FAILED
首站-论文投稿智能助手
典型文献
The impact of high hydrostatic pressure treatment time on the structure, gelatinization and thermal properties and in vitro digestibility of oat starch
文献摘要:
As a non-thermal processing technology, high hydrostatic pressure (HHP) can be used for starch mod-ification without affecting the quality and flavour constituents. The effect of HHP on starch is closely related to the treatment time of HHP. In this paper, we investigated the impacts of HHP treatment time (0, 5, 10, 15, 20, 25, 30 min) on the microstructure, gelatinization and thermal properties as well as in vitro digestibility of oat starch by scanning electron microscopy, X-ray diffraction, Fourier transform infrared spectroscopy, 13C NMR and differential scanning calorimeter. Results showed that 5-min HHP treatment led to deformation and decreases in short-range ordered and double-helix structures of oat starch granules, and further extending the treatment time to 15 min or above caused the formation of a gelatinous connection zone, increase of particle size, disintegration of short-range ordered and double-helix structures, and crystal structure change from A type to V type, indicating gelatinization occurred. Longer treatment time also resulted in the reduction in both the viscosity and the stability of oat starch. These indicated that HHP treatment time greatly influenced the microstructure of oat starch, and the oat starch experienced crystalline destruction (5 min), crystalline disintegration (15 min) and gelatinization (> 15 min) during HHP treatment. Results of in vitro digestibility showed that the rapidly digestible starch (RDS) content declined first after treatment for 5 to 10 min then rose with the time extending from 15 to 30 min, indicating that longer pressure treatment time was unfavourable to the health benefits of oat starch for humans with diabetes and cardiovascular disease. Therefore, the 500-MPa treatment time for oat starch is rec-ommended not more than 15 min. This study provides theoretical guidance for the application of HHP technology in starch modification and development of health foods.
文献关键词:
作者姓名:
Jing Zhang;Meili Zhang;Xue Bai;Yakun Zhang;Chen Wang
作者机构:
College of Food Science and Engineering,Inner Mongolia Agricultural University,Huhhot 010018,China;Sanya Research Institute,Hainan Academy of Agricultural Sciences,Sanya 572024,China
引用格式:
[1]Jing Zhang;Meili Zhang;Xue Bai;Yakun Zhang;Chen Wang-.The impact of high hydrostatic pressure treatment time on the structure, gelatinization and thermal properties and in vitro digestibility of oat starch)[J].粮油科技(英文),2022(01):1-12
A类:
gelatinization,flavour,gelatinous
B类:
high,hydrostatic,pressure,treatment,thermal,properties,vitro,digestibility,oat,starch,processing,technology,HHP,without,affecting,quality,constituents,effect,closely,related,In,this,paper,investigated,impacts,microstructure,well,by,scanning,electron,microscopy,ray,diffraction,Fourier,transform,infrared,spectroscopy,13C,NMR,differential,calorimeter,Results,showed,that,led,deformation,decreases,short,range,ordered,double,helix,structures,granules,further,extending,above,caused,connection,zone,increase,particle,size,disintegration,change,from,type,indicating,occurred,Longer,also,resulted,reduction,both,viscosity,stability,These,indicated,greatly,influenced,experienced,crystalline,destruction,during,rapidly,digestible,RDS,content,declined,first,after,then,rose,longer,was,unfavourable,health,benefits,humans,diabetes,cardiovascular,disease,Therefore,rec,ommended,not,more,than,This,study,provides,theoretical,guidance,application,modification,development,foods
AB值:
0.441667
相似文献
Effectiveness of coal mine dust control:A new technique for preparation and efficacy of self-adaptive microcapsule suppressant
Bo Ren;Liang Yuan;Gang Zhou;Shuailong Li;Qunzhi Meng;Kai Wang;Bingyou Jiang;Guofeng Yu-School of Emergency Management and Safety Engineering,China University of Mining and Technology-Beijing,Beijing 100083,China;State Key Laboratory of Deep Coal Mining&Environment Protection,Huainan Mining Group Co.,LTD.,Huainan 232001,China;Key Laboratory of Industrial Dust Control and Occupational Health,Ministry of Education,Anhui University of Science and Technology,Huainan 232001,China;College of Safety and Environmental Engineering,Shandong University of Science and Technology,Qingdao 266590,China;Department of Civil and Environmental Engineering,University of Alberta,Edmonton T6G 2R3,Canada
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。