ZHOU Jiajia, WU Yanming, ZHANG Wenle, et al. Effect of 1-MCP Controlled Release Packaging Paper on Storage Quality of Apricot Fruit[J]. Science and Technology of Food Industry, 2022, 43(2): 248−254. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021050127.
Citation: ZHOU Jiajia, WU Yanming, ZHANG Wenle, et al. Effect of 1-MCP Controlled Release Packaging Paper on Storage Quality of Apricot Fruit[J]. Science and Technology of Food Industry, 2022, 43(2): 248−254. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021050127.

Effect of 1-MCP Controlled Release Packaging Paper on Storage Quality of Apricot Fruit

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  • Received Date: May 16, 2021
  • Available Online: November 19, 2021
  • In this paper, 1-methylcyclopropene (1-MCP) controlled release packaging paper was prepared by mixing 1-methylcyclopropene with different proportions of ethyl cellulose ether (EC) and polyacrylic acid (PAA) and then coating it on the paper base. The release mechanism was studied. Saimaiti apricot fruits stored at 2 ℃ were treated with 1-MCP controlled release packaging paper. The effects of 1-MCP controllable slow-release packaging paper on respiratory intensity, hardness, titratable acid, soluble solids, peel color and commodity rate of apricot fruit during storage were studied in order to obtain a kind of fresh-keeping paper which could effectively prolong the storage period of apricot fruit. The results showed that under the conditions of 95% RH, 2 ℃ and 80% polyacrylic acid (PAA), the particle collapse of 1-MCP powder made the gas release slowly, and the release mechanism parameter was 0.49, and the release rate increased with PAA content. Controlled release 1-MCP-coated paper could inhibit the arrival of the peak of respiration intensity of apricot fruit, delay the decrease of hardness, titratable acid and soluble solid content, and maintain the color of peel. The results showed that controlled release 1-MCP-coated paper could effectively maintain the quality of apricot fruits stored in low temperature environment, and would provide some reference for the application of controlled release 1-MCP-coated paper to the storage of other fruits and vegetables.
  • [1]
    MORSY N E, RAYAN A M. Effect of different edible coatings on biochemical quality and shelf life of apricots (Prunus armenica L. cv Canino)[J]. Journal of Food Measurement and Characterization,2019,13(4):3173−3182. doi: 10.1007/s11694-019-00240-2
    [2]
    崔宽波, 范新光, 杨忠强, 等. 近冰点贮藏对小白杏采后品质和抗氧化能力的影响[J]. 食品科学,2019,40(3):238−244. [CUI K B, FAN X G, YANG Z Q, et al. Improved postharvest quality and antioxidant capacity of apricot (Prunus armeniaca L. cv. Xiaobai) during storage at near freezing temperature[J]. Food Science,2019,40(3):238−244. doi: 10.7506/spkx1002-6630-20171129-355
    [3]
    SAKHALE B K, GAIKWAD S S, CHAVAN R F. Application of 1-methylcyclopropene on mango fruit (cv. Kesar): Potential for shelf life enhancement and retention of quality[J]. Journal of Food Science and Technology,2018,55(2):776−781. doi: 10.1007/s13197-017-2990-0
    [4]
    ZHI H, DONG Y. Effect of 1-methylcyclopropene on superficial scald associated with ethylene production, α-farnesene catabolism, and antioxidant system of over-mature ‘‘d’Anjou’ pears after long-term storage[J]. Food and Bioprocess Technology,2018,11(9):1775−1786. doi: 10.1007/s11947-018-2141-2
    [5]
    BISWAS M S, NIWAS M H. Post-harvest shelf-life of banana and guava: Mechanisms of common degradation problems and emerging counteracting strategies[J]. Innovative Food Science & Emerging Technologies,2018,49:20−30.
