(s):  
Evangelina Repetto ◽  
Carlos Rodriguez Ramirez ◽  
Verónica E. Manzano ◽  
Nancy Lis García ◽  
Norma B. D'Accorso

2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Chengyi Sun ◽  
Yuqing Hu ◽  
Xietian Yu ◽  
Zhijie Zhu ◽  
Shuai Hao ◽  
...  

Abstract Native rice starches were treated with five periods of ultra-high pressure homogenization (UHPH) under each of 60, 80, 100, 120, 140 and 160 MPa, respectively. The morphological, structural and physicochemical properties of starches treated with UHPH were examined. The mean particle diameter of starch nanoparticles ranged between 154.20 and 260.40 nm. SEM revealed that the granular amorphous region of starch granules was damaged under pressures between 60 and 80 MPa, and the crystalline region was further destroyed under pressures as high as 100–160 MPa. DSC demonstrated that the gelatinization temperatures and enthalpies of nanoparticles reduced. The relative crystallinity reduced from 22.90 to 13.61% as the pressure increased. FTIR showed that the absorbance ratio at 1047/1022 cm−1 decreased, and increased at 1022/995 cm−1. RVA results indicated that the viscosity of starch samples increased between 60 and 120 MPa, and the reverse effect was observed under 140 and 160 MPa.


Author(s):  
Joe Glasing ◽  
Jaime C. Cazotti ◽  
Alexander T. Fritz ◽  
Lilian S. Szych ◽  
Djalal Fakim ◽  
...  

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