[1] YAM K L.Intelligent Packaging to Enhance Food Safety and Quality[M]. Emerging Food Packaging Technologies. Amsterdam:Elsevier, 2012:137-152.
[2] 陈昌杰. 智能包装简介[J].塑料包装, 2020, 30(1):37-40.
CHEN C J.Introduction of intelligent packaging[J].Plastics Packaging, 2020, 30(1):37-40.
[3] WANG S D, LIU X H, YANG M, et al.Review of time temperature indicators as quality monitors in food packaging[J].Packaging Technology and Science, 2015, 28(10):839-867.
[4] FIROUZ M S, MOHI-ALDEN K, OMID M.A critical review on intelligent and active packaging in the food industry:Research and development[J].Food Research International, 2021, 141:110113.
[5] JAFRY A T, LIM H, SUNG W K, et al.Flexible time-temperature indicator:A versatile platform for laminated paper-based analytical devices[J].Microfluidics and Nanofluidics, 2017, 21(3):57.
[6] KIM J U, GHAFOOR K, AHN J, et al.Kinetic modeling and characterization of a diffusion-based time-temperature indicator (TTI) for monitoring microbial quality of non-pasteurized angelica juice[J].LWT-Food Science and Technology, 2016, 67:143-150.
[7] 赵冬菁, 仲晨, 朱丽, 等.智能包装的发展现状、发展趋势及应用前景[J].包装工程, 2020, 41(13):72-81.
ZHAO D J, ZHONG C, ZHU L, et al.Development status, tendency and application prospect of intelligent packaging[J].Packaging Engineering, 2020, 41(13):72-81.
[8] BIEGAŃSKA M, GWIAZDOWSKA D, KOZAK W, et al.The use of TTI indicators for quality monitoring of freshly squeezed juices[C].International Forum on Agri-food Logistics II Domestic Scientific Conference Agrologistyka:Efficient Logistic As A Chance of Efficient Consumer Response in the Agri-food Sector, 2014.
[9] 杨加敏, 胥义.扩散型时间温度指示器在表征奇异果品质中的适用性[J].食品安全质量检测学报, 2018, 9(16):4 235-4 240.
YANG J M,XU Y.Applicability of diffusion time temperature indicators in characterizing kiwi fruit quality[J].Journal of Food Safety & Quality, 2018, 9(16):4 235-4 240.
[10] 苏州华实热敏科技. 产品规格[EB/OL].2022-03-14.http://www.qualimark.com.cn/product_5.html.
Suzhou Qualimark Technology Co., Ltd..Specifications[EB/OL].2022-03-14.http://www.qualimark.com.cn/product_5.html.
[11] LIM S, GUNASEKARAN S, IMM J Y.Gelatin-templated gold nanoparticles as novel time-temperature indicator[J].Journal of Food Science, 2012, 77(9):N45-N49.
[12] WANG Y C, LU L, GUNASEKARAN S.Gold nanoparticle-based thermal history indicator for monitoring low-temperature storage[J].Microchimica Acta, 2015, 182(7):1 305-1 311.
[13] ZHANG L X, SUN R N, YU H F, et al.A new method for matching gold nanoparticle-based time-temperature indicators with muffins without obtaining activation energy[J].Journal of Food Science, 2020, 85(8):2 589-2 595.
[14] 牛蕊. 基于聚二乙炔的热致可逆变色材料的制备及性能研究[D].兰州:西北师范大学, 2015.
NIU R.Study on the preparation and properties of polydiacetylene-base reversible thermochromic materials[D].Lanzhou:Northwest Normal University, 2015.
[15] 邱灵敏. 基于聚二乙炔的时间温度指示器的制备及其应用[D].无锡:江南大学, 2021.
QIU L M.Preparation and application of time temperature indicator based on polydiacetylene[D].Wuxi:Jiangnan University, 2021.
[16] 钱艳峰, 王娅, 张明玥, 等.用于监测食品新鲜度的时间-温度指示器研究现状[J].食品工业科技, 2022, 43(7):10-20.
QIAN Y F, WANG Y, ZHANG M Y, et al.Research status of time-temperature indicator for mointoring food freshness[J].Science and Technology of Food Industry, 2022, 43(7):10-20.
[17] NUIN M, ALFARO B, CRUZ Z, et al.Modelling spoilage of fresh turbot and evaluation of a time-temperature integrator (TTI) label under fluctuating temperature[J].International Journal of Food Microbiology, 2008, 127(3):193-199.
[18] SUPPAKUL P, KIM D Y, YANG J H, et al.Practical design of a diffusion-type time-temperature indicator with intrinsic low temperature dependency[J].Journal of Food Engineering, 2018, 223:22-31.
