School of Chemical Engineering, Laboratory of Food Chemistry and Technology, National Technical University of Athens, Iroon Polytechniou, Polytechnioupoli Zorafou, Athens, Greece.
J Food Sci. 2022 Nov;87(11):4839-4853. doi: 10.1111/1750-3841.16350. Epub 2022 Oct 17.
Pulsed electric field (PEF) and osmotic dehydration (OD) pretreatment can accelerate the time-consuming drying process and minimize its high energy demands. The effect of PEF and OD pre-processing conditions and osmotic solution composition on mass transfer kinetics (water loss, solid gain, water activity) and quality properties (color, texture, total sensory quality) during OD and subsequent air-drying (AD) of pumpkin was studied. Application of PEF (2.0 kV/cm-1500 pulses) significantly enhanced mass transfer during subsequent air-drying (increased effective diffusivity coefficient D and drying rate k , respectively). PEF and OD treatments led to a significant reduction of the processing time by 12 and 10%, respectively (p < 0.05). The maximum reduction of processing time by 27% (p < 0.05) (compared to untreated sample) resulted in combined use of PEF and OD as pretreatments prior to AD. When PEF pretreatment was combined with OD prior to AD, the corresponding energy was by 50% less than the respective energy required for nonprocessed samples. PRACTICAL APPLICATION: Pulsed electric fields (PEF) and osmotic dehydration (OD) can be applied for the production of air-dried pumpkin cuts of superior quality (in terms of quality and sensory characteristics) and reduced energy requirements (as a result of total processing time decrease).
脉冲电场 (PEF) 和渗透脱水 (OD) 预处理可以加速耗时的干燥过程,并最大限度地降低其高能耗。研究了 PEF 和 OD 预处理条件以及渗透溶液组成对南瓜在 OD 和随后的空气干燥 (AD) 过程中的质量传递动力学(水分损失、固体重获、水分活度)和质量特性(颜色、质地、总感官质量)的影响。PEF 的应用(2.0 kV/cm-1500 脉冲)显著增强了随后空气干燥过程中的质量传递(分别增加了有效扩散系数 D 和干燥速率 k)。PEF 和 OD 处理分别使加工时间显著缩短了 12%和 10%(p < 0.05)。通过组合使用 PEF 和 OD 作为 AD 之前的预处理,可将加工时间最大缩短 27%(p < 0.05)(与未处理样品相比)。当 AD 之前将 PEF 预处理与 OD 结合使用时,相应的能量比未处理样品所需的能量减少了 50%。实际应用:脉冲电场 (PEF) 和渗透脱水 (OD) 可用于生产质量(在质量和感官特性方面)更优的空气干燥南瓜片,并降低能源需求(由于总加工时间减少)。