Khampakool Apinya, Soisungwan Salinee, You SangGuan, Park Sung Hee
Department of Marine Food Science and Technology, Gangneung-Wonju National University, Gangneung 25457, Korea.
Department of Food Science and Technology, Seoul National University of Science and Technology, Seoul 01811, Korea.
Food Sci Anim Resour. 2020 Sep;40(5):813-830. doi: 10.5851/kosfa.2020.e60. Epub 2020 Sep 1.
In this study, the potential of infrared assisted freeze-drying (IRAFD) was tested for the production of shelf-stable edible insects: larva (larva of white-spotted flower chafer). The IRAFD system was customized using an infrared lamp, K-type thermocouple, controller, and data acquisition system. The infrared lamp provided the sublimation energy for rapid freeze-drying (FD). The IRAFD conditions were continuous IRAFD-5.0 kW/m and IRAFD-5.0 kW/m at different weight reduction (WR) (10%, 20%, and 30%). The continuous IRAFD reduced the drying time to 247 min compared to the 2,833 min duration of FD (p<0.05). The electrical energy could be reduced by more than 90% through infrared radiation during FD (p<0.05). The Page model resulted in the best prediction among the tested drying kinetic models. In terms of quality, IRAFD showed significantly lower hardness, chewiness, and higher protein levels than hot air drying and FD (p<0.05). IRAFD better preserved the glutamic acid (6.30-7.29 g/100 g) and proline (3.84-5.54 g/100 g). The external product appearance after IRAFD exhibited more air pockets and volume expansion, which might result in a good consumer appeal. In conclusion, this study reports the potential of IRAFD in producing shelf-stable and value-added edible insects.
在本研究中,对红外辅助冷冻干燥(IRAFD)用于生产耐储存食用昆虫(白斑花金龟幼虫)的潜力进行了测试。IRAFD系统是使用红外灯、K型热电偶、控制器和数据采集系统定制的。红外灯为快速冷冻干燥(FD)提供升华能量。IRAFD条件为在不同减重率(WR)(10%、20%和30%)下的连续IRAFD-5.0 kW/m和IRAFD-5.0 kW/m。与FD的2833分钟干燥时间相比,连续IRAFD将干燥时间缩短至247分钟(p<0.05)。在FD过程中,通过红外辐射可使电能减少90%以上(p<0.05)。在所测试的干燥动力学模型中,Page模型预测效果最佳。在品质方面,IRAFD显示出比热风干燥和FD显著更低的硬度、咀嚼性以及更高的蛋白质水平(p<0.05)。IRAFD能更好地保留谷氨酸(6.30 - 7.29 g/100 g)和脯氨酸(3.84 - 5.54 g/100 g)。IRAFD处理后的产品外观有更多气穴且体积膨胀,这可能会对消费者有较大吸引力。总之,本研究报道了IRAFD在生产耐储存且增值食用昆虫方面的潜力。