ZHANG Lu, XIONG Shuangli, LI Anlin, et al. Effect of Frying Temperature and Time on the Quality of Small Crispy Meat[J]. Science and Technology of Food Industry, 2024, 45(7): 68−75. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023050031.
Citation: ZHANG Lu, XIONG Shuangli, LI Anlin, et al. Effect of Frying Temperature and Time on the Quality of Small Crispy Meat[J]. Science and Technology of Food Industry, 2024, 45(7): 68−75. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023050031.

Effect of Frying Temperature and Time on the Quality of Small Crispy Meat

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  • Received Date: May 04, 2023
  • Available Online: January 30, 2024
  • The paper investigated the effects of different frying times and temperatures on the quality of small crispy meat. The changes in moisture content, oil content, sensory characteristics, color, thiobarbituric acid value (TBARs value), and pepsin digestibility of small crispy meat were analyzed at 150, 160, 170, 180 and 190 ℃ for 150, 170, 190 and 210 s, respectively. The experimental results showed that with the increase of frying temperature and frying time, the moisture content of small crispy meat significantly decreased (P<0.05), while the oil content significantly increased (P<0.05). The hardness, chewiness, viscosity and elasticity significantly increased (P<0.05), and the value of thiobarbituric acid reactants showed a gradually increasing trend. The digestibility of gastric protease gradually increased with increasing frying time and decreased with increasing frying temperature. The overall moisture content of the small crispy meat for 170 s at 170 ℃ was 44.15%, the moisture content of the meat core was 64.19%, the overall oil content was 50.77%, and the oil content of the meat core was 28.97%. Under this condition, the small crisp meat had moderate hardness, golden color, crisp outside and tender inside, and the best taste.
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  • [1]
    ZAGHI A N, BARBALHO S M, GUIGUER E L, et al. Frying process:From conventional to air frying technology[J]. Food Reviews International,2019,35(8):763−777. doi: 10.1080/87559129.2019.1600541
    [2]
    MOHAMMAD F, IBRAHIM K, ROKKAYA S, et al. Optimization of the frying temperature and time for preparation of healthy falafel using air frying technology[J]. Foods,2021,10(11):2567. doi: 10.3390/foods10112567
    [3]
    HEREDIA A, CASTEllÓ M L, ARGÜEllES A, et al. Evolution of mechanical and optical properties of French fries obtained by hot air-frying[J]. LWT-Food Science and Technology,2014,57(2):755−760. doi: 10.1016/j.lwt.2014.02.038
    [4]
    YU X N, LI L Q, XUE J, et al. Effect of air-frying conditions on the quality attributes and lipidomic characteristics of surimi during processing[J]. Innovative Food Science and Emerging Technologies,2020,60(C):102305.
    [5]
    张令文, 计红芳, 马汉军, 等. 油炸过程中挂糊油炸猪肉片外壳食用品质的变化[J]. 现代食品科技,2016,32(5):180−185. [ZHANG L W, JI H F, MA H J, et al. Changes in the edible quality of fried pork shells with batter during deep-frying[J]. Modern Food Science and Technology,2016,32(5):180−185.]

    ZHANG L W, JI H F, MA H J, et al. Changes in the edible quality of fried pork shells with batter during deep-frying[J]. Modern Food Science and Technology, 2016, 325): 180185.
    [6]
    SANGAMITHRA A, JOHN S G, HASEENA H. Deep fat frying of foods:A critical review on process and product parameters[J]. Critical Reviews in Food Science and Nutrition,2020,60(20):3400−3413. doi: 10.1080/10408398.2019.1688761
    [7]
    DIAMANTE L M, SAVAGE G P, VANHANEN L. Optimisation of vacuum frying of gold kiwifruit slices:Application of response surface methodology[J]. International Journal of Food Science & Technology,2012,47(3):518−524.
    [8]
    FITRIYONO A, ELISE V G, JOANA V, et al. Nutritional and physicochemical quality of vacuum-fried mango chips is affected by ripening stage, frying temperature, and time.[J]. Frontiers in Nutrition,2020,7:95. doi: 10.3389/fnut.2020.00095
    [9]
    翟嘉豪, 陈季旺, 陈超凡, 等. 油炸温度和时间对油炸外裹糊鱼块品质及产量的影响[J]. 武汉轻工大学学报,2022,41(3):1−7,21. [ZHAI J H, CHEN J W, CHEN C F, et al. Effect of frying temperature and time on the quality and yield of deep-fried battered fish pieces[J]. Journal of Wuhan Light Industry University,2022,41(3):1−7,21.] doi: 10.3969/j.issn.2095-7386.2022.03.001