[19] GALAGAN Y, SU W F.Fadable ink for time-temperature control of food freshness:Novel new time-temperature indicator[J].Food Research International, 2008, 41(6):653-657.
[20] LEE S B, JUNG S W, LEE S J, et al.Air-activation of printed time-temperature integrator:A sandwich package case study[J].Food Control, 2019, 101:89-96.
[21] ADIANI V, GUPTA S, VARIYAR P S.A simple time temperature indicator for real time microbial assessment in minimally processed fruits[J].Journal of Food Engineering, 2021, 311:110731.
[22] KREYENSCHMIDT J, CHRISTIANSEN H, HÜBNER A, et al.A novel photochromic time-temperature indicator to support cold chain management[J].International Journal of Food Science & Technology, 2010, 45(2):208-215.
[23] BRIZIO A P D R, PRENTICE C.Development of an intelligent enzyme indicator for dynamic monitoring of the shelf-life of food products[J].Innovative Food Science & Emerging Technologies, 2015, 30:208-217.
[24] KANG Y J, KANG J W, CHOI J H, et al.A feasibility study of application of laccase-based time-temperature indicator to kimchi quality control on fermentation process[J].Journal of the Korean Society for Applied Biological Chemistry, 2014, 57(6):819-825.
[25] PARK H R, KIM K, LEE S J.Adjustment of Arrhenius activation energy of laccase-based time-temperature integrator (TTI) using sodium azide[J].Food Control, 2013, 32(2):615-620.
[26] JHUANG J R, LIN S B, CHEN L C, et al.Development of immobilized laccase-based time temperature indicator by electrospinning zein fiber[J].Food Packaging and Shelf Life, 2020, 23:100436.
[27] WU D, WANG Y J, CHEN J C, et al.Preliminary study on time-temperature indicator (TTI) system based on urease[J].Food Control, 2013, 34(1):230-234.
[28] 葛蕾. 时间-温度指示系统的研制及其在生鱼片鲜度监测中的应用[D].青岛:中国海洋大学, 2014.
GE L.Development of time-temperature indicator system and its application in the monitoring of sashimi freshness[D].Qingdao:Ocean University of China, 2014.
[29] 徐凤娟, 葛蕾, 李振兴, 等.固态酶型时间温度指示器的研发[J].食品安全质量检测学报, 2017, 8(9):3 507-3 512.
XU F J, GE L, LI Z X, et al.Development of a novel time-temperature indicator based on tyrosinase[J].Journal of Food Safety & Quality, 2017, 8(9):3 507-3 512.
[30] KOÇAK F, SOYSAL C.Development of new tyrosinase type time temperature indicator[J].Italian Journal of Food Science, 2014, 26(1):18-23.
[31] WU D, HOU S J, CHEN J C, et al.Development and characterization of an enzymatic time-temperature indicator (TTI) based on Aspergillus niger lipase[J].LWT-Food Science and Technology, 2015, 60(2):1 100-1 104.
[32] KIM W, PARK E, HONG K W.Development of a time-temperature integrator system using Burkholderia cepacia lipase[J].Food Science and Biotechnology, 2012, 21(2):497-502.
[33] LU L X, ZHENG W Z, LYU Z Y, et al.Development and application of time-temperature indicators used on food during the cold chain logistics[J].Packaging Technology and Science, 2013, 26:80-90.
[34] MIJANUR RAHMAN A M, KIM D H, JANG H D, et al.Preliminary study on biosensor-type time-temperature integrator for intelligent food packaging[J].Sensors(Basel, Switzerland), 2018, 18(6):1949.
[35] MENG J J, QIAN J, TANG Y Y.A solid-state time-temperature indicator used in chilled fresh pork monitoring[J].Packaging Technology and Science, 2018, 31(5):353-360.
[36] 王琳, 孟晶晶, 李园锦, 等.固定化糖化酶型时间-温度指示器在酸奶质量检测上的应用[J].包装学报, 2018, 10(1):46-53.
WANG L, MENG J J, LI Y J, et al.Application of immobilized glucoamylase time-temperature indicators on yogurt quality monitoring[J].Packaging Journal, 2018, 10(1):46-53.
[37] MUSTAFA F, ANDREESCU S.Paper-based enzyme biosensor for one-step detection of hypoxanthine in fresh and degraded fish[J].ACS Sensors, 2020, 5(12):4 092-4 100.
[38] 陈海华, 于芮, 王雨生.明胶与海藻酸钠的静电复合机制及热动力学分析[J].食品科学, 2021, 42(8):52-59.
CHEN H H, YU R, WANG Y S.Mechanism and thermodynamic characterization of electrostatic complexation between gelatin and sodium alginate[J].Food Science, 2021, 42(8):52-59.
