李 波, 芦 菲, 刘本国, 南海娟. 双孢菇片微波真空干燥特性及工艺优化[J]. 农业工程学报, 2010, 26(6): 380-384.
    引用本文: 李 波, 芦 菲, 刘本国, 南海娟. 双孢菇片微波真空干燥特性及工艺优化[J]. 农业工程学报, 2010, 26(6): 380-384.
    Microwave-vacuum drying characteristics and process optimization of Agaricus bisporus slices[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2010, 26(6): 380-384.
    Citation: Microwave-vacuum drying characteristics and process optimization of Agaricus bisporus slices[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2010, 26(6): 380-384.

    双孢菇片微波真空干燥特性及工艺优化

    Microwave-vacuum drying characteristics and process optimization of Agaricus bisporus slices

    • 摘要: 为解决双孢菇的干制问题,采用微波真空干燥技术对双孢菇片进行干燥试验,研究双孢菇片的干燥特性,并与热风干燥、真空干燥和冷冻干燥方法进行比较。研究结果显示,微波真空干燥时,微波强度对双孢菇片的干燥速率有显著影响,而真空度影响较小,最优的干燥参数为:微波强度为17.4 W/g,真空度70 kPa,干燥时间20 min,含水率可达6.9%。通过对比4种干燥方法的干制时间及产品的复水率、色泽和维生素C含量,可知微波真空干燥的菇片品质接近冷冻干燥,明显优于热风干燥和真空干燥,而微波真空干燥在干制时间方面要比冷冻干燥明显缩短。微波真空干燥是适合双孢菇片的有潜力的干制技术。

       

      Abstract: Microwave-vacuum drying (MVD) was used to dry Agaricus bisporus slices, and its drying characteristics were studied. MVD was compared with hot air drying, vacuum drying and freeze-drying. The results showed that the effect of microwave power on drying rate was greater than that of vacuum degree during MVD process for Agaricus bisporus slices. The optimum drying parameters were microwave power intensity 17.4 W/g, vacuum 70 kPa and drying time 20 minutes, and moisture content of product was 6.9% under this condition. Comparing drying time, rehydration, color and vitamin C content, the qualities of slices dried by MVD was quite close to freeze-drying and obviously better than hot air drying and vacuum drying. Furthermore, MVD was much faster than freeze-drying. Therefore, MVD is a potential technology for drying Agaricus bisporus slices.

       

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