    ZHAI J H, CHEN J W, CHEN C F, et al. Effect of frying temperature and time on the quality and yield of deep-fried battered fish pieces[J]. Journal of Wuhan Light Industry University, 2022, 413): 17,21. doi: 10.3969/j.issn.2095-7386.2022.03.001
    [10]
    陈康明, 刘晓丽, 许艳顺, 等. 油炸温度与时间对白公干鱼传质特性及品质的影响[J]. 食品与机械,2020,36(2):25−31. [CHEN K M, LIU X L, XU Y S, et al. Effect of frying temperature and time on the mass transfer characteristics and quality of dried white male fish[J]. Food and Machinery,2020,36(2):25−31.]

    CHEN K M, LIU X L, XU Y S, et al. Effect of frying temperature and time on the mass transfer characteristics and quality of dried white male fish[J]. Food and Machinery, 2020, 362): 2531.
    [11]
    张亚楠, 包香香, 樊玉霞, 等. 油炸温度和时间对猪肉块品质的影响[J]. 食品工业科技,2018,39(13):19−24. [ZHANG Y N, BAO X X, FAN Y X, et al. Effect of frying temperature and time on the quality of pork cubes[J]. Food Industry Science and Technology,2018,39(13):19−24.]

    ZHANG Y N, BAO X X, FAN Y X, et al. Effect of frying temperature and time on the quality of pork cubes[J]. Food Industry Science and Technology, 2018, 3913): 1924.
    [12]
    WANG B, LI H J, HUANG Z B, et al. Dynamic changes in the qualities and heterocyclic aromatic amines of roasted pork induced by frying temperature and time[J]. Meat Science,2021,176:108457. doi: 10.1016/j.meatsci.2021.108457
    [13]
    石长波, 王萌, 赵钜阳. 油炸温度与时间对预调理清炸大麻哈鱼品质的影响[J]. 食品研究与开发,2019,49(17):142−147. [SHI C B, WANG M, ZHAO J Y, et al. Effect of frying temperature and time on the quality of preconditioned fried cannabis salmon[J]. Food Research and Development,2019,49(17):142−147.]

    SHI C B, WANG M, ZHAO J Y, et al. Effect of frying temperature and time on the quality of preconditioned fried cannabis salmon[J]. Food Research and Development, 2019, 4917): 142147.
    [14]
    金锦华, 刘剑, 金丹莉, 等. 中餐烹制工艺对鸡胸肉理化品质的影响[J]. 食品工业科技,2022,43(16):111−118. [JIN J H, LIU J, JIN D L, et al. Effect of Chinese cooking process on the physicochemical quality of chicken breast meat[J]. Food Industry Science and Technology,2022,43(16):111−118.]

    JIN J H, LIU J, JIN D L, et al. Effect of Chinese cooking process on the physicochemical quality of chicken breast meat[J]. Food Industry Science and Technology, 2022, 4316): 111118.
    [15]
    张璐, 熊双丽, 李安林, 等. 响应面-主成分分析法优化小酥肉糊料配方[J]. 食品工业科技,2024,45(4):133−141. [ZHANG L, XIONG S L, LI A L, et al. Response surface-principal component analysis for optimization of small crispy meat paste formulation[J]. Food Industry Science and Technology,2024,45(4):133−141.]

    ZHANG L, XIONG S L, LI A L, et al. Response surface-principal component analysis for optimization of small crispy meat paste formulation[J]. Food Industry Science and Technology, 2024, 454): 133141.
    [16]
    PEDRESCHI F, HERANADEZ P, FIGUROA A C, et al. Modeling water loss during frying of potato slices[J]. International Journal of Food Properties,2005,8(2):289−299. doi: 10.1081/JFP-200059480
    [17]
    杨雪欣, 陈可靖. 降低挂糊油炸制品含油量的研究进展[J]. 食品工业科技,2021,42(22):376−382. [YANG X X, CHEN K J. Research progress in reducing the oil content of hung batter fried products[J]. Food Industry Science and Technology,2021,42(22):376−382.]

