[1] 王瑞鑫, 张微, 李书国.免疫传感器在粮油中真菌毒素快速检测的应用研究进展[J].粮油食品科技, 2015, 23(4):83-87.
WANG R X, ZHANG W, LI S G.Research progress on application of immunosensor in determination of mycotoxins in cereals and oils[J].Science and Technology of Cereals, Oils and Foods, 2015, 23(4):83-87.
[2] 蔡溢. 中国食品进口需求趋势及优化策略[J].农业展望, 2019, 15(6):83-87.
CAI Y.Trends and optimization strategy of demand of China′s food import[J].Agricultural Outlook, 2019, 15(6):83-87.
[3] KHANEGHAH A M, MARTINS L M, VON HERTWIG A M, et al.Deoxynivalenol and its masked forms:Characteristics, incidence, control and fate during wheat and wheat based products processing - A review[J].Trends in Food Science & Technology, 2018, 71:13-24.
[4] PANKAJ S K, SHI H, KEENER K M.A review of novel physical and chemical decontamination technologies for aflatoxin in food[J].Trends in Food Science & Technology, 2018, 71:73-83.
[5] 王莉, 罗颖鹏, 罗小虎, 等.臭氧降解污染小麦中呕吐毒素的效果及降解产物推测[J].食品科学, 2016, 37(18):164-170.
WANG L, LUO Y P, LUO X H, et al.Efficacy of deoxynivalenol detoxification by ozone treatment in wheat and prediction of degradation products[J].Food Science, 2016, 37(18):164-170.
[6] GUZEL-SEYDIM Z B, GREENE N K, SEYDIM A C.Use of ozone in the food industry[J].LWT- Food Science and Technology, 2004, 37(4):453-460.
[7] AWAD W A, RUHNAV D, HESS C, et al.Feeding of deoxynivalenol increases the intestinal paracellular permeability of broiler chickens[J].Archives of Toxicology, 2019, 93(7):2 057-2 064.
[8] 姜冬梅, 王荷, 武琳霞, 等.小麦中呕吐毒素研究进展[J].食品安全质量检测学报, 2020, 11(2):423-432.
JIANG D M, WANG H, WU L X, et al.Research progress of deoxynivalenol in wheat[J].Journal of Food Safety & Quality, 2020, 11(2):423-432.
[9] 许云. 脱氧雪腐镰刀菌烯醇臭氧降解过程细胞毒性评价及产物分析[D].无锡:江南大学, 2019.
XU Y.Cytotoxicity evaluation and product analysis of deoxynivalenol in ozone degradation process[D].Wuxi:Jiangnan University, 2019.
[10] LI M M, GUAN E Q, BIAN K.Structure elucidation and toxicity analysis of the degradation products of deoxynivalenol by gaseous ozone[J]. Toxins, 2019, 11(8):474.
[11] REN D L, DIAO E J, HOU H X, et al.Cytotoxicity of deoxynivalenol after being exposed to gaseous ozone[J].Toxins, 2019, 11(11):639.
[12] SUN X L, JI J, GAO Y H, et al.Fate of deoxynivalenol and degradation products degraded by aqueous ozone in contaminated wheat[J].Food Research International, 2020, 137:109357.
[13] WANG L, SHAO H L, LUO X H, et al.Effect of ozone treatment on deoxynivalenol and wheat quality[J].PLoS One, 2016, 11(1):e0147613.
[14] VIOLLEAU F, PERNOT A G, SUREL O.Effect of oxygreen® wheat ozonation process on bread dough quality and protein solubility[J].Journal of Cereal Science, 2012, 55(3):392-396.
[15] 闵照永, 于心雨, 王跃强, 等.乳酸及臭氧对鲜湿面保鲜的研究[J].粮食与饲料工业, 2019(2):22-28.
MIN Z Y, YU X Y, WANG Y Q, et al.Preservation of fresh noodles by lactic acid and ozone[J].Cereal & Feed Industry, 2019(2):22-28.
[16] 李博, 高鑫.臭氧熏蒸对小麦蒸制馒头品质的影响[J].食品与机械, 2015, 31(4):23-26.
LI B, GAO X, Effect of ozone treatment on quality of steamed breads[J].Food & Machinery, 2015, 31(4):23-26.
[17] 李智高, 毛永杨, 狄朋敏, 等.食品中黄曲霉毒素的降解方法的研究进展[J].食品安全质量检测学报, 2019, 10(14):4 597-4 602.
LI Z G, MAO Y Y, DI P M, et al.Research progress on the degradation methods of aflatoxin in food[J].Journal of Food Safety & Quality, 2019, 10(14):4 597-4 602.
[18] 邓捷, 陈文洁, 郭柏雪, 等.臭氧降解玉米中赭曲霉毒素A的效果及对玉米脂肪酸的影响[J].食品科学, 2011, 32(21):12-16.
DENG J, CHEN W J, GUO B X, et al.Effect of ozone treatment on the degradation of ochratoxin A and fatty acids in corn[J].Food Science, 2011, 32(21):12-16.
[19] DIAO E J, HOU H X, DONG H Z.Ozonolysis mechanism and influencing factors of aflatoxin B1:A review[J].Trends in Food Science & Technology, 2013, 33(1):21-26.
[20] 周建新, 鞠兴荣, 孙肖东, 等.不同储藏条件下稻谷霉菌区系演替的研究[J].中国粮油学报, 2008,23(5):133-136.
ZHOU J X, JU X R, SUN X D, et al.Succession of mould flora for paddy in different storage conditions[J].Journal of the Chinese Cereals and Oils Association, 2008,23(5):133-136.
