Citation: | JIAO Wencheng, CHEN Lei, SONG Yongcheng, et al. Review on the Effect of Ultrasound on the Quality of Fruit and Vegetable Juice[J]. Science and Technology of Food Industry, 2022, 43(8): 471−480. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021050094. |
[1] |
中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会. GB/T 31121-2014 果蔬汁类及其饮料[S]. 北京: 中国标准出版社, 2014: 1−2
The General Administration of Quality Supervision, Inspection and Quarantine of the People’s Republic of China, China National Standardization Management Committee. GB/T 31121-2014 Fruit & vegetable juices and fruit & vegetable beverage (nectars) [S]. Beijing: China Standard Press, 2014: 1−2.
|
[2] |
曾小峰, 商桑, 高伦江, 等. 橙汁杀菌技术研究进展[J]. 南方农业,2018,12(28):124−127. [ZENG Xiaofeng, SHANG Sang, GAO Lunjiang, et al. Research progress on orange juice sterilization technology[J]. South China Agriculture,2018,12(28):124−127.
|
[3] |
吴雅静. 非热杀菌技术在食品加工中的应用研究[J]. 安徽农业科学,2015,43(1):242−243. [WU Yajing. Application of non-thermal sterilization technology in food processing[J]. Journal of Anhui Agricultural Sciences,2015,43(1):242−243. doi: 10.3969/j.issn.0517-6611.2015.01.084
|
[4] |
田瑾, 罗潇潇, 马嫄, 等. 柑橘汁杀菌方法研究进展[J]. 西华大学学报(自然科学版),2021,40(4):72−79. [TIAN Jin, LUO Xiaoxiao, MA Yuan, et al. Research progresson sterilization methods of citrus juice[J]. Journal of Xihua University (Natural Science Edition),2021,40(4):72−79. doi: 10.12198/j.issn.1673-159X.3421
|
[5] |
刘伟, 宋弋, 张洁, 等. 超声波对果蔬汁杀菌和品质影响的研究进展[J]. 现代食品科技, 2018, 34(5): 276−289.
LIU Wei, SONG Yi, ZHANG Jie, et al. Research progress on the effect of ultrasound on the microbial inactivation and qualities of fruit and vegetable juice[J]. Modern Food Science and Technology, 2018, 34(5): 276−289.
|
[6] |
贾蒙, 成传香, 王鹏旭, 等. 超高压技术在果蔬汁杀菌中的应用[J]. 食品与发酵工业,2019,45(12):257−264. [JIA Meng, CHENG Chuangxiang, WANG Pengxu, et al. Application of ultra-high pressure in sterilizing fruit and vegetable juices[J]. Food and Fermentation Industries,2019,45(12):257−264.
|
[7] |
顾丰颖, 卢嘉, 王晓拓, 等. 高密度二氧化碳技术的杀菌机制及其在食品工业中的应用[J]. 中国农业科技导报,2013,15(6):162−166. [GU Fengying, LU Jia, WANG Xiaotuo, et al. Sterilization mechanisms and application of dense-phase carbon dioxide in food processing[J]. Journal of Agricultural Science and Technology,2013,15(6):162−166. doi: 10.3969/j.issn.1008-0864.2013.06.25
|
[8] |
马亚琴, 李楠楠, 张震. 脉冲电场技术应用于果蔬汁杀菌的研究进展[J]. 食品科学,2018,39(21):308−315. [MA Yaqin, LI Nannan, ZHANG Zhen. Advances in application of pulsed electric field in fruit and vegetable juice sterilization[J]. Food Science,2018,39(21):308−315. doi: 10.7506/spkx1002-6630-201821046
|
[9] |
马亚琴, 叶兴乾, 吴厚玖, 等. 超声波辅助提取植物活性成分的研究进展[J]. 食品科学,2010,31(21):459−463. [MA Yaqin, YE Xingqian, WU Houjiu, et al. Advancesin ultrasound-assisted extraction of bioactive compounds from plants[J]. Food Science,2010,31(21):459−463.