    [6]
    FAN X G, SHU C, ZHAO K, et al. Regulation of apricot ripening and softening process during shelf life by post-storage treatments of exogenous ethylene and 1-methylcyclopropene[J]. Scientia Horticulturae,2018,232:63−70. doi: 10.1016/j.scienta.2017.12.061
    [7]
    LI L, LIANG L Y, LIANG L, et al. Effects of different treatments on pearl oil apricot during storage[J]. Journal of Food Processing and Preservation,2018,42(8):e13632. doi: 10.1111/jfpp.13632
    [8]
    ARIYANTO H D, CHIBA M, OGUMA K, et al. Release behavior of 1-methylcylopropene coated paper-based shellac solution in response to stepwise humidity changes to develop novel functional packaging for fruit[J]. Packaging Technology and Science,2019,32(10):523−533. doi: 10.1002/pts.2468
    [9]
    RIBEIRO SANTOS R, ANDRADE M, SANCHES SILVA A. Application of encapsulated essential oils as antimicrobial agents in food packaging[J]. Current Opinion in Food Science,2017,14:78−84.
    [10]
    VICENTE A R, ORTIZ C M, MAURI A N. Use of soy protein based 1-methylcyclopropene-releasing pads to extend the shelf life of tomato (Solanum lycopersicum L. ) fruit[J]. Innovative Food Science & Emerging Technologies,2013,20:281−287.
    [11]
    CHEN M, CHEN X, RAY S, et al. Stabilization and controlled release of gaseous/volatile active compounds to improve safety and quality of fresh produce[J]. Trends in Food Science & Technology,2020,95:33−44.
    [12]
    RODRÍGUEZ PÉREZ L C, HARTE B, AURAS R, et al. Measurement and prediction of the concentration of 1-methylcyclopropene in treatment chambers containing different packaging materials[J]. Journal of the Science of Food & Agriculture,2009,89(15):2581−2587.
    [13]
    NEOH T L, YAMAUCHI K, YOSHII H, et al. Kinetics of molecular encapsulation of 1-methylcyclopropene into α-cyclodextrin[J]. Journal of Agricultural and Food Chemistry,2007,55(26):11020−11026. doi: 10.1021/jf072357t
    [14]
    HO T M, HOWES T, BHANDARI B R. Encapsulation of CO2 into amorphous alpha-cyclodextrin powder at different moisture contents–Part 1: Encapsulation capacity and stability of inclusion complexes[J]. Food Chemistry,2016,203:348−355. doi: 10.1016/j.foodchem.2016.02.076
    [15]
    SOOTTITANTAWAT A, YOSHII H, FURUTA T, et al. Effect of water activity on the release characteristics and oxidative stability of D-limonene encapsulated by spray drying[J]. Journal of Agricultural and Food Chemistry,2004,52(5):1269−1276. doi: 10.1021/jf035226a
    [16]
    LI H, ZHANG B, LI C, et al. CO2 inclusion complexes of granular v-type crystalline starch: Structure and release kinetics[J]. Food Chemistry,2019,289:145−151. doi: 10.1016/j.foodchem.2019.03.037
    [17]
    MORADINEZHAD F, JAHANI M. Effect of potassium permanganate, 1-methylcyclopropene and modified atmosphere packaging on postharvest losses and quality of fresh apricot cv. shahroudi[J]. Journal of Horticulture and Postharvest Research, 2019, 2(Special Issue-Postharvest Losses): 39-48.
    [18]
    程曦, 王英, 许禄鼎, 等. 模拟运输振动胁迫对赛买提杏果品质的影响[J]. 食品工业科技,2015,36(14):340−344,349. [CHENG X, WANG Y, XU L D, et al. Effect of simulating transportation vibration stress on the quality of “Saimaiti” apricot fruits[J]. Science and Technology of Food Industry,2015,36(14):340−344,349.
    [19]
    张梦媛, 白琳, 吕静祎, 等. 1-甲基环丙烯对采后南果梨果实软化的影响[J]. 食品科学,2018,39(17):206−211. [ZHANG M Y, BAI L, LV J Y, et al. Effect of 1-methylcyclopropene on the postharvest softening of Nanguo pear fruits[J]. Food Science,2018,39(17):206−211. doi: 10.7506/spkx1002-6630-201817034
    [20]
    张鹏, 秦骅, 李江阔, 等. 1-MCP、乙烯吸收剂双控对富士苹果贮后货架品质的影响[J]. 中国食品学报,2019,19(9):179−188. [ZHANG P, QIN H, LI J K, et al. Effect of 1-MCP combined with ethylene absorbent on the shelf quality of Fuji apple after cold storage[J]. Journal of Chinese Institute of Food Science and Technology,2019,19(9):179−188.
