Xinxin Wang, Lin Wang, Yunqing Liu, Yani Pan, Xinyu Feng, Wenzhi Ling, Xiangru Wang, Sitong Zhong, Yili Shen, Ranran Zhao, Yuefei Wang, Ping Chen, Qiang Chu
Despite the rapid expansion of the pure tea beverage market ($35 billion by 2025), shelf-life sedimentation remains a major challenge as 80% of raw materials fail conventional stabilization techniques (e.g., membrane filtration), attributable to unclear colloidal stability mechanism regarding the tea infusion components and processing-induced evolution. In our work, 17 typical green tea were analyzed to identify protein and polyphenol as the key stability predictors, and a rapid screening method was developed and validated. Characterization revealed that sterilization drives divergent fates, with stable samples reinforcing β-sheet and hydration networks, whereas sediment-prone samples undergo random coil expansion and polyphenol cross-linking. While EGCG accelerates initial sedimentation, EC modulates the final sediment volume in actual tea systems. Moving beyond processing intervention in tea beverages, this work focuses on "colloid-suspension" phase conversion mediated by the tea infusion components, providing a data foundation as well as targeted processing of raw materials for sediment-free tea beverages.