Sun Kangning, Liang Xurong, Zhou Shufang, Wang Jiayi, Lu Futai, Deng Qiliang
Tianjin Key Laboratory of Multiplexed Identification for Port Hazardous Chemicals, College of Science, College of Chemical Engineering and Materials Science, Tianjin University of Science and Technology, Tianjin, 300457 China.
J Food Sci Technol. 2025 Aug;62(8):1569-1579. doi: 10.1007/s13197-024-06130-w. Epub 2024 Nov 14.
Perishable products are easily deteriorated due to thermal accumulation during storage and transport. A low-cost, environmental-friendly and visualized indicating device is of great importance for real-time monitoring the quality state of such products, but remains a significant challenge. Herein, a novel thermal history indicator (THI) based on readily available starch was developed. The resulting THI displayed sensitively response to the environmental time-temperature over a broad temperature range (15-55 ℃). The activation energies ( ) according to the signals of absorbance, fluorescence emission and G' values are 95.97 kJ/mol 105.3 kJ/mol, and 114.53 kJ/mol, respectively. The continuous appearance changes from colorless to dark brown allowed user-friendly readout. In addition, the quantitative information could also be obtained by the signal changes of absorbance, fluorescence emission, and RGB values. The resulting THI also displayed the immediate response to temperature fluctuations during transportation and storage. The signal values from multiple channels were well correlated with the concentration of aerobic mesophilic bacteria (AMB) in milk under same storage conditions. The proposed THI show the potential application for real-time assessing the quality loss of perishable products. The low-cost, environmental-friendly, commercially available starting material makes it suitable for scalable manufacturing and wide application.
The online version contains supplementary material available at 10.1007/s13197-024-06130-w.
易腐产品在储存和运输过程中由于热量积累而容易变质。一种低成本、环保且可视化的指示装置对于实时监测此类产品的质量状态至关重要,但仍然是一项重大挑战。在此,基于易于获得的淀粉开发了一种新型热历史指示剂(THI)。所得的THI在较宽的温度范围(15 - 55℃)内对环境时间 - 温度表现出灵敏的响应。根据吸光度、荧光发射和G'值信号计算得到的活化能分别为95.97 kJ/mol、105.3 kJ/mol和114.53 kJ/mol。从无色到深棕色的连续外观变化便于用户读取。此外,还可以通过吸光度、荧光发射和RGB值的信号变化获得定量信息。所得的THI在运输和储存过程中对温度波动也表现出即时响应。在相同储存条件下,来自多个通道的信号值与牛奶中需氧嗜温菌(AMB)的浓度具有良好的相关性。所提出的THI显示出实时评估易腐产品质量损失的潜在应用。低成本、环保、可商购的起始原料使其适用于规模化生产和广泛应用。
在线版本包含可在10.1007/s13197 - 024 - 06130 - w获取的补充材料。