Development of Pretreatment Approaches for Authentic Representation of Tea Infusion Aroma
文献类型: 外文期刊
第一作者: Zhang, Mingming
作者: Zhang, Mingming;Feng, Zhihui;Wang, Fang;Chen, Jianxin;Li, Yifan;Yin, Junfeng;Zhang, Mingming;Chen, Yuqiong;Zhang, Mingming
作者机构:
关键词: headspace solid phase microextraction; ions in water; brewing aroma; sensory fidelity
期刊名称:FOODS ( 影响因子:5.1; 五年影响因子:5.6 )
ISSN:
年卷期: 2025 年 14 卷 16 期
页码:
收录情况: SCI
摘要: Appropriate aroma extraction methods are crucial prerequisites for accurately and objectively characterizing the authentic aroma profile of samples. Purified water and ionized water were used as brewing water, and the effects of different tea-to-water ratios, extraction temperatures, and extraction times on the aroma authenticity and component enrichment of tea infusions were compared. The conditions of a tea-to-water ratio of 1 g:10 mL, extraction at 30 degrees C for 30 or 45 min were identified as the optimal parameter range, which could maximize the enrichment of aroma while maintaining fidelity. The cosine value of the aroma attribute scores between the optimal parameter set and the control group (tea brewed at 1 g:10 mL ratio for 4 min) exceeded 0.979, and the correlation coefficient surpassed 0.828. Test evaluation results indicate the method had good reproducibility and effectively highlighted the differential impacts of ionic content in brewing water on tea aroma constituents. This approach effectively solved the problem of sensory distortion caused by conventional high-temperature and long-duration extraction, enabling precise analysis of how water quality authentically influences tea infusion aroma characteristics.
分类号:
- 相关文献
作者其他论文 更多>>
-
A ratiometric fluorescent probe for the determination of quinolone antibiotics in milk based on N and S co-doped carbon quantum dots
作者:Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Han, Jiajun;Gong, Wenwen
关键词:Carbon quantum dot; Ratiometric fluorescence probe; Moxifloxacin; Gatifloxacin; Ofloxacin; Milk
-
Water-soluble stimuli-responsive supramolecular nanoagrochemicals based on macrocycle compounds
作者:Song, Ya-Hui;Bian, Qiang;Yang, Yi-Hang;Zhang, Ying-Ming;Liu, Yu;Wang, Fang;Liu, Jinpeng
关键词:Supramolecular assemblies; Host-guest complexation; Macrocycles; Stimuli-responsiveness; Nanoagrochemicals
-
High-precise determination of the drought and cold resistance of forage seeds using terahertz time-domain spectroscopy
作者:Wang, Fang;Xiao, Ziwei;Liu, Zilong;Zhang, Chunhong;Yin, Panpan;Liu, Lemeng;Xiang, Wenfeng
关键词:Terahertz time domain spectroscopy; Cold and drought resistance; Forage seeds; Multilayer structure propagation model
-
Development of a double-antibody sandwich ELISA for quantification of mutated EPSPS gene expression in rice
作者:Luo, Biao;Rao, Liqun;Wang, Qiming;Luo, Biao;Zhang, Xianwen;Wang, Fang;Wang, Yan;Zhang, Xianwen;Wu, Wei;Lin, Chaoyang
关键词:5-Enolpyruvyl-shikimate-3-phosphate synthase (EPSPS); DAS-ELISA; OsmEPSPS detection; Glyphosate-tolerant rice; Glyphosate-tolerant rice
-
Construction of P450 scaffold biocatalysts for the biodegradation of five chloroanilines
作者:Yang, Ridong;Wang, Fang;Xu, Jiakun;Yang, Ridong;Che, Hongxia;Shoji, Osami;Lin, Yingwu
关键词:P450BM3; Artificial metalloenzyme; Chloroanilines; Biodegradation
-
Construction of artificial peroxidase based on myoglobin scaffold for efficient degradation of meloxicam
作者:Zhang, Weikang;Yang, Yadan;Wang, Fang;Xu, Jiakun;Zhang, Weikang;Yang, Yadan;Meng, Xiangmin;Lin, Ying-Wu
关键词:Meloxicam; Myoglobin; Biodegradation; Structure-function relationship; Degradation; Environmental remediation
-
Application of carbon quantum dots as fluorescent probes in the detection of antibiotics and heavy metals
作者:Wang, Fang;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Gong, Wenwen;Han, Jiajun
关键词:Antibiotics; Heavy metals; Carbon quantum dots; Fluorescence quenching; Fluorescence enhancement