[21] 丁爱凤, 包月红, 周建新, 等.臭氧降解稻谷中不同黄曲霉毒素B1初始含量效果研究[J].食品工业科技, 2015, 36(23):72-74.
DING A F, BAO Y H, ZHOU J X, et al.Study on effects of ozone detoxification on different initial content of AFB1 in paddy[J].Science and Technology of Food Industry, 2015, 36(23):72-74.
[22] 周建新, 吴萌萌, 包月红, 等.臭氧处理稻谷降解黄曲霉毒素B1的工艺条件优化[J].粮食储藏, 2014, 43(4):17-21.
ZHOU J X, WU M M, BAO Y H, et al.Optimization to degradation of aflatoxins B1 in paddy by ozone treatment [J].Grain Storage, 2014, 43(4):17-21.
[23] 周建新, 林姣, 张瑞, 等.臭氧处理稻谷储藏过程中微生物的变化规律[J].食品科学, 2013, 34(7):24-27.
ZHOU J X, LIN J, ZHANG R, et al.Changes in microorganism populations during storage of ozone-treated paddy[J].Food Science, 2013, 34(7):24-27.
[24] 彭青枝, 杨冰洁, 朱晓玲, 等.果蔬及其制品真菌毒素的控制研究进展[J].食品工业科技, 2017, 38(5):380-384;389.
PENG Q Z, YANG B J, ZHU X L, et al.Research progress in Mycotoxins control in fruits and vegetables and their products[J].Science and Technology of Food Industry, 2017, 38(5):380-384;389.
[25] CATALDO F.Ozone decomposition of patulin-A micotoxin and food contaminant [J].Ozone: Science & Engineering, 2008, 30(3):197-201.
[26] PALOU, L, SMILANICK J L, CRISOSTO C H, et al.Effect of gaseous ozone exposure on the development of green and blue molds on cold stored Citrus fruit[J].Plant Disease, 2001, 85(6):632-638.
[27] 郭正红. 臭氧水对设施蔬菜病害的防治及其生理机制的研究[D].上海:上海师范大学, 2017.
GUO Z H.Effects of ozonated water on controlling of greenhouse vegetable disease and underlying physiological mechanism[D].Shanghai:Shanghai Normal University, 2017.
[28] 姜楠, 王蒙, 韦迪哲, 等.果蔬中真菌毒素污染及臭氧防治研究进展[J].食品安全质量检测学报, 2016, 7(11):4 415-4 420.
JIANG N, WANG M, WEI D Z, et al.Progress on mycotoxins contamination and ozone degradation in fruits and vegetables[J].Journal of Food Safety & Quality, 2016, 7(11):4 415-4 420.
[29] KABAK B.Aflatoxins in hazelnuts and dried figs:Occurrence and exposure assessment[J].Food Chemistry, 2016, 211:8-16.
[30] 刁恩杰. 花生中黄曲霉毒素B1臭氧降解及安全性评价[D].泰安:山东农业大学, 2015.
DIAO E J.Ozonolysis and safety evaluation of aflatoxin B1 in peanuts[D].Taian:Shandong Agricultural University, 2015.
[31] INAN F, PALA M, DOYMAZ I.Use of ozone in detoxification of aflatoxin B1 in red pepper[J].Journal of Stored Products Research, 2007, 43(4):425-429.
[32] 李一卓. 鲜青花椒保鲜及其农残降解技术的研究[D].重庆:西南大学, 2011.
LI Y Z.Studies on the preservation technology of fresh Zanthoxylum schinifolium sieb et Zucc. and degradation thchnology of pesticides on Z.S.sieb et Zucc.[D].Chongqing:Southwest University, 2011.
[33] 何惠欢, 李文, 项俊华, 等.臭氧脱色技术在制糖工业中的应用研究进展[J].中国调味品, 2015, 40(6):127-131.
HE H H, LI W, XIANG J H, et al.Application of ozone decoloration technology in sugar industry[J].China Condiment, 2015, 40(6):127-131.
[34] 高鑫, 梅俊, 李博.臭氧在食品工业中的应用研究进展[J].粮食与饲料工业, 2017(2):35-39.
GAO X, MEI J, LI B.Application of ozone in food industry[J].Cereal & Feed Industry, 2017(2):35-39.
[35] 陶倩. 臭氧不同处理方式对呕吐毒素污染小麦的影响[D].武汉:武汉轻工大学, 2018.
TAO Q.Effect of different ozone treatments on wheat contaminated by DON[D].Wuhan:Wuhan Polytechnic University, 2018.
[36] PROCTOR A D, AHMEDNA M, KUMAR J V, et al.Degradation of aflatoxins in peanut kernels/flour by gaseous ozonation and mild heat treatment[J].Food Additives and Contaminants, 2004, 21(8):786-793.
[37] AKBAS M Y, OZDEMIR M.Effect of different ozone treatments on aflatoxin degradation and physicochemical properties of pistachios[J].Journal of the Science of Food and Agriculture, 2006, 86(13):2 099-2 104.
[38] AFSAH-HEJRI L,HAJEB P, EHSANI R J.Application of ozone for degradation of mycotoxins in food:A review[J].Comprehensive Reviews in Food Science and Food Safety, 2020, 19(4):1 777-1 808.
[39] KOTTAPALLI B, WOLF-HALL C E, SCHWARZ P.Evaluation of gaseous ozone and hydrogen peroxide treatments for reducing Fusarium survival in malting barley[J].Journal of Food Protection, 2005, 68(6):1 236-1 240.
[40] YOUNG J C, ZHOU T, YU H, et al.Degradation of trichothecene mycotoxins by chicken intestinal microbes[J].Food & Chemical Toxicology, 2007, 45(1):136-143.