    [21]
    曹建康, 姜微波, 赵玉梅. 果蔬采后生理生化实验指导[M]. 北京: 中国轻工业出版社, 2007: 28−30.

    CAO J K, JIANG W B, ZHAO Y M. Guidelines for post-harvest physiological and biochemical experiments of fruits and vegetables[M]. Beijing: China Light Industry Press, 2007: 28−30.
    [22]
    YAMAMOTO C, NEOH T L, HONBOU H, et al. Kinetic analysis and evaluation of controlled release of D-limonene encapsulated in spray-dried cyclodextrin powder under linearly ramped humidity[J]. Drying Technology,2012,30(11-12):1283−1291. doi: 10.1080/07373937.2012.681089
    [23]
    KUREK M, GUINAULT A, VOILLEY A, et al. Effect of relative humidity on carvacrol release and permeation properties of chitosan based films and coating[J]. Food Chemistry,2014,144(2):9−17.
    [24]
    NEOH T L, YAMAUCHI K, YOSHII H, et al. Kinetic study of thermally stimulated dissociation of inclusion complex of 1-methylcyclopropene with alpha-cyclodextrin by thermal analysis[J]. Journal of Physical Chemistry B,2008,112(49):15914−15920. doi: 10.1021/jp806233c
    [25]
    吴芳, 周江, 朱尤可, 等. 水杨酸和1-甲基环丙烯处理对赛买提杏冷藏后货架期品质的影响[J]. 食品科技,2016,41(3):52−57. [WU F, ZHOU J, ZHU Y K, et al. Effect of SA and 1-MCP treatment on quality of the colded apricot (Saimaiti) fruits during shelf-life[J]. Food Science and Technology,2016,41(3):52−57.
    [26]
    王瑞庆, 冯建华, 魏雯雯, 等. 1-MCP处理和气调贮藏对赛买提杏冷藏效果的影响[J]. 食品科学,2013,34(20):287−290. [WANG R Q, FENG J H, WEI W W, et al. Effect of 1-MCP and controlled atmosphere storage on preservation of apricot (Prunus armeniaca L. cv. Saimaiti)[J]. Food Science,2013,34(20):287−290.
    [27]
    班兆军, 张晶琳, 刘海东, 等. 1-MCP结合硅窗MAP对新疆毛杏贮藏品质的影响[J]. 保鲜与加工,2018,18(3):1−7,14. [BAN Z J, ZHANG J L, LIU H D, et al. Effects of 1-MCP and MAP with silicone rubber film window on storage quality of Xinjiang apricot[J]. Storage and Process,2018,18(3):1−7,14. doi: 10.3969/j.issn.1009-6221.2018.03.001
    [28]
    WU B, GUO Q, WANG G, et al. Effects of different postharvest treatments on the physiology and quality of ‘Xiaobai’ apricots at room temperature[J]. Journal of Food Science & Technology,2015,52(17):2247−2255.
    [29]
    蒋侬辉, 钟云, 曾继吾, 等. 杨梅成熟期间有机酸、糖的动态变化分析[J]. 食品科学,2013,34(18):235−238. [JIANG N H, ZHONG Y, ZENG J W, et al. Dynamic change of organic acids and sugars in bayberry fruits during ripening[J]. Food Science,2013,34(18):235−238. doi: 10.7506/spkx1002-6630-201318048
    [30]
    SERRADILLA M J, FALAGÁN N, BOHMER B, et al. The role of ethylene and 1-MCP in early-season sweet cherry ‘Burlat’ storage life[J]. Scientia Horticulturae,2019,258:108787. doi: 10.1016/j.scienta.2019.108787
    [31]
    MELNYK O, DROZD O, MELNYK I. Storage and quality of apples ‘reinette simirenko’, depending on the dose of post-harvest treatment with ethylene inhibitor 1-MCP[J]. Journal of Horticultural Research,2018,26(2):95−102. doi: 10.2478/johr-2018-0020
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