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螺杆转速对淀粉基纳米TiO2/Cu2O复合膜结构及性能的影响研究

池婧 周卉卉 刘倩楠 李敬 赵瑞璇 胡宏海

核农学报2026,Vol.40Issue(5):943-951,9.
核农学报2026,Vol.40Issue(5):943-951,9.DOI:10.11869/j.issn.1000-8551.2026.05.0943

螺杆转速对淀粉基纳米TiO2/Cu2O复合膜结构及性能的影响研究

Effect of Screw Speed on the Structure and Properties of Starch-Based Nano-TiO2/Cu2O Composite Films

池婧 1周卉卉 2刘倩楠 1李敬 1赵瑞璇 1胡宏海1

作者信息

  • 1. 中国农业科学院农产品加工研究所/农业农村部马铃薯主食化加工技术集成实验室/农业农村部农产品加工与贮藏重点实验室,北京 100193
  • 2. 中国农业科学院农产品加工研究所/农业农村部马铃薯主食化加工技术集成实验室/农业农村部农产品加工与贮藏重点实验室,北京 100193||山东农业大学食品科学与工程学院,山东 泰安 271018
  • 折叠

摘要

Abstract

To investigate the influence of twin-screw extrusion process parameters on the properties of starch-based composite films,potato starch-carboxymethyl cellulose-nano-TiO2-Cu2O composite films were prepared using a twin-screw extrusion combined with hot pressing method.The effects of screw rotation speed(80-140 r·min⁻¹)on the microstructure and physicochemical characteristics of the films were systematically evaluated.Results showed that the shear forces generated during twin-screw extrusion effectively improved nanoparticle dispersion and reduced agglomeration of nano-TiO2 and Cu2O.A dense hydrogen bonding networks between potato starch and carboxymethyl cellulose,significantly enhancing the tensile strength by 339.4%(from 5.63 MPa to 24.74 MPa)and increasing elastic modulus by 45.77%.High shear conditions also induced a crystal transformation in potato starch from B-type to V-type,improving film crystallinity.Furthermore,increased screw speed partially oxidized nano-Cu2O,leading to a decrease in the surface color parameter a* value from 0.56 to-3.18 and a visible color shift from red to green.This study clarified the mechanism by which screw speed regulates microstructure to influence the properties of composite films,which provides a theoretical basis for the controllable processing of starch-based food packaging materials.

关键词

双螺杆挤出/热压/转速/纳米TiO2/纳米Cu2O

Key words

twin-screw extrusion/hot pressing/screw speed/nano-TiO2/nano-Cu2O

引用本文复制引用

池婧,周卉卉,刘倩楠,李敬,赵瑞璇,胡宏海..螺杆转速对淀粉基纳米TiO2/Cu2O复合膜结构及性能的影响研究[J].核农学报,2026,40(5):943-951,9.

基金项目

国家自然科学基金(32302289),国家马铃薯产业技术体系(CARS-09-P27) (32302289)

核农学报

1000-8551

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