Qadri Ovais Shafiq, Srivastava Abhaya Kumar
Department of Post Harvest Engineering and Technology, Aligarh Muslim University, Aligarh, India.
Department of Biotechnology, Thapar Institute of Engineering and Technology, Patiala, India.
J Food Sci Technol. 2021 Sep;58(9):3357-3367. doi: 10.1007/s13197-020-04907-3. Epub 2020 Nov 19.
A prototype microwave foam mat dryer with continuous operation was fabricated for tomato and guava. Results of preliminary studies on microwave foam mat drying of tomato and guava were used to design the prototype. The continuous foaming operation was achieved with the help of a submersible pump controlled by a time switch which ensured the delivery of pulp into foaming container and streamlined the delivery of foam on the drying surface (belt). The drying section presented a combination of hot air and microwaves, which resulted in accelerated heating and subsequently drying of the foam. Dried flakes were collected at the exit with the scrapper blade, which ensured appreciable recovery. The quality evaluation of guava pulp and tomato pulp dried at different microwave powers and inlet air temperatures revealed that the products dried at 1000 W microwave power and 50 °C exhibited excellent physicochemical properties in both the cases. Performance evaluation study depicted that the capacity of the dryer for guava drying was 4.84 l/h, the final moisture retention in the dried powder was 0.059 g HO/g d.m, recovery was 98.34% and energy consumption was 1.32 kWh/l. Similarly, for tomato drying the capacity, final moisture content, recovery and energy consumption were 4.03 l/h, 0.062 g HO/g d.m, 91.29% and 1.49 kWh/l respectively.
制造了一种用于番茄和番石榴的连续运行的微波泡沫垫干燥样机。利用对番茄和番石榴进行微波泡沫垫干燥的初步研究结果来设计该样机。借助由时间开关控制的潜水泵实现连续发泡操作,该潜水泵确保将果肉输送到发泡容器中,并使泡沫在干燥表面(传送带)上的输送更加顺畅。干燥部分采用热风和微波相结合的方式,从而加速了泡沫的加热并随后进行干燥。用刮板在出口处收集干燥的薄片,确保了可观的回收率。对在不同微波功率和进气温度下干燥的番石榴果肉和番茄果肉进行的质量评估表明,在1000瓦微波功率和50℃下干燥的产品在两种情况下均表现出优异的物理化学性质。性能评估研究表明,该干燥机用于番石榴干燥的产能为4.84升/小时,干燥粉末中的最终水分含量为0.059克水/克干物质,回收率为98.34%,能耗为1.32千瓦时/升。同样,对于番茄干燥,产能、最终水分含量、回收率和能耗分别为4.03升/小时、0.062克水/克干物质、91.29%和1.49千瓦时/升。