|
[10] |
ENGMANN F N, MA Y, TCHABO W, et al. Ultrasonication treatment effect on anthocyanins, color, microorganisms and enzyme inactivation of mulberry (Moraceaenigra) juice[J]. Journal of Food Processing and Preservation,2015,39(6):854−862. doi: 10.1111/jfpp.12296
|
[11] |
ERTUGAY M F, BAŞLAR M. The effect of ultrasonic treatments on cloudy quality-related quality parameters in apple juice[J]. Innovative Food Science & Emerging Technologies,2014,26:226−231.
|
[12] |
REZEK JAMBRAK A, SIMUNEK M, EVACIC S, et al. Influence of high power ultrasound on selected moulds, yeasts and Alicyclobacillus acidoterrestris in apple, cranberry and blueberry juice and nectar[J]. Ultrasonics,2018,83:3−17. doi: 10.1016/j.ultras.2017.02.011
|
[13] |
ABID M, JABBAR S, WU T, et al. Effect of ultrasound on different quality parameters of apple juice[J]. Ultrasonics Sonochemistry,2013,20(5):1182−1187. doi: 10.1016/j.ultsonch.2013.02.010
|
[14] |
BHAT R, KAMARUDDIN N S, MIN-TZE L, et al. Sonication improves kasturi lime (Citrus microcarpa) juice quality[J]. Ultrasonics Sonochemistry,2011,18(6):1295−300. doi: 10.1016/j.ultsonch.2011.04.002
|
[15] |
DINÇER C, TOPUZ A. Inactivation of Escherichia coli and quality changes in black mulberry juice under pulsed sonication and continuous thermosonication treatments[J]. Journal of Food Processing and Preservation,2015,39(6):1744−1753. doi: 10.1111/jfpp.12406
|
[16] |
GUERROUJ K, SÁNCHEZ-RUBIO M, TABOADA-RODRÍGUEZ A, et al. Sonication at mild temperatures enhances bioactive compounds and microbiological quality of orange juice[J]. Food and Bioproducts Processing,2016,99:20−28. doi: 10.1016/j.fbp.2016.03.007
|
[17] |
IRKILMEZ M U, BAŞLAR M, SAĞDIÇ O, et al. The effect of ultrasonic treatments on turbidity, microbial load, and polyphenol oxidase (PPO) activity of plum nectar[J]. Journal of Food Measurement and Characterization,2016,11(2):380−387.
|
[18] |
MOHIDEEN F W, SOLVAL K M, LI J, et al. Effect of continuous ultra-sonication on microbial counts and physico-chemical properties of blueberry (Vaccinium corymbosum) juice[J]. LWT-Food Science and Technology,2015,60(1):563−570. doi: 10.1016/j.lwt.2014.07.047
|
[19] |
ZHU J, WANG Y, LI X, et al. Combined effect of ultrasound, heat, and pressure on Escherichia coli O157: H7, polyphenol oxidase activity, and anthocyanins in blueberry (Vaccinium corymbosum) juice[J]. Ultrasonics Sonochemistry,2017,37:251−259. doi: 10.1016/j.ultsonch.2017.01.017
|
[20] |
CHEN L, BI X, CAO X, et al. Effects of high-power ultrasound on microflora, enzymes and some quality attributes of a strawberry drink[J]. Journal of the Science of Food and Agriculture,2018,98(14):5378−5385. doi: 10.1002/jsfa.9079
|
[21] |
AADIL R M, ZENG X A, WANG M S, et al. A potential of ultrasound on minerals, micro-organisms, phenolic compounds and colouring pigments of grapefruit juice[J]. International Journal of Food Science & Technology,2015,50(5):1144−1150.
