蒸汽对流烤箱中油炸肉制品的温度变化

Q3 Economics, Econometrics and Finance
M. Smagina, D. Smagin
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引用次数: 0

摘要

组合式蒸汽炉或组合式蒸箱已进入食品生产的各个领域,包括肉类行业。它们的合理使用需要科学和实用的基础。这项研究的重点是肉制品(具有不同营养成分的一维体)在干燥空气和蒸汽-空气混合热处理过程中平均体积温度和温度梯度的变化。研究涉及两种水分和脂肪含量不同的肉制品样品。鸡柳样品的水分含量为 74.5%,脂肪含量为 1.9%,而猪肩样品的水分含量为 55.1%,脂肪含量为 29.4%。样品形状为一维圆柱体和板状,在 Unox-203G 蒸汽对流烤箱(意大利)中进行加热,温度范围为 160-240°C。加热介质为湿度为 80-85% 的干燥空气和蒸汽-空气混合气体。使用连接到 Sosna-004 测量仪上的热电偶测量温度。研究揭示了平均体积温度和温度梯度的一些规律。温度梯度涉及蒸汽-空气混合处理过程中的三个阶段,以及用干燥空气处理时的四个阶段。蒸汽-空气混合物的平均体积温度变化可以用幂律方程来描述;干燥空气处理则用线性方程来描述。在干燥空气中加热时,温度梯度的变化率起初是恒定的,但在某一阶段开始下降。平均体积温度的变化率在 5 分钟内保持在较低水平,随后开始上升,其值一直保持到过程结束。在蒸汽-空气混合器中加热时,温度梯度变化率在 4-5 分钟内降至最低,然后开始上升。平均体积温度在最初 5 分钟内变化率较高,随后开始下降。脂肪含量低的鸡排在蒸汽-空气混合器中处理时升温快 13-26%,在干燥空气中处理时升温快 9-23%。板状产品需要更长时间的热处理。成分和形状对温度梯度和平均体积温度的变化性质没有明显影响。根据所获得的相关关系,可以为对流油炸肉制品选择最佳的温度和湿度条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature Changes in Meat Products Fried in Steam-Convection Oven
Combination steam ovens, or combi steamers, have entered all spheres of food production, including the meat industry. Their rational use requires a scientific and practical foundation. This research featured the changes in mean volume temperature and temperature gradient that occur in meat products (one-dimensional bodies with different nutrient compositions) during heat treatment in dry air and a steam-air mix. The research involved two samples of meat products with different moisture and fat contents. The chicken fillet sample had a moisture content of 74.5% and a fat content of 1.9% while the pork shoulder sample had a moisture content of 55.1% and a fat content of 29.4%. Shaped as a one-dimensional cylinder and a plate, the samples were subjected to heating at the temperature range of 160–240°C in a Unox-203G steam-convection oven (Italy). Dry air and a steam-air mix with a humidity of 80–85% served as a heating medium. The temperature was measured using thermocouples attached to a Sosna-004 meter. The research revealed some patterns in the mean volume temperature and temperature gradient. The temperature gradient involved three stages during processing in a steam-air mix and four stages when treated with dry air. The change in the mean volume temperature for the steam-air mix could be described by a power law equation; the dry air treatment was described using a linear equation. When heated in dry air, the rate of change in the temperature gradient was constant at first but started to decrease at a certain stage. The change rate in the mean volume temperature remained low for 5 min and started to increase onwards, maintaining its value until the end of the process. When heated in a steam-air mix, the change rate in the temperature gradient dropped to its minimum in 4–5 min and started to grow. The mean volume temperature demonstrated a high change rate during the first 5 min and went down. The chicken fillet with its low fat content warmed up faster by 13–26% when processed in a steam-air mix and by 9–23% when treated in dry air. The plate-shaped products needed longer heat treatment. The composition and form had no significant effect on the nature of the change in the temperature gradient and mean volume temperature. The obtained dependencies made it possible to select the optimal temperature and humidity conditions for convective frying of meat products.
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来源期刊
Food Processing: Techniques and Technology
Food Processing: Techniques and Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
1.40
自引率
0.00%
发文量
82
审稿时长
12 weeks
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