Effects of drying method on the stability and quality of post-processing of 3D-printed processed cheese

被引:10
作者
Deng, Yiqiu [1 ]
Cheng, Kewei [2 ]
Shao, Xusheng [1 ]
Dong, Xinlin [1 ]
Jiang, He [2 ]
Xiao, Gongnian [1 ,2 ]
机构
[1] Zhejiang Univ Sci & Technol, Coll Biol & Chem Engn, Hangzhou 310023, Zhejiang, Peoples R China
[2] Zhejiang Prov Market Bur, Key Lab Dairy Prod Supervis, Hangzhou, Zhejiang, Peoples R China
关键词
Three-dimensional (3D) printing; drying; cheese; stability; post-processing; MICROSTRUCTURE; KINETICS; TEXTURE; COLOR;
D O I
10.1080/07373937.2022.2126494
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The three-dimensional (3D) printing of processed cheese personalizes food materials and provides a novel means of addressing the nutritional and health needs of consumers. This study used "Anjia" cheese as a raw material to explore the effects of hot air drying (AD) and freeze drying (FD) on the shape and color stability, volatile flavor compounds, casein content, and microstructure of 3D-printed samples after post-processing. Compared with AD -finished products, FD-finished products exhibited better post-processing stability in their dimensional characteristics and color, a higher casein retention rate, and a finished porosity as low as 5.7%. The drying efficiency of FD was also higher, with the drying time decreasing by 66.7% compared with that of AD. The combination of FD and 3D printing can thus yield higher quality products. This study provides useful information for developing post-processing and high-value-added 3D-printed products, especially for nutritional functional foods.
引用
收藏
页码:1060 / 1067
页数:8
相关论文
共 50 条
[31]   Factors affecting 3D printing and post-processing capacity of cookie dough [J].
Pulatsu, Ezgi ;
Su, Jheng-Wun ;
Lin, Jian ;
Lin, Mengshi .
INNOVATIVE FOOD SCIENCE & EMERGING TECHNOLOGIES, 2020, 61
[32]   Linking thermoset ink rheology to the stability of 3D-printed structures [J].
Romberg, Stian K. ;
Islam, Mohammad A. ;
Hershey, Christopher J. ;
DeVinney, Michael ;
Duty, Chad E. ;
Kunc, Vlastimil ;
Compton, Brett G. .
ADDITIVE MANUFACTURING, 2021, 37 (37)
[33]   3D Audio Post-Processing Module on DSP Platform [J].
Boroja, Jelena ;
Kovacevic, Jelena ;
Cordasic, Sanja .
2019 27TH TELECOMMUNICATIONS FORUM (TELFOR 2019), 2019, :365-368
[34]   Effects of various disinfectants on surface roughness and color stability of thermoset and 3D-printed acrylic resin [J].
Fotovat, Farnoush ;
Abassi, Samaneh ;
Nikanjam, Saeed ;
Alafchi, Behnaz ;
Baghiat, Mandana .
EUROPEAN JOURNAL OF TRANSLATIONAL MYOLOGY, 2024, 34 (01)
[35]   Functional post-processing of extrusion-based 3D printed parts: polyaniline (PAni) as a coating for thermoplastics components [J].
Cruzeiro, Arthur de Carvalho ;
Santana, Leonardo ;
Jaime, Danay Manzo ;
Ramoa, Silvia ;
Alves, Jorge Lino ;
Barra, Guilherme Mariz de Oliveira .
RAPID PROTOTYPING JOURNAL, 2024, 30 (08) :1517-1536
[36]   Enhancing Photoluminescence and Stability of CsPbI3 Perovskite Quantum Dots via Cysteine Post-Processing [J].
Chen, Sijie ;
Wei, Jianwu ;
Pang, Qi .
CRYSTALS, 2023, 13 (01)
[37]   Mechanical properties of sand 3D printed rock-like samples based on different post-processing methods [J].
Tian Wei ;
Wang Xiao-Hui ;
Yun Wei ;
Cheng Xu .
ROCK AND SOIL MECHANICS, 2023, 44 (05) :1330-+
[38]   Post-processing Methods to Improve Strength of Particle-Bed 3D Printed Geopolymer for Digital Construction Applications [J].
Nematollahi, Behzad ;
Xia, Ming ;
Sanjayan, Jay .
FRONTIERS IN MATERIALS, 2019, 6
[39]   Effects of Printing Angle and Post-Curing Time on the Color and Translucency of 3D-Printed Temporary Restoration [J].
Temizci, Tugba ;
Kolus, Turkay .
BIOMIMETICS, 2024, 9 (07)
[40]   Biomass 3D Printing: Principles, Materials, Post-Processing and Applications [J].
Li, Yongxia ;
Ren, Xueyong ;
Zhu, Lin ;
Li, Chunmiao .
POLYMERS, 2023, 15 (12)