    YANG X X, CHEN K J. Research progress in reducing the oil content of hung batter fried products[J]. Food Industry Science and Technology, 2021, 4222): 376382.
    [18]
    康海霞, 宋晓燕, 杨晓明, 等. 自加热茄汁酥肉加工工艺的研究[J]. 食品科技,2022,47(1):152−158. [KANG H X, SONG X Y, YANG X M, et al. Study on the processing of self-heated ketchup puffed meat[J]. Food Science and Technology,2022,47(1):152−158.] doi: 10.3969/j.issn.1005-9989.2022.1.spkj202201023

    KANG H X, SONG X Y, YANG X M, et al. Study on the processing of self-heated ketchup puffed meat[J]. Food Science and Technology, 2022, 471): 152158. doi: 10.3969/j.issn.1005-9989.2022.1.spkj202201023
    [19]
    DAI Y, LU Y, WU W, et al. Changes in oxidation, color and texture deteriorations during refrigerated storage of ohmically and water bath-cooked pork meat[J]. Innovative Food Science and Emerging Technologies,2014,26:341−346. doi: 10.1016/j.ifset.2014.06.009
    [20]
    LI Y, BAI X, ZHAO M N, WANG H, et al. Sodium alginate edible coating to reduce oil absorption of French fries with maintaining overall acceptability:Based on a water replacement mechanism[J]. International Journal of Biological Macromolecules,2023,236:124042. doi: 10.1016/j.ijbiomac.2023.124042
    [21]
    李祉贤, 奉思思, 孙佳颖, 等. 高温烘烤对葛根淀粉物化、结构及消化特性的影响[J/OL]. 中国粮油学报:1−10[2023-05-31]. https://doi.org/10.20048/j.cnki.issn.1003-0174.000238. [LI Z X, FEN S S, SUN J Y, et al. Effect of high temperature roasting on the physical, structural and digestive properties of Pueraria lobata starch[J/OL]. Chinese Journal of Cereals and Oils:1−10[2023-05-31]. https://doi.org/10.20048/j.cnki.issn.1003-0174.000238.]

    LI Z X, FEN S S, SUN J Y, et al. Effect of high temperature roasting on the physical, structural and digestive properties of Pueraria lobata starch[J/OL]. Chinese Journal of Cereals and Oils: 1−10[2023-05-31]. https://doi.org/10.20048/j.cnki.issn.1003-0174.000238.
    [22]
    徐建国, 张森旺, 徐刚, 等. 莲子热风干燥过程对其淀粉热特性及凝胶化的影响[J]. 农业工程学报,2017,33(17):298−303. [XU J G, ZHANG S W, XU G, et al. Influence of hot air drying process on the thermal properties and gelation of starch in lotus seeds[J]. Journal of Agricultural Engineering,2017,33(17):298−303.] doi: 10.11975/j.issn.1002-6819.2017.17.039

    XU J G, ZHANG S W, XU G, et al. Influence of hot air drying process on the thermal properties and gelation of starch in lotus seeds[J]. Journal of Agricultural Engineering, 2017, 3317): 298303. doi: 10.11975/j.issn.1002-6819.2017.17.039
    [23]
    张旭东, 刘瑞, 曾睿, 等. 不同热处理条件下羊血浆蛋白体外模拟消化研究[J]. 食品安全质量检测学报,2022,13(18):6049−6056. [ZHANG X D, LIU R, ZENG R, et al. In vitro simulated digestion of sheep plasma proteins under different heat treatment conditions[J]. Journal of Food Safety and Quality Testing,2022,13(18):6049−6056.] doi: 10.3969/j.issn.2095-0381.2022.18.spaqzljcjs202218034

    ZHANG X D, LIU R, ZENG R, et al. In vitro simulated digestion of sheep plasma proteins under different heat treatment conditions[J]. Journal of Food Safety and Quality Testing, 2022, 1318): 60496056. doi: 10.3969/j.issn.2095-0381.2022.18.spaqzljcjs202218034
    [24]
    蔺博燕. 臭氧水处理对草鱼肌原纤维蛋白氧化及凝胶特性的影响[D]. 锦州:渤海大学, 2020. [LIN B Y. Effect of ozone water treatment on oxidation and gelation properties of myogenic fibronectin in grass carp [D]. Jinzhou:Bohai University, 2020.]

    LIN B Y. Effect of ozone water treatment on oxidation and gelation properties of myogenic fibronectin in grass carp [D]. Jinzhou: Bohai University, 2020.
    [25]
    黄优生, 陆静楠, 李明宇, 等. 油炸工艺对薯条中丙烯酰胺和5-羟甲基糠醛形成的影响[J]. 食品科学,2023,44(15):49−56. [HUANG Y S, LU J N, LI M Y, et al. Effect of frying process on the formation of acrylamide and 5-hydroxymethylfurfural in French fries[J]. Food Science,2023,44(15):49−56.] doi: 10.7506/spkx1002-6630-20220821-245

    HUANG Y S, LU J N, LI M Y, et al. Effect of frying process on the formation of acrylamide and 5-hydroxymethylfurfural in French fries[J]. Food Science, 2023, 4415): 4956. doi: 10.7506/spkx1002-6630-20220821-245
    [26]
    陈美花, 潘佳丽, 翁文治. 油炸温度和时间对外裹糊牡蛎品质的影响[J]. 食品与发酵工业,2017,43(12):124−129. [CHEN M H, PAN J L, WEN W Z. Effect of frying temperature and time on the quality of externally battered oysters[J]. Food and Fermentation Industry,2017,43(12):124−129.]