[39] KIM Y A, JUNG S W, PARK H R, et al.Application of a prototype of microbial time temperature indicator (TTI) to the prediction of ground beef qualities during storage[J].Food Science of Animal Resources, 2012, 32(4):448-457.
[40] PARK H R, KIM Y A, JUNG S W, et al.Response of microbial time temperature indicator to quality indices of chicken breast meat during storage[J].Food Science and Biotechnology, 2013, 22(4):1 145-1 152.
[41] KIM E, CHOI D Y, KIM H C, et al.Calibrations between the variables of microbial TTI response and ground pork qualities[J].Meat Science, 2013, 95(2):362-367.
[42] CHOI D Y, JUNG S W, LEE D S, et al.Fabrication and characteristics of microbial time temperature indicators from bio-paste using screen printing method[J].Packaging Technology and Science, 2014, 27(4):303-312.
[43] HSIAO H I, CHANG J N.Developing a microbial time-temperature indicator to monitor total volatile basic nitrogen change in chilled vacuum-packed grouper fillets[J].Journal of Food Processing and Preservation, 2017, 41(5):e13158.
[44] OH T G, LEE J H, KOO Y K, et al.Control of temperature dependence of microbial time-temperature integrator (TTI) by microencapsulation of lactic acid bacteria into microbeads with different proportions of alginate[J].Food Science and Biotechnology, 2021, 30(4):571-582.
[45] 孟晶晶. 微生物型时间温度指示器在酸奶质量管理中的应用[D].无锡:江南大学, 2018.
MENG J J.The application of microbial time-temperature integrator on yogurt quality management[D].Wuxi:Jiangnan University, 2018.
[46] 邱灵敏, 张嘉帅, 钱静, 等.微生物型鲜牛奶时间温度指示器[J].包装工程, 2020, 41(9):67-73.
QIU L M, ZHANG J S, QIAN J, et al.Microbial time-temperature indicator applied in fresh milk[J].Packaging Engineering, 2020, 41(9):67-73.
[47] MATARAGAS M, BIKOULI V C, KORRE M, et al.Development of a microbial time temperature indicator for monitoring the shelf life of meat[J].Innovative Food Science & Emerging Technologies, 2019, 52:89-99.
[48] KOGURE H, KAWASAKI S, NAKAJIMA K, et al.Development of a novel microbial sensor with baker′s yeast cells for monitoring temperature control during cold food chain[J].Journal of Food Protection, 2005, 68(1):182-186.
[49] FIROUZ SOLTANI M, MOHI-ALDEN K, OMID M.A critical review on intelligent and active packaging in the food industry:Research and development[J].Food Research International, 2021.
[50] LEE S J.Center for intelligent agro-food packaging[EB/OL].2020-07.https://docsplayer.org/67966179%25EC%258A%25AC%25EB% 259D%25BC%25EC%259D%25B4%25EB%2593%259C-1.html/.
[51] 项郑昊, 周化岚, 张建国.海藻酸钠微胶囊制备及其在微生物包埋中的应用[J].工业微生物, 2021, 51(1):43-49.
XIANG Z H, ZHOU H L, ZHANG J G.Preparation of alginate microcapsules and its application in industrial microbiology[J].Industrial Microbiology, 2021, 51(1):43-49.
[52] MIJANUR RAHMAN A T M, JUNG S W, CHOI D Y, et al.Investigation of the temperature dependence of encapsulated microbial cells based TTI by applying a variety of color parameters[J].Food Science and Biotechnology, 2013, 22(5):1-9.
[53] ELLOUZE M, AUGUSTIN J C.Applicability of biological time temperature integrators as quality and safety indicators for meat products[J].International Journal of Food Microbiology, 2010, 138(1-2):119-129.
[54] ELLOUZE M, GAUCHI J P, AUGUSTIN J C.Use of global sensitivity analysis in quantitative microbial risk assessment:Application to the evaluation of a biological time temperature integrator as a quality and safety indicator for cold smoked salmon[J].Food Microbiology, 2011, 28(4):755-769.
[55] ELLOUZE M, PICHAUD M, BONAITI C, et al.Modelling pH evolution and lactic acid production in the growth medium of a lactic acid bacterium:Application to set a biological TTI[J].International Journal of Food Microbiology, 2008, 128(1):101-107.
[56] KIM M J, SHIN H W, LEE S J.A novel self-powered time-temperature integrator (TTI) using modified biofuel cell for food quality monitoring[J].Food Control, 2016, 70:167-173.
[57] PEREIRA V A, DE ARRUDA I N Q, STEFANI R.Active chitosan/PVA films with anthocyanins from Brassica oleraceae (red cabbage) as time-temperature indicators for application in intelligent food packaging[J].Food Hydrocolloids, 2015, 43:180-188.