|
[22] |
POKHREL P R, BERMUDEZ A D, MARTINEZ F H E, et al. Combined effect of ultrasound and mild temperatures on the inactivation of E. coli in fresh carrot juice and changes on its physicochemical characteristics[J]. Journal of Food Science,2017,82(10):2343−2350. doi: 10.1111/1750-3841.13787
|
[23] |
TREMARIN A, CANBAZ E A, BRANDÃO T R S, et al. Modelling Alicyclobacillus acidoterrestris inactivation in apple juice using thermosonication treatments[J]. LWT-Food Science and Technology,2019,102:159−163. doi: 10.1016/j.lwt.2018.12.027
|
[24] |
毕秀芳, 陈丽伊, 潘泓桦, 等. 超声波结合nisin对胡萝卜汁的杀菌效果[J]. 中国食品学报,2018,18(1):211−216. [BI Xiufang, CHEN Liyi, PAN Honghua, et al. Inactivation of naturally occurring microorganisms in carrot juice by ultrasound combined with nisin[J]. Journal of Chinese Institute of Food Science and Technology,2018,18(1):211−216.
|
[25] |
栗星, 包海蓉. 超声波对橙汁的杀菌特性研究[J]. 食品科学,2008(8):346−350. [LI Xing, BAO Hairong. Study on sterlization characteristics of ultrasound for orange juice[J]. Food Science,2008(8):346−350. doi: 10.3321/j.issn:1002-6630.2008.08.077
|
[26] |
VALERO M, RECROSIO N, SAURA D, et al. Effects of ultrasonic treatments in orange juice processing[J]. Journal of Food Engineering,2007,80(2):509−516. doi: 10.1016/j.jfoodeng.2006.06.009
|
[27] |
MONSEN T, LOVGREN E, WIDERSTROM M, et al. In vitro effect of ultrasound on bacteria and suggested protocol for sonication and diagnosis of prosthetic infections[J]. Journal of Clinical Microbiology,2009,47(8):2496−501. doi: 10.1128/JCM.02316-08
|
[28] |
DRAKOPOULOU S, TERZAKIS S, FOUNTOULAKIS M S, et al. Ultrasound-induced inactivation of gram-negative and gram-positive bacteria in secondary treated municipal wastewater[J]. Ultrasonics Sonochemistry,2009,16(5):629−634. doi: 10.1016/j.ultsonch.2008.11.011
|
[29] |
SCHERBA G, WEIGEL R M, O'BRIEN W D J R. Quantitative assessment of the germicidal efficacy of ultrasonic energy[J]. Applied and Environmental Microbiology,1991,57(7):2079−2084. doi: 10.1128/aem.57.7.2079-2084.1991
|
[30] |
刘丽艳, 张喜梅, 李琳, 等. 超声波杀菌技术在食品中的应用[J]. 食品科学,2006(12):778−780. [LIU Liyan, ZHANG Ximei, LI Lin, et al. Application of ultrasound sterilization technique in food industry[J]. Food Science,2006(12):778−780. doi: 10.3321/j.issn:1002-6630.2006.12.204
|
[31] |
LIN L, WANG X, LI C, et al. Inactivation mechanism of E. coli O157: H7 under ultrasonic sterilization[J]. Ultrasonics Sonochemistry,2019,59:104751. doi: 10.1016/j.ultsonch.2019.104751
|
[32] |
PARK J S, HA J W. Ultrasound treatment combined with fumaric acid for inactivating food-borne pathogens in apple juice and its mechanisms[J]. Food Microbiology,2019,84:103277. doi: 10.1016/j.fm.2019.103277
|
[33] |
AADIL R M, ZENG X A, HAN Z, et al. Combined effects of pulsed electric field and ultrasound on bioactive compounds and microbial quality of grapefruit juice[J]. Journal of Food Processing and Preservation,2019,56(5):2355−2364.
|
[34] |
MANZOOR M F, AHMED Z, AHMAD N, et al. Novel processing techniques and spinach juice: Quality and safety improvements[J]. Journal of Food Science,2020,85(4):1018−1026. doi: 10.1111/1750-3841.15107
|
[35] |
SANTHIRASEGARAM V, RAZALI Z, SOMASUNDRAM C. Effects of thermal treatment and sonication on quality attributes of Chokanan mango (Mangifera indica L.) juice[J]. Ultrasonics Sonochemistry,2013,20(5):1276−1282. doi: 10.1016/j.ultsonch.2013.02.005
|
[36] |
GOMES W F, TIWARI B K, RODRIGUEZ O, et al. Effect of ultrasound followed by high pressure processing on prebiotic cranberry juice[J]. Food Chemistry, 2017, 218: 261-268.