    CHEN M H, PAN J L, WEN W Z. Effect of frying temperature and time on the quality of externally battered oysters[J]. Food and Fermentation Industry, 2017, 4312): 124129.
    [27]
    武润琳, 刘曼曼, 秦瑞珂, 等. 空气炸制条件对鱼浆猪肉复合凝胶品质的影响[J]. 华中农业大学学报,2020,39(6):59−66. [WU R L, LIU M M, QIN R K, et al. Effect of air frying conditions on the quality of fish paste pork composite gel[J]. Journal of Central China Agricultural University,2020,39(6):59−66.]

    WU R L, LIU M M, QIN R K, et al. Effect of air frying conditions on the quality of fish paste pork composite gel[J]. Journal of Central China Agricultural University, 2020, 396): 5966.
    [28]
    WANG Y, ZHANG W G, ZHOU G H. Effects of ultrasound-assisted frying on the physiochemical properties and microstructure of fried meatballs[J]. International Journal of Food Science & Technology,2019,54(10):2915−2926.
    [29]
    应桦, 陈枫. 油炸工艺对牛肉饼营养品质特性的影响[J]. 粮食与油脂,2018,31(10):61−65. [YING H, CHEN F. Effect of frying process on the nutritional quality characteristics of beef patties[J]. Grain and Fats,2018,31(10):61−65.] doi: 10.3969/j.issn.1008-9578.2018.10.016

    YING H, CHEN F. Effect of frying process on the nutritional quality characteristics of beef patties[J]. Grain and Fats, 2018, 3110): 6165. doi: 10.3969/j.issn.1008-9578.2018.10.016
    [30]
    任云, 胡俊平, 于虹, 等. 核桃壳色素提取工艺及其应用性能表征[J]. 食品研究与开发,2021,42(16):157−162. [REN Y, HU J P, YU H, et al. Extraction process of walnut shell pigments and characterization of their application properties[J]. Food Research and Development,2021,42(16):157−162.]

    REN Y, HU J P, YU H, et al. Extraction process of walnut shell pigments and characterization of their application properties[J]. Food Research and Development, 2021, 4216): 157162.
    [31]
    张亚蓉, 康娇, 薛桥丽, 等. 油炸时间对云南牛干巴煎炸过程中理化特性的影响[J]. 肉类研究,2020,34(6):58−63. [ZHANG Y R, KANG J, XUE Q L, et al. Effect of frying time on the physicochemical properties of Yunnan beef dried barley during frying[J]. Meat Research,2020,34(6):58−63.]

    ZHANG Y R, KANG J, XUE Q L, et al. Effect of frying time on the physicochemical properties of Yunnan beef dried barley during frying[J]. Meat Research, 2020, 346): 5863.
    [32]
    李新, 汪兰, 乔宇, 等. 油炸过程中淡水小龙虾理化性质与品质变化[J]. 肉类研究,2021,35(9):1−6. [LI X, WANG L, QIAO Y, et al. Physicochemical properties and quality changes of freshwater crayfish during deep-frying[J]. Meat Research,2021,35(9):1−6.] doi: 10.7506/rlyj1001-8123-20210430-122

    LI X, WANG L, QIAO Y, et al. Physicochemical properties and quality changes of freshwater crayfish during deep-frying[J]. Meat Research, 2021, 359): 16. doi: 10.7506/rlyj1001-8123-20210430-122
    [33]
    AMIRYOUSEFI M R, MOHEBBI M, KHODAIYAN F. Applying an intelligent model and sensitivity analysis to inspect masstransfer kinetics, shrinkage and crust color changes of deep-fat fried ostrich meat cubes[J]. Meat Science,2014,96(1):172−178. doi: 10.1016/j.meatsci.2013.06.018
    [34]
    LIU F, DONG X, SHEN S, et al. Changes in the digestion properties and protein conformation of s-turgeon myofibrillar protein treated by low temperature vacuum heating during in vitro digestion[J]. Food & Function,2021,12(15):6981−6991.
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