[1] |
REN Yanfang, XUE Yuhao, TIAN Dan, HE Junyu, ZHANG Liming, WU Qing, LIU Shu.
Synergistic Effect of Salicylic Acid and Nitric Oxide Treatment on Quality and Antioxidant Activity in Postharvest Mango Fruit
[J]. FOOD SCIENCE, 2021, 42(9): 151-159.
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[2] |
YUE Xiaofeng, CAO Jianhong, ZHAO Yameng, YIN Chunxiao, JU Yanlun, ZHANG Zhenwen.
Effects of Three Loading Treatments on Quality Attributes in Spine Grape (Vitis davidii Foex.) Cultivar Tianputao
[J]. FOOD SCIENCE, 2021, 42(6): 238-243.
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[3] |
ZHONG Qiang, DONG Chunhui, HUANG Zhibo, BAO Luying, XIA Xiufang.
Recent Progress in the Preservation Mechanism of Acidic Electrolyzed Water and Its Application in the Preservation of Aquatic Products
[J]. FOOD SCIENCE, 2021, 42(5): 288-295.
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[4] |
LI Mingqi, HE Zhifei, LI Shaobo, LI Ranran, QU Cheng, LI Hongjun.
Synergistic Effect of Calcium Chloride-Fig Protease-Kiwifruit Protease Blend as Meat Tenderizer on Myofibrillar Protein Structure of Rabbit Meat
[J]. FOOD SCIENCE, 2021, 42(4): 8-14.
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[5] |
ZHOU Ping, ZHENG Jie.
Modification of Anthocyanins for Extended Application: A Review
[J]. FOOD SCIENCE, 2021, 42(3): 346-354.
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[6] |
LIU Meiying, CHI Ming, ZHANG Zhenwen.
Analysis of Non-anthocyanin Phenolics in ‘Cabernet Sauvignon’ (Vitis vinifera L.) under Different Training Systems
[J]. FOOD SCIENCE, 2021, 42(3): 30-37.
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[7] |
NING Yawei, FU Yunan, HE Jianzhuo, HOU Linlin, WANG Zhixin, XIAO Xiang, WANG Shijie, JIA Yingmin.
Antibacterial Mechanism of Phenyllactic Acid Combined with Acetic Acid on Escherichia coli
[J]. FOOD SCIENCE, 2021, 42(3): 77-84.
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[8] |
LIU Meng, GAO Haiyan, FANG Xiangjun, WU Weijie, CHEN Hangjun, LIU Ruiling.
Optimization of Ultrasonic-Microwave Assisted Extraction of Phenolic Acids from Chinese Bayberries (Morella rubra Sieb. et Zucc) of Different Maturities and a Comparative Study of Their Antioxidant Activities
[J]. FOOD SCIENCE, 2021, 42(3): 112-120.
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[9] |
MA Yongqiang, XIU Weiye, LI Chenchen, WANG Yiqi, CHEN Junjie.
Optimization of Preparation Process for Lycopene-Loaded Nanostructured Lipid Carrier by Central Composite Design-Response Surface Methodology
[J]. FOOD SCIENCE, 2021, 42(3): 121-127.
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[10] |
DAI Jinbo, SHEN Jie, HE Xiaofeng, NIE Rongrong, DONG Wenjing, LIANG Qinxian.
Optimized QuEChERS Combined with UPLC-MS/MS for Determination of Fipronil and Its Metabolites in Poultry-Derived Foods
[J]. FOOD SCIENCE, 2021, 42(2): 325-332.
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[11] |
GAN Xiaona, WANG Huijun, LI Tingzhao, LI Bo.
Lycium ruthenicum Murray Fruit: Chemical Composition Analysis by Ultra-high Performance Liquid Chromatography Coupled to Triple Time of Flight Mass Spectrometry and Determination of Total Anthocyanins
[J]. FOOD SCIENCE, 2021, 42(18): 185-190.
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[12] |
ZHAO Jing, LI Hanhan, QIAN Wen, PIAO Changshan, YANG Changqing.
Comparison of Method for Determination of Anthocyanins in Black Chokeberry
[J]. FOOD SCIENCE, 2021, 42(18): 212-217.
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[13] |
ZHAO Lei, PAN Fei, ZHOU Na, ZHANG Yali, HAO Shuai, WANG Chengtao.
Screening of Co-pigments to Improve Color Stability of Black Rice Anthocyanins and Underlying Mechanism
[J]. FOOD SCIENCE, 2021, 42(14): 16-23.
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[14] |
FANG Xiansheng, WU Tao, XIAO Liangjun.
Broadly Targeted Metabolomics Analysis of Differential Metabolites between Light Yellow and Purple Walnut Endocarps
[J]. FOOD SCIENCE, 2021, 42(12): 215-221.
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[15] |
PAN Fei, ZHAO Lei, CHEN Yanlin, HAO Shuai, ZHANG Huimin.
Preparation, Characterization and Sustained Release Property of Black Rice Anthocyanin-Loaded Chitsan γ-Polyglutamic Acid Nanoparticles
[J]. FOOD SCIENCE, 2021, 42(10): 38-44.
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