|
[37] |
PANIAGUA-MARTINEZ I, MULET A, GARCIA-ALVARADO M A, et al. Inactivation of the microbiota and effect on the quality attributes of pineapple juice using a continuous flow ultrasound-assisted supercritical carbon dioxide system[J]. Food Science & Technology International,2018,24(7):547−554.
|
[38] |
SAMANI B H, KHOSHTAGHAZA M H, LORIGOOINI Z, et al. Analysis of the combinative effect of ultrasound and microwave power on Saccharomyces cerevisiae in orange juice processing[J]. Innovative Food Science & Emerging Technologies,2015,32:110−115.
|
[39] |
ZAFRA-ROJAS Q Y, CRUZ-CANSINO N, RAMIREZ-MORENO E, et al. Effects of ultrasound treatment in purple cactus pear (Opuntia ficus-indica) juice[J]. Ultrasonics Sonochemistry,2013,20(5):1283−1288. doi: 10.1016/j.ultsonch.2013.01.021
|
[40] |
BHAVYA M L, HEBBAR H U. Sono-photodynamic inactivation of Escherichia coli and Staphylococcus aureus in orange juice[J]. Ultrasonics Sonochemistry,2019,57:108−115. doi: 10.1016/j.ultsonch.2019.05.002
|
[41] |
WONG E, VAILLANT-BARKA F, CHAVES-OLARTE E. Synergistic effect of sonication and high osmotic pressure enhances membrane damage and viability loss of Salmonella in orange juice[J]. Food Research International,2012,45(2):1072−1079. doi: 10.1016/j.foodres.2010.07.037
|
[42] |
CERVANTES-ELIZARRARAS A, PILONI-MARTINI J, RAMIREZ-MORENO E, et al. Enzymatic inactivation and antioxidant properties of blackberry juice after thermoultrasound: Optimization using response surface methodology[J]. Ultrasonics Sonochemistry,2017,34:371−379. doi: 10.1016/j.ultsonch.2016.06.009
|
[43] |
COSTA M G M, FONTELES T V, DE JESUS A L T, et al. High-intensity ultrasound processing of pineapple juice[J]. Food and Bioprocess Technology,2011,6(4):997−1006.
|
[44] |
FONTELES T V, COSTA M G M, DE JESUS A L T, et al. Power ultrasound processing of cantaloupe melon juice: Effects on quality parameters[J]. Food Research International,2012,48(1):41−48. doi: 10.1016/j.foodres.2012.02.013
|
[45] |
IQBAL A, MURTAZA A, MARSZALEK K, et al. Inactivation and structural changes of polyphenol oxidase in quince (Cydonia oblonga Miller) juice subjected to ultrasonic treatment[J]. Journal of the Science of Food and Agriculture,2020,100(5):2065−2073. doi: 10.1002/jsfa.10229
|
[46] |
RIOS-ROMERO E A, OCHOA-MARTÍNEZ L A, MORALES-CASTRO J, et al. Ultrasound in orange sweet potato juice: Bioactive compounds, antioxidant activity, and enzymatic inactivation[J]. Journal of Food Processing and Preservation,2018,42(6):e13633. doi: 10.1111/jfpp.13633
|
[47] |
TREVILIN, HELLMEISTER J, AUGUSTO D, et al. Using ultrasound technology for the inactivation and thermal sensitization of peroxidase in green coconut water[J]. Ultrasonics Sonochemistry,2017,36:173−181. doi: 10.1016/j.ultsonch.2016.11.028
|
[48] |
SUN Y, ZHONG L, CAO L, et al. Sonication inhibited browning but decreased polyphenols contents and antioxidant activity of fresh apple (Malus Pumila Mill
|
[49] |
TIWARI B K, MUTHUKUMARAPPAN K, O'DONNELL C P, et al. Inactivation kinetics of pectin methylesterase and cloud retention in sonicated orange juice[J]. Innovative Food Science & Emerging Technologies,2009,10(2):166−171.
|
[50] |
CHEN L, BI X, GUO D, et al. The effect of high-power ultrasound on the quality of carrot juice[J]. Food Science and Technology International,2019,25(5):394−403. doi: 10.1177/1082013219825736
|
[51] |
VERCET A, LOPEZ P, BURGOS J. Inactivation of heat-resistant pectinmethylesterase from orange by manothermosonication[J]. Journal of Agricultural and Food Chemistry,1999,47(2):432−437. doi: 10.1021/jf980566v
|
[52] |
THAKUR B R, NELSON P E. Inactivation of lipoxygenase in whole soy flour suspension by ultrasonic cavitation[J]. Food Nahrung,1997,41(5):299−301. doi: 10.1002/food.19970410510
|
[53] |
TARUN E I, KURCHENKO V P, METELITSA D I. Flavonoids as effective protectors of urease from ultrasonic inactivation in solutions[J]. Russian Journal of Bioorganic Chemistry,2006,32(4):391−398.
|
[54] |
刘洪, 周亨乐, 陈磊, 等. 介质特性对超声波钝化芒果多酚氧化酶和过氧化物酶的影响[J]. 中国食品学报,2020,20(4):42−48. [LIU Hong, ZHOU Hengle, CHEN Lei, et al. Influence of medium properties on the inactivation effect of polyphenol oxidase and peroxidase of mango by ultrasound[J]. Journal of Chinese Institute of Food Science and Technology,2020,20(4):42−48.
|
[55] |
ABEDELMAKSOUD T G, MOHSEN S M, DUEDAHL-OLESEN L, et al. Impact of ohmicsonication treatment on pectinmethylesterase in not-from-concentrate orange juice[J]. Journal of Food Science and Technology,2019,56(8):3951−3956. doi: 10.1007/s13197-019-03834-2
|
[56] |
BAŞLAR M, ERTUGAY M F. The effect of ultrasound and photosonication treatment on polyphenoloxidase (PPO) activity, total phenolic component and colour of apple juice[J]. International Journal of Food Science & Technology,2013,48(4):886−892.
|
[57] |
JABBAR S, ABID M, HU B, et al. Influence of sonication and high hydrostatic pressure on the quality of carrot juice[J]. International Journal of Food Science & Technology,2014,49(11):2449−2457.
|
[58] |
MEDINA-MEZA I G, BOIOLI P, BARBOSA-CÁNOVAS G V. Assessment of the effects of ultrasonics and pulsed electric fields on nutritional and rheological properties of raspberry and blueberry purees[J]. Food and Bioprocess Technology,2015,9(3):520−531.
|
[59] |
DABIR M P, ANANTHANARAYAN L. Effect of heat processing and ultrasonication treatment on custard apple peroxidase activity and vitamin C[J]. International Journal of Food Engineering,2017,13(1).
|
[60] |
KOSHANI R, ZIAEE E, NIAKOUSARI M, et al. Optimization of thermal and thermosonication treatments on pectin methyl esterase inactivation of sour orange juice (Citrus aurantium)[J]. Journal of Food Processing and Preservation,2015,39(6):567−573. doi: 10.1111/jfpp.12262
|
[61] |
毕秀芳, 陈丽伊, 赵彩霞, 等. 热与超声波对多聚半乳糖醛酸酶的钝化动力学[J]. 食品科学,2018,39(19):90−95. [BI Xiufang, CHEN Liyi, ZHAO Caixia, et al. Inactivation kinetics of polygalacturonase after heat and ultrasonic treatments[J]. Food Science,2018,39(19):90−95. doi: 10.7506/spkx1002-6630-201819015
|
[62] |
RAVIYAN P, ZHANG Z, FENG H. Ultrasonication for tomato pectinmethylesterase inactivation: Effect of cavitation intensity and temperature on inactivation[J]. Journal of Food Engineering,2005,70(2):189−196. doi: 10.1016/j.jfoodeng.2004.09.028
|
[63] |
CAO X, CAI C, WANG Y, et al. Effects of ultrasound processing on physicochemical parameters, antioxidants, and color quality of bayberry juice[J]. Journal of Food Quality,2019:1−12.
|
[64] |
CHENG L, SOH C, LIEW S, et al. Effects of sonication and carbonation on guava juice quality[J]. Food Chemistry,2007,104(4):1396−1401. doi: 10.1016/j.foodchem.2007.02.001
|
[65] |
RUIZ-DE ANDA D, VENTURA-LARA M G, RODRÍGUEZ-HERNÁNDEZ G, et al. The impact of power ultrasound application on physicochemical, antioxidant, and microbiological properties of fresh orange and celery juice blend[J]. Journal of Food Measurement and Characterization,2019,13(4):3140−3148. doi: 10.1007/s11694-019-00236-y
|
[66] |
YUAN Y H, HU YC, YUE T L, et al. Effect of ultrasonic treatments on thermoacidophilic Alicyclobacillus acidoterrestris in apple juice[J]. Journal of Food Processing and Preservation,2009,33:370−383. doi: 10.1111/j.1745-4549.2009.00407.x
|
[67] |
ZHANG Y, ZHANG Z, CHEN F, et al. Effect of sonication on eliminating of phorate in apple juice[J]. Ultrasonics Sonochemistry,2012,19(1):43−48. doi: 10.1016/j.ultsonch.2011.05.014
|
[68] |
郑炯, 龚瑜, 曾瑞琪, 等. 超声波处理对西瓜汁品质的影响[J]. 食品与发酵工业,2018,44(10):168−174. [ZHENG Jiong, GONG Yu, ZENG Ruiqi, et al. Effect of ultrasonic treatment on the quality of watermelon juice[J]. Food and Fermentation Industries,2018,44(10):168−174.
|
[69] |
ABID M, JABBAR S, WU T, et al. Sonication enhances polyphenolic compounds, sugars, carotenoids and mineral elements of apple juice[J]. Ultrasonics Sonochemistry,2014,21(1):93−97. doi: 10.1016/j.ultsonch.2013.06.002
|
[70] |
NADEEM M, UBAID N, QURESHI T M, et al. Effect of ultrasound and chemical treatment on total phenol, flavonoids and antioxidant properties on carrot-grape juice blend during storage[J]. Ultrasonics Sonochemistry,2018,45:1−6. doi: 10.1016/j.ultsonch.2018.02.034
|
[71] |
阚健全, 谢笔钧. 食品化学[M]. 第2版. 北京: 中国农业大学出版社, 2008.
KAN Jianquan, XIE Bijun. Food chemistry[M]. 2nd. Beijing: China Agricultural University Press, 2008.
|
[72] |
NGUYEN C, NGUYEN H. Ultrasonic effects on the quality of mulberry juice[J]. Beverages,2018,4(3):56−56. doi: 10.3390/beverages4030056
|
[73] |
TIWARI B K, PATRAS A, BRUNTON N, et al. Effect of ultrasound processing on anthocyanins and color of red grape juice[J]. Ultrasonics Sonochemistry,2010,17(3):598−604. doi: 10.1016/j.ultsonch.2009.10.009
|
[74] |
栗星, 包海蓉. 超声波在食品杀菌中的研究现状[J]. 农业工程技术(农产品加工业),2008(6):25−28. [LI Xing, BAO Hairong. Ultrasound in food sterilization: A review[J]. Agriculture Engineering Technology (Agricultural Product Processing Industry),2008(6):25−28.
|
[75] |
ASHOKKUMAR M, SUNARTIO D, KENTISH S, et al. Modification of food ingredients by ultrasound to improve functionality: A preliminary study on a model system[J]. Innovative Food Science & Emerging Technologies,2008,9(2):155−160.
|
[76] |
ALONGI M, VERARDO G, GORASSINI A, et al. Phenolic content and potential bioactivity of apple juice as affected by thermal and ultrasound pasteurization[J]. Food Function,2019,10(11):7366−7377. doi: 10.1039/C9FO01762C
|
[77] |
CAMPOLI S S, ROJAS M L, DO AMARAL J, et al. Ultrasound processing of guava juice: Effect on structure, physical properties and lycopene in vitro accessibility[J]. Food Chemistry, 2018, 268: 594-601.
|
[78] |
BI X, HEMAR Y, BALABAN M O, et al. The effect of ultrasound on particle size, color, viscosity and polyphenol oxidase activity of diluted avocado puree[J]. Ultrasonics Sonochemistry,2015,27:567−575. doi: 10.1016/j.ultsonch.2015.04.011
|
[79] |
林雯雯, 楼舒婷, 孙玉敬, 等. 超声波处理对鲜榨橙汁中主要香气成分的影响[J]. 中国食品学报,2016,16(5):245−251. [LIN Wenwen, LOU Shuting, SUN Yujing, et al. Effects of ultrasonic treatmentson mainaroma compounds in freshly squeezed orange juice[J]. Journal of Chinese Institute of Food Science and Technology,2016,16(5):245−251.
|
[80] |
钟烈洲. 超声波对现榨苹果汁的品质影响[D]. 杭州: 浙江大学, 2013: 37.
ZHONG Liezhou. Effect of ultrasound on qualities of squeezed fresh apple juice[D]. Hangzhou: Zhejiang University, 2013: 37.
|
[81] |
JAMBRAK A R, SIMUNEK M, PETROVIC M, et al. Aromatic profile and sensory characterisation of ultrasound treated cranberry juice and nectar[J]. Ultrasonics Sonochemistry,2017,38:783−793. doi: 10.1016/j.ultsonch.2016.11.027
|
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![]() | |
4. |
黄岩,鲜双,李倩,陈其青,徐飞,陈安均. 豇豆泡菜中产生物胺菌株的筛选鉴定及其产胺特性研究. 食品与发酵工业. 2023(23): 119-126 .
![]() | |
5. |
高建操,杜金梁,邵乃麟,张幸,李昺之,宋超,徐跑,徐钢春. 中华绒螯蟹质量安全新兴检测与控制技术研究进展. 中国渔业质量与标准. 2022(04): 62-70 .
![]() | |
6. |
杨姗姗,王晓雯,林翠苹. 水产品中生物胺的研究进展. 青岛农业大学学报(自然科学版). 2021(01): 65-73 .
![]() | |
7. |
王纯纯,刘智禹,黄鹭强. 水产品中微生物产胺的研究概况. 福建轻纺. 2021(11): 8-12 .
![]() | |
8. |
李璇,刘琪,朱蔚姗,陈静,张佩娜,蒋立文. 不同发酵豆制品中生物胺调查分析. 食品安全质量检测学报. 2020(01): 298-305 .
![]() | |
9. |
李少丽,邓建朝,李春生,杨贤庆,吴燕燕,陈胜军,马海霞. 生食大眼金枪鱼中生物胺产生菌的分离与鉴定. 食品与发酵工业. 2020(14): 121-126 .
![]() | |
10. |
孙项丽,王联珠,郭莹莹,江艳华,王婧媛,尹大芳. 不同储藏温度下鲅鱼组胺含量与其品质变化的关系. 南方农业学报. 2020(08): 2005-2012 .
![]() | |
11. |
孙项丽,郭莹莹,于秀娟,王静媛,文艺晓,王联珠. 鲭鱼品质评价及品质变化与组胺含量研究进展. 食品安全质量检测学报. 2019(12): 3708-3713 .
![]() | |
12. |
邓建朝,李少丽,杨贤庆,陈胜军,吴燕燕,李春生,马海霞,荣辉. 金枪鱼中生物胺的防控技术与检测技术的研究发展. 食品与发酵工业. 2019(24): 262-268